[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"_public_publisher_byId_7ba04cc5-1cf5-46d4-9c23-43e5bff0268d":3,"_public_publication_all{\"sortAscending\":false,\"sortField\":\"updateTime\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"publisherId:7ba04cc5-1cf5-46d4-9c23-43e5bff0268d,\"}":82},{"code":4,"data":5,"meta":23},"SUCCESS",{"id":6,"createTime":7,"updateTime":8,"relativeEntities":9,"slug":10,"properties":11,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"languages":25,"translateLanguages":23,"viewCount":28,"subjectFields":29,"manageAffiliations":30,"indexDatabases":46,"url":47,"thumbnailPath":48,"statistic":49,"gsStatistic":23,"type":23,"analyzePriority":23},"7ba04cc5-1cf5-46d4-9c23-43e5bff0268d","2023-09-12T07:03:05.260+00:00","2025-10-14T00:42:21.812+00:00",[],"T%E1%BA%A1p-ch%C3%AD-K%E1%BB%B9-thu%E1%BA%ADt-v%C3%A0-C%C3%B4ng-ngh%E1%BB%87-%C4%90%E1%BA%A1i-h%E1%BB%8Dc-Qu%E1%BB%91c-gia-Th%C3%A0nh-ph%E1%BB%91-H%E1%BB%93-Ch%C3%AD-Minh",{"country":12,"issn":14,"title":16,"introduce":19},{"VOID":13},"VN",{"VOID":15},"26159872",{"EN":17,"VI":18},"VNUHCM JOURNAL OF ENGINEERING AND TECHNOLOGY","Tạp chí Kỹ thuật và Công nghệ Đại học Quốc gia Thành phố Hồ Chí Minh",{"EN":20},"{\"ops\":[{\"attributes\":{\"bold\":true},\"insert\":\"1. History\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Science and Technology Development Journal\"},{\"insert\":\" (STDJ), Vietnam National University - Ho Chi Minh City (VNU-HCM) was established in 1997. And the first issue was published in January 1998 with ISSN 1859-0128. Since then, STDJ has become the most important scientific forum of scientists from VNU-HCM as well as other universities. The magazine has undergone 20 years of development and has become a bridge for scientific exchanges, as well as enriching reference materials for the faculty, doctoral students, students of VNU-HCM in particular and other universities, institutes...\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\\n\"},{\"insert\":\"By the end of 2016, the journal has published 276 issues with 2714 research articles in five areas of research: Engineering and Technology, Natural Sciences, Social Sciences and Humanities, Economics of Law and Management Sciences, Earth Sciences and Environment corresponding to 5 specialized journals of the Journal.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"The journal has been widely indexed in the various libraries at Vietnam. To increase the international audiences, STDJ will be published fulltexts in English from Vol 21 (2018).\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\" \"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"2. Focus and Scope\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"The Journal is not limited to a specific aspect of  engineering Technology but is instead devoted to a wide range of subfields in the engineering sciences. While it encourages a broad spectrum of contribution in the engineering sciences, its core interest lies in issues concerning material modeling and response: Mechanical Engineering; Electrical & Electronics Engineering; Petroleum Engineering; Chemical Engineering; Systems Engineering; Process Engineering; Agriculture Engineering; Aerospace Engineering; Applied Engineering; Interdisciplinary.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"\\n\"}]}","PUBLISHER","VERIFIED",null,"Admin update database",[26,27],"VI","EN",47,[],[31],{"id":32,"createTime":23,"updateTime":23,"relativeEntities":33,"slug":23,"properties":34,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":44,"parentIds":45,"statistic":23},"fc4c2560-868c-4677-acb1-8686bef88727",[],{"title":35,"address":38,"country":41,"abbreviation":42},{"EN":36,"VI":37},"Vietnam National University Ho Chi Minh City","Đại học Quốc gia Thành phố Hồ Chí Minh",{"EN":39,"VI":40},"Quarter 6, Linh Trung Ward, Thu Duc City, Ho Chi Minh City, Vietnam","khu phố 6, Phường Linh Trung, Thành phố Thủ Đức, Thành phố Hồ Chí Minh, Việt Nam",{"VOID":13},{"VOID":43},"VNUHCM","https:\u002F\u002Fvnuhcm.edu.vn\u002F",[],[],"http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F7ba04cc5-1cf5-46d4-9c23-43e5bff0268d\u002F3a1876174d0eb93a5ae8b1a34de436ad.png",{"impactFactor":50,"impactFactorByYear":51,"i10Index":57,"i10IndexLast5Year":58,"totalPublication":59,"totalPublicationByYear":60,"totalCitation":67,"totalCitationByYear":68,"totalCitationPerPublication":74,"totalCitationPerPublicationByYear":75,"hindexLast5Year":81,"hindex":81},0,{"2020":52,"2021":53,"2022":54,"2023":55,"2024":56},0.07,0.19,0.25,0.21,0.14,4,3,409,{"2019":61,"2020":62,"2021":63,"2022":64,"2023":65,"2024":66},45,110,98,51,89,16,268,{"2019":69,"2020":70,"2021":71,"2022":72,"2023":73},48,84,95,21,20,0.66,{"2019":76,"2020":77,"2021":78,"2022":79,"2023":80},1.07,0.76,0.97,0.41,0.22,7,{"meta":83,"data":85},{"total":84},"448",[86,175,247,409,513,611,735,823,993,1116],{"id":87,"createTime":88,"updateTime":89,"relativeEntities":90,"slug":91,"properties":92,"entityType":103,"verifyStatus":22,"verifyTime":104,"verifyNote":105,"languages":23,"translateLanguages":23,"viewCount":106,"primaryUrl":107,"fullTextUrl":108,"authors":109,"publicationType":135,"publisherRelationship":136,"citationCount":50,"citationInfo":167,"publishDate":170,"publishYear":168,"citationAnalyzeStatus":171,"lastCitationAnalyze":172,"indexDatabases":173,"openAccess":23,"references":23,"isForceReanalyzing":174},"add6ef1c-124e-43c4-9a3c-5f252a0bb993","2023-09-14T13:15:47.225+00:00","2026-08-24T21:17:48.039+00:00",[],"Study-on-image-processing-method-to-classify-objects-on-dynamic-conveyor",{"abstract":93,"title":95,"gsPaper":97,"keywords":99,"doi":101},{"EN":94},"Controlling a robotic arms for applications such as detection and classification moving object using the vision sensor is a trend in the field of industrial robots. In particular, the vision sensor is the \"eye\" of the robot. To solve this problem, we need an efficient image processing algorithm for object identification to optimize the speed. Our classification principle based on the color of the object to be classified first, then separating contour to classify according to the shape of the object. In addition, our paper also propose a classification method that rarely mentioned in the relevant documents that classify based on object's characteristic. In fact, the product packaging not only has one color, but also includes complex color and patterns. Being able to classify these products shows the practicality of the proposed method. For complex colors and patterns object, the PCASIFT algorithm is useful, where SIFT extracts the local characteristics of the object and PCA reduces the number of dimensionality and retain only the best characteristics for identification. To picking object, a proposed design with the optimal requirements of picking order so that picking time is the shortest to minimize the delay for the next picking. The other outstanding advantage is a system of robotic arm to perform pick-up and sorting. This helps to verify good running algorithms in real time. The items are randomly released and the rotation of items is random. The speed of the conveyor is 5cm\u002Fs, an average of more than 2 seconds to pick up an object and robot arm processing precisely at high speed. The experimental results using camera Logitech C270, Yamaha Scara YK-400X robotic arm, LabVolt conveyor and OpenCV library are satisfactory, reliable and applicable.",{"VI":96},"Study on image processing method to classify objects on dynamic conveyor",{"VOID":98},"1699407379785386393",{"EN":100},"Image Processing, PCA-SIFT, OpenCV, colours and shapes classification.",{"VOID":102},"10.32508\u002Fstdjet.v2iSI2.489","PUBLICATION","2023-09-14T13:15:47.223+00:00","155157",1,"http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F489","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F489\u002F979",[110],{"id":111,"sortIndex":50,"researcher":23,"roles":112,"affiliations":113,"properties":130},"2d139ce5-27ab-472b-8c01-ee9efba03b38",[],[114],{"id":115,"sortIndex":50,"affiliation":116,"properties":127},"986e0df4-f163-4292-a4d3-21fee04d8107",{"id":115,"createTime":23,"updateTime":23,"relativeEntities":117,"slug":23,"properties":118,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":125,"parentIds":126,"statistic":23},[],{"title":119,"country":122,"abbreviation":123},{"EN":120,"VI":121},"Ho Chi Minh City University of Technology, Vietnam National University Ho Chi Minh City","Trường Đại học Bách khoa - Đại học Quốc gia Thành phố Hồ Chí Minh",{"VOID":13},{"VOID":124},"hcmut","https:\u002F\u002Fhcmut.edu.vn\u002F",[32],{"title":128},{"VI":129},"Ho Chi Minh City University of Technology, VNU-HCM",{"title":131,"gsAuthor":133},{"VI":132},"Huy Ngoc Tran",{"VOID":134},"OqcQTPsAAAAJ","ARTICLE",{"url":107,"publisher":137,"properties":160},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":138,"slug":10,"properties":139,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"languages":143,"translateLanguages":23,"viewCount":28,"subjectFields":144,"manageAffiliations":145,"indexDatabases":154,"url":47,"thumbnailPath":48,"statistic":155,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"issn":140,"title":141,"country":142},{"VOID":15},{"EN":17,"VI":18},{"VOID":13},[26,27],[],[146],{"id":32,"createTime":23,"updateTime":23,"relativeEntities":147,"slug":23,"properties":148,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":44,"parentIds":153,"statistic":23},[],{"title":149,"address":150,"country":151,"abbreviation":152},{"EN":36,"VI":37},{"EN":39,"VI":40},{"VOID":13},{"VOID":43},[],[],{"impactFactor":50,"impactFactorByYear":156,"i10Index":57,"i10IndexLast5Year":58,"totalPublication":59,"totalPublicationByYear":157,"totalCitation":67,"totalCitationByYear":158,"totalCitationPerPublication":74,"totalCitationPerPublicationByYear":159,"hindexLast5Year":81,"hindex":81},{"2020":52,"2021":53,"2022":54,"2023":55,"2024":56},{"2019":61,"2020":62,"2021":63,"2022":64,"2023":65,"2024":66},{"2019":69,"2020":70,"2021":71,"2022":72,"2023":73},{"2019":76,"2020":77,"2021":78,"2022":79,"2023":80},{"issue":161,"pages":163,"volume":165},{"VOID":162},"SI2",{"VOID":164},"SI127-SI136",{"VOID":166},"2",{"total":50,"publishYear":168,"statisticByYear":169},2019,{},"2019-12-31","ERROR_IN_ANALYZE_CITATION","2026-08-24T21:17:48.038+00:00",[],false,{"id":176,"createTime":177,"updateTime":178,"relativeEntities":179,"slug":180,"properties":181,"entityType":103,"verifyStatus":22,"verifyTime":192,"verifyNote":105,"languages":23,"translateLanguages":23,"viewCount":50,"primaryUrl":193,"fullTextUrl":194,"authors":195,"publicationType":135,"publisherRelationship":211,"citationCount":50,"citationInfo":241,"publishDate":244,"publishYear":242,"citationAnalyzeStatus":171,"lastCitationAnalyze":245,"indexDatabases":246,"openAccess":23,"references":23,"isForceReanalyzing":174},"4eb71201-d4e8-4c41-9a6d-17981f3b96fe","2023-09-14T12:31:04.092+00:00","2026-08-24T21:08:31.687+00:00",[],"Vibration-Analysis-of-a-Bus-s-Air-Spring-Suspension-Subjected-to-Random-Road-Profile",{"abstract":182,"title":184,"gsPaper":186,"keywords":188,"doi":190},{"EN":183},"Vehicle dynamics model in type of 1\u002F4 is used for vibration analysis under the effect of random road profile with different grades. The mathematical model to describe the used random road profile is able to change the type of investigated road grades by selecting the corresponding power spectral density parameter of the road grade according to the ISO 8608 standard. Random road profile is ivestigated in the range of frequency domain from 0 to 50 (Hz). The air spring stiffness and the damping coefficience are determined on the basis of reference to the practical vehicle. The variation of relative displacement amplitude of the suspension in the range of investigation domain is small, the air spring stiffness used in the calculation is constant. The obtained results corresponding to different grades of road surface roughness including displacement and acceleration parameters. Relative displacement is a parameter that aims to verify the ability to ensure safe working of the suspension, namely rattle spacing. Acceleration is used to evaluate the vehicle's comfort. Calculation results are analyzed as the basis for evaluating the influence of the air spring stiffness and road surface conditions on the comfort of the vehicle, as the basis for changing the air spring stiffness in accordance with adjusting the pressure of it according to the type of road profile quality.",{"VI":185},"Vibration Analysis of a Bus’s Air Spring Suspension Subjected to Random Road Profile",{"VOID":187},"652975961719366662",{"EN":189},"vehicle vibration, random road profile, air-spring suspension",{"VOID":191},"10.32508\u002Fstdjet.v3iSI2.576","2023-09-14T12:31:04.091+00:00","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F576","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F576\u002F1121",[196],{"id":197,"sortIndex":50,"researcher":23,"roles":198,"affiliations":199,"properties":208},"691c5860-ddb1-4884-9a49-3629ea292abc",[],[200],{"id":201,"sortIndex":50,"affiliation":202,"properties":23},"4aa79949-f640-4d4a-880d-b4641fdf91cc",{"id":201,"createTime":23,"updateTime":23,"relativeEntities":203,"slug":23,"properties":204,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":23,"parentIds":207,"statistic":23},[],{"title":205},{"VI":206},"Ho Chi Minh City University of Technology (HCMUT), Vietnam National University Ho Chi Minh City, Vienam",[],{"title":209},{"VI":210},"TRAN Huu Nhan",{"url":193,"publisher":212,"properties":235},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":213,"slug":10,"properties":214,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"languages":218,"translateLanguages":23,"viewCount":28,"subjectFields":219,"manageAffiliations":220,"indexDatabases":229,"url":47,"thumbnailPath":48,"statistic":230,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"issn":215,"title":216,"country":217},{"VOID":15},{"EN":17,"VI":18},{"VOID":13},[26,27],[],[221],{"id":32,"createTime":23,"updateTime":23,"relativeEntities":222,"slug":23,"properties":223,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":44,"parentIds":228,"statistic":23},[],{"title":224,"address":225,"country":226,"abbreviation":227},{"EN":36,"VI":37},{"EN":39,"VI":40},{"VOID":13},{"VOID":43},[],[],{"impactFactor":50,"impactFactorByYear":231,"i10Index":57,"i10IndexLast5Year":58,"totalPublication":59,"totalPublicationByYear":232,"totalCitation":67,"totalCitationByYear":233,"totalCitationPerPublication":74,"totalCitationPerPublicationByYear":234,"hindexLast5Year":81,"hindex":81},{"2020":52,"2021":53,"2022":54,"2023":55,"2024":56},{"2019":61,"2020":62,"2021":63,"2022":64,"2023":65,"2024":66},{"2019":69,"2020":70,"2021":71,"2022":72,"2023":73},{"2019":76,"2020":77,"2021":78,"2022":79,"2023":80},{"issue":236,"pages":237,"volume":239},{"VOID":162},{"VOID":238},"SI186-SI191",{"VOID":240},"3",{"total":50,"publishYear":242,"statisticByYear":243},2020,{},"2020-12-31","2026-08-24T21:08:31.686+00:00",[],{"id":248,"createTime":249,"updateTime":250,"relativeEntities":251,"slug":252,"properties":253,"entityType":103,"verifyStatus":22,"verifyTime":264,"verifyNote":105,"languages":23,"translateLanguages":23,"viewCount":50,"primaryUrl":265,"fullTextUrl":266,"authors":267,"publicationType":135,"publisherRelationship":373,"citationCount":50,"citationInfo":403,"publishDate":406,"publishYear":404,"citationAnalyzeStatus":171,"lastCitationAnalyze":407,"indexDatabases":408,"openAccess":23,"references":23,"isForceReanalyzing":174},"933902d9-9750-4d12-a6e0-cd1fe1720218","2023-09-14T12:06:22.467+00:00","2026-08-19T20:40:36.904+00:00",[],"Design-the-semi-automation-shrimps-tempura-frying-production-line",{"abstract":254,"title":256,"gsPaper":258,"keywords":260,"doi":262},{"EN":255},"Currently, Tempura shrimp consumption is very high in most Japanese restaurants all over the world. There are many companies that produce Tempura shrimp to provide for many restaurants as well as to sell in many supermarkets in many countries. In fact, the benefits of this product are enormous for the seafood industry in Vietnam as well as in other countries. However, most of the companies that produce the Tempura shrimps manually by workers. There are a lot of workers who fry shrimp manually to keep the company productive. The quality of this product also bases on the skill of the workers. And, to satisfy the condition of mass production, the enterprise also needs the very large area to set up the workplace for the workers. Secondly, this situation leads to the practical results that the quality of Tempura shrimp is not identical, unstable and the amount of waste is very high. Therefor, the requirement for the application of automatic control system in this tempura field can help the company to solve these difficult problems. This issue is the primary focus of this document. It is the situation of the Tempura fried shrimp companies which lead them to implement automated systems to replace unskilled workers. This paper presents the design of the whole semi automation single-side Tempura shrimp frying production line to propose some innovation about the shrimp tempura frying process. The entire Tempura semi automation production line consists of 3 main modules. Each module can operate as an independent machine. The workers just put the coated shrimp in the molds and then the frying process will perform the remaining steps automatically. The first module (Module 1) is the shaping module or the first time frying module. The powder solution also installed with this module. The second module (Module 2) is the finished frying module. 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paper proposes a control system for bicycle robot based on a passivity-based method. Bicycle robot is a nonlinear, MIMO (multi input - multi output) system. The first input of bicycle robot is the steering torque and and the second input has a relation with the kinetic energy. Its two outputs are the velocity of the steering angle and the velocity of the rolling angle . Bicycle robot is shown to be a passivity system. Consider a control problem which the steering angle tracks a value of zero and the rolling angle tracks a value of zero in order that bicycle robot keeps its vertical balance. We use a new control signal so that the system is passivity with input và output y= , which are the velocity of the steering angle and the velocity of the rolling angle . Stabilization of the equilibrium point at origin uses a PI (proportional integral) passivity-based control. Simulation results are done with Simulink in MATLAB and have good results such as short settling time and small percentage of overshoot. The error of the steering angle comes to 0.01 after two seconds and the error of the rolling angle comes to 0.01 after two seconds. Stability analyses using the passivity theory show that the equilibrium point at origin is asymptotically stable in the case of PI passivity-based control because the system has a positive definite storage function Vb and the derivative of Vb is semi-negative definite and the system is zero-state observable.",{"VI":419},"Passivity-based control of bicycle robot",{"VOID":421},"6307733367456179056",{"VOID":423},"10.32508\u002Fstdjet.v5i2.954","2023-09-14T10:58:28.694+00:00","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F954","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F954\u002F1220",[428,445,460],{"id":429,"sortIndex":50,"researcher":23,"roles":430,"affiliations":431,"properties":440},"a03f6fda-ac24-4949-a5dc-59b693735a3a",[],[432],{"id":433,"sortIndex":50,"affiliation":434,"properties":23},"1cd57a84-96dd-4770-9816-14d805176270",{"id":433,"createTime":23,"updateTime":23,"relativeEntities":435,"slug":23,"properties":436,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":23,"parentIds":439,"statistic":23},[],{"title":437},{"VI":438},"Ho Chi Minh City University of Technology – VNU-HCM; Industrial University of Ho Chi Minh City",[],{"title":441,"gsAuthor":443},{"VI":442},"Minh Ngọc Huỳnh",{"VOID":444},"NN_EMD0AAAAJ",{"id":446,"sortIndex":50,"researcher":23,"roles":447,"affiliations":448,"properties":457},"81b123af-d67f-4933-9f82-094103b19676",[],[449],{"id":450,"sortIndex":50,"affiliation":451,"properties":23},"26e4065d-271c-4bf1-94c0-23d847176091",{"id":450,"createTime":23,"updateTime":23,"relativeEntities":452,"slug":23,"properties":453,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":23,"parentIds":456,"statistic":23},[],{"title":454},{"VI":455},"Eastern International University",[],{"title":458},{"VI":459},"Hoài Nghĩa Duong",{"id":461,"sortIndex":50,"researcher":23,"roles":462,"affiliations":463,"properties":475},"a8280f27-8357-4a00-ad90-7ec6cb817520",[],[464],{"id":115,"sortIndex":50,"affiliation":465,"properties":472},{"id":115,"createTime":23,"updateTime":23,"relativeEntities":466,"slug":23,"properties":467,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":125,"parentIds":471,"statistic":23},[],{"title":468,"country":469,"abbreviation":470},{"EN":120,"VI":121},{"VOID":13},{"VOID":124},[32],{"title":473},{"VI":474},"Ho Chi Minh City University of Technology – VNU-HCM",{"title":476},{"VI":477},"Vĩnh Hảo Nguyễn",{"url":425,"publisher":479,"properties":502},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":480,"slug":10,"properties":481,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"languages":485,"translateLanguages":23,"viewCount":28,"subjectFields":486,"manageAffiliations":487,"indexDatabases":496,"url":47,"thumbnailPath":48,"statistic":497,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"issn":482,"title":483,"country":484},{"VOID":15},{"EN":17,"VI":18},{"VOID":13},[26,27],[],[488],{"id":32,"createTime":23,"updateTime":23,"relativeEntities":489,"slug":23,"properties":490,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":44,"parentIds":495,"statistic":23},[],{"title":491,"address":492,"country":493,"abbreviation":494},{"EN":36,"VI":37},{"EN":39,"VI":40},{"VOID":13},{"VOID":43},[],[],{"impactFactor":50,"impactFactorByYear":498,"i10Index":57,"i10IndexLast5Year":58,"totalPublication":59,"totalPublicationByYear":499,"totalCitation":67,"totalCitationByYear":500,"totalCitationPerPublication":74,"totalCitationPerPublicationByYear":501,"hindexLast5Year":81,"hindex":81},{"2020":52,"2021":53,"2022":54,"2023":55,"2024":56},{"2019":61,"2020":62,"2021":63,"2022":64,"2023":65,"2024":66},{"2019":69,"2020":70,"2021":71,"2022":72,"2023":73},{"2019":76,"2020":77,"2021":78,"2022":79,"2023":80},{"issue":503,"pages":504,"volume":506},{"VOID":166},{"VOID":505},"1520-1527",{"VOID":507},"5",{"total":57,"publishYear":509,"statisticByYear":510},2022,{},"2022-05-03",[],{"id":514,"createTime":515,"updateTime":516,"relativeEntities":517,"slug":518,"properties":519,"entityType":103,"verifyStatus":22,"verifyTime":530,"verifyNote":105,"languages":23,"translateLanguages":23,"viewCount":50,"primaryUrl":531,"fullTextUrl":532,"authors":533,"publicationType":135,"publisherRelationship":580,"citationCount":23,"citationInfo":23,"publishDate":170,"publishYear":168,"citationAnalyzeStatus":171,"lastCitationAnalyze":609,"indexDatabases":610,"openAccess":23,"references":23,"isForceReanalyzing":174},"80c4a458-1907-49f9-a9af-ae3f7d739d88","2023-09-14T13:08:24.924+00:00","2026-08-18T22:40:56.917+00:00",[],"Overview-of-mathematical-methods-for-power-system-reliability-evaluation",{"abstract":520,"title":522,"gsPaper":524,"keywords":526,"doi":528},{"EN":521},"Nowadays, with the strong development of the world's economy, the power system reliability issue is increasingly concerned. A high reliable power system brings peace of mind in production investment, stability in national security, citizen's satisfaction… Therefore, serious researches of the power system reliability problem is very necessary. Based on that researches, we can accurately evaluate the situation, propose operational scenarios, troubleshoot reasonably, plan properly for the future. From there, we can implement the ultimate goal of the power system reliability problem is to maximize the reliability, meeting the nation's development need. However, at present, power system reliability problems in many countries have not yet applied updated and objective assessment tools, only exploiting the surface of the problem. Through the research process, the authors publish this paper to outline the basic concepts, the classification and the parameters of the power system reliability problem. Besides, the paper summarizes in detail the methods of calculating and evaluating power system reliability based on the current mathematical models (Analytical Graph method, State Space method, Failure Tree method, Monte - Carlo method) with examples of each method. Thereby, these methods are compared and indicated the applications in specific situations.",{"VI":523},"Overview of mathematical methods for power system reliability evaluation",{"VOID":525},"11675725213098386950",{"EN":527},"Power system reliability,Power system reliability parameters,Power system reliability classification,Analytical Graph method,State Space method,Failure Tree method,Monte - Carlo 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paper aims to exhibit of optimal location and capacity of energy storage (ES) in electricity development planning, including transmission expansion planning (TEP) and generation expansion planning (GEP). Renewable energy sources are being developed in the world in order to replace the increasingly exhausting and polluting fossil energy sources. However, the energy generation of these types cannot be intentionally controlled but depends on natural conditions. To support the defects that renewable energy causes, energy storage systems have been studied and applied. Developing energy storage to charge cheap energy and provide higher prices in the electricity market is one of the issues that have being attention recently. Although choosing the proper location to place is a great challenge. A number of algorithms have been researched for a long time to find suitable locations for GEP; heuristic algorithms have been used in recent years because of their flexibility and wide range. The heuristic approaches, although being varied over time to become more and more effective search engines, but the problem is withheld into local extremes during searching, the number of too many loops when applied to large network systems... are still being researched and overcome by scientists for heuristic algorithms. On the other hand, the Max-Flow-Min-Cut (MFMC) algorithm has been applied to determine thyristor controlled series compensation (TCSC) to manage congestion that also has been of interest to many researchers but it has some limitations. The MFMC algorithm will be improved more effectively to eliminate congestion collaborate with a heuristic in the paper, and the simulation results tested to determine the position and power of ES on the 24 bus IEEE system showed the algorithm's feasibility.",{"VI":621},"Determine the location and capacity of energy storage in the power system using the improved Min-Cut algorithm",{"VOID":623},"9275865544743093971",{"EN":625},"Energy storage,congestion management,transmission expansion planning,min-cut 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this study, the forward and backward thermocapillary migration of fluids in a microchannel is numerically investigated. Both the upper wall and the lower wall of the microchannel are set to be an ambient temperature. Two 40mW heat sources activated periodically are placed on the left side and the right side of the droplet in a microchannel. When the heat source is turned on, a pair of asymmetric thermocapillary convection vortices is formed inside the droplet. The isotherms inside the droplet are extremely distorted by the thermocapillary convection. The forward and backward thermocapillary migration results in the net thermocapillary momentum which drives a water droplet moves from the hot side of the open channel to the cold side. The temperature gradient at the free interface on the side of acting heat source is always smaller than that on the cold side. The actuation velocity of the liquid droplet first increases significantly, and then decreases continuously for various interval times. The dynamic contact angle of a water droplet is strongly affected by the forward and backward oil flow motion and the net thermocapillary momentum inside the droplet. It is alternated due to the pressure difference acting on the free interface between two immiscible fluids during actuation process.",{"VI":745},"A simulation study of the forward and backward thermocapillary migration of fluids in a microchannel",{"VOID":747},"12171362267598748062",{"EN":749},"Mô phỏng số,Chuyển động mao dẫn nhiệt,Sức căng bề mặt,Kênh dẫn micro",{"VOID":751},"10.32508\u002Fstdjet.v3i4.753","2023-09-14T12:01:44.065+00:00",5,"http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F753","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F753\u002F1010",[757,775],{"id":758,"sortIndex":50,"researcher":23,"roles":759,"affiliations":760,"properties":772},"b18360f2-afe8-4036-9a62-66524854094e",[],[761],{"id":115,"sortIndex":50,"affiliation":762,"properties":769},{"id":115,"createTime":23,"updateTime":23,"relativeEntities":763,"slug":23,"properties":764,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":125,"parentIds":768,"statistic":23},[],{"title":765,"country":766,"abbreviation":767},{"EN":120,"VI":121},{"VOID":13},{"VOID":124},[32],{"title":770},{"VI":771},"Ho Chi Minh City University of Technology (HCMUT), VNU-HCM",{"title":773},{"VI":774},"Long Thanh Le",{"id":776,"sortIndex":50,"researcher":23,"roles":777,"affiliations":778,"properties":788},"ac9d840b-602a-47ae-80eb-d59083525f6e",[],[779],{"id":780,"sortIndex":50,"affiliation":781,"properties":23},"eed7851c-5b1b-4c3d-a0ab-055848a0deea",{"id":780,"createTime":23,"updateTime":23,"relativeEntities":782,"slug":23,"properties":783,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":23,"parentIds":787,"statistic":23},[],{"title":784,"country":786},{"VI":785},"Faculty of Mechanical Engineering, Ho Chi Minh University of Technology (HCMUT), 268 Ly Thuong Kiet Street, Ward 14, District 10, Ho Chi Minh City, Vietnam",{"VOID":13},[],{"title":789},{"VI":790},"Khuong Huu Nguyen",{"url":754,"publisher":792,"properties":815},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":793,"slug":10,"properties":794,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"languages":798,"translateLanguages":23,"viewCount":28,"subjectFields":799,"manageAffiliations":800,"indexDatabases":809,"url":47,"thumbnailPath":48,"statistic":810,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"issn":795,"title":796,"country":797},{"VOID":15},{"EN":17,"VI":18},{"VOID":13},[26,27],[],[801],{"id":32,"createTime":23,"updateTime":23,"relativeEntities":802,"slug":23,"properties":803,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":44,"parentIds":808,"statistic":23},[],{"title":804,"address":805,"country":806,"abbreviation":807},{"EN":36,"VI":37},{"EN":39,"VI":40},{"VOID":13},{"VOID":43},[],[],{"impactFactor":50,"impactFactorByYear":811,"i10Index":57,"i10IndexLast5Year":58,"totalPublication":59,"totalPublicationByYear":812,"totalCitation":67,"totalCitationByYear":813,"totalCitationPerPublication":74,"totalCitationPerPublicationByYear":814,"hindexLast5Year":81,"hindex":81},{"2020":52,"2021":53,"2022":54,"2023":55,"2024":56},{"2019":61,"2020":62,"2021":63,"2022":64,"2023":65,"2024":66},{"2019":69,"2020":70,"2021":71,"2022":72,"2023":73},{"2019":76,"2020":77,"2021":78,"2022":79,"2023":80},{"issue":816,"pages":817,"volume":819},{"VOID":399},{"VOID":818},"500-507",{"VOID":240},"2020-12-18","2026-08-17T10:18:41.653+00:00",[],{"id":824,"createTime":825,"updateTime":826,"relativeEntities":827,"slug":828,"properties":829,"entityType":103,"verifyStatus":22,"verifyTime":840,"verifyNote":105,"languages":23,"translateLanguages":23,"viewCount":57,"primaryUrl":841,"fullTextUrl":842,"authors":843,"publicationType":135,"publisherRelationship":963,"citationCount":23,"citationInfo":23,"publishDate":820,"publishYear":242,"citationAnalyzeStatus":171,"lastCitationAnalyze":826,"indexDatabases":992,"openAccess":23,"references":23,"isForceReanalyzing":174},"7dd7ec0d-36e5-409b-8af1-8536a52a8187","2023-09-14T12:07:43.770+00:00","2026-08-14T21:48:07.178+00:00",[],"Spatio-temporal-variations-of-sea-surface-temperature-in-coastal-waters-of-Khanh-Hoa-province-South-Viet-Nam-during-the-period-of-2010-2019",{"abstract":830,"title":832,"gsPaper":834,"keywords":836,"doi":838},{"EN":831},"Sea Surface Temperature (SST) is considered to be the most important parameter in oceanography. SST is not only an important physical parameter for studying the exchange of water vapor and heat between sea surface and atmosphere but also provides an useful index for oceanographic studies such as ocean circulation, water mass, ocean front, upwelling current, seawater mixing and ocean ecological environment. Empirical orthogonal function (EOF) and time series analysis was used to assess spatio-temporal variability of sea surface temperature in coastal waters of Khanh Hoa province (south Viet Nam) from Multi-scale Ultra-high Resolution Sea Surface Temperature (MUR SST) data for a period of 10 years (2010-2019). The first 4 EOF modes of SST explained 99.80% of the spatio-temporal variance in total variabilities. The first EOF mode explained 98.10% of the total variation of SST, representing the distribution and variability of SST in the summer with a decreasing trend from north to south. The second EOF mode explained 1,10% of the total variation of SST, representing the variation of the SST distribution in winter and spring with an increasing trend from shore to offshore. SST had a seasonal variation, it was highest in summer and lowest in winter. Trend analysis of SST time series in the past 10 years showed that SST increased 0,03oC\u002Fyear in the period 1\u002F2010-12\u002F2019. The trend and the speed of increase\u002Fdecrease of SST varied with each different period. The results of the study are useful documents to support the management and exploitation of marine ecosystems.",{"VI":833},"Spatio - temporal variations of sea surface temperature in coastal waters of Khanh Hoa province (South Viet Nam) during the period of 2010-2019",{"VOID":835},"10408063690091876206",{"EN":837},"phân tích chuỗi thời gian,dữ liệu vệ tinh,hàm trực giao thực nghiệm (EOF),nhiệt độ nước biển tầng mặt,xu 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is a natural compound, which has a higher antioxidant effect than vitamin C, has the effect of stimulating growth, resist some diseases, create attractive colors; so astaxanthin is widely used in agriculture and food, medicine, especially in salmon farming techniques. Astaxanthin is obtained from materials of natural origin such as seafood (shrimp shells, salmon), red yeast, microalgae, or from chemical synthesis. Haematococcus pluvialis is microalgae with high ability to synthesize astaxanthin. The subject is extracting astaxanthin from Haematococcus pluvialis by adding Viscozyme. The results showed that the conditions of extracting algae by enzyme were optimal at 40 ℃, 45 minutes with enzyme concentration at 2%, 35.60 mg\u002Fg of astaxanthin in dry algae and the ability to extract soluble substances reached 37%. Extracting astaxanthin using added enzyme gave better results than the non-enzyme sample with a high yield of 38%, the ability of astaxanthin in capturing ABTS free radicals with IC50 reached 13.53 mg\u002Fl, 3 times higher than vitamin C (IC50 40.50 mg\u002Fl) and higher than the non-enzyme sample. Astaxanthin is very insoluble in water; we’re making the complexes between astaxanthin and β-cyclodextrin to increase water solubility of astaxanthin. When the ratio of astaxanthin (extract) to β-cyclodextrin is 1\u002F50, the efficiency of astaxanthin dissolution is the highest with astaxanthin concentration of 18.85 mg\u002Fl, this is a precursor of the application of astaxanthin to food, and beverage...\r\n&nbsp;",{"VI":1003},"The application of Viscozyme to extract astaxanthin from Haematococcus pluvialis",{"VOID":1005},"10967848861098433386",{"EN":1007},"Astaxanthin,Haematococcus pluvialis,Viscozyme,β-cyclodextrin",{"VOID":1009},"10.15419\u002Fstdjet.v2i2.473","2023-09-14T13:14:06.781+00:00","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F473","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F473\u002F841",[1014,1031,1049,1066],{"id":1015,"sortIndex":50,"researcher":23,"roles":1016,"affiliations":1017,"properties":1026},"4b770e9e-d636-4015-a10d-fd644faa0979",[],[1018],{"id":1019,"sortIndex":50,"affiliation":1020,"properties":23},"9c278678-c442-4ffb-a9d7-902e733dcfb0",{"id":1019,"createTime":23,"updateTime":23,"relativeEntities":1021,"slug":23,"properties":1022,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":23,"parentIds":1025,"statistic":23},[],{"title":1023},{"VI":1024},"Vietnam - 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Therefore, shunt reactors may be frequently switched daily. Using circuit breakers to switch shunt reactors will produce transient components during this period. When a shunt reactor is switched on, the inrush current will appear and when the shunt reactor is switched off, the transient recovery voltage (TRV) will occur between two terminal contacts in the circuit breaker. This paper will focus on analyzing TRV components that occur when opening the circuit breaker to interrupt inductive loads with small currents, namely the analysis of TRV that occurs when opening the circuit breaker of the shunt reactor 500 kV - 128 MVar at 500 kV O Mon substation by using ATP\u002FEMTP transient analysis software. The simulation has indicated that the obtained results are suitable to the practical case and they are can be used a basis for a suggestion of solutions to reduce the TRV for other 500 kV substations with shunt reactors in Vietnam. This study also has significant technical and economic contributions. In the economy, the application of this model for shunt reactor circuit breakers will provide an evaluation of their TRV standing level in the practical operation, leading to reducing the maintenance and replacement costs of circuit breakers. In the technique, this solution will help to solve the problems of selecting appropriate circuit breakers, the best operation procedure, and effective reduction of TRV.",{"VI":1126},"Effects of transient recovery voltage and degradation solutions when opening shunt reactor at 500 kV O Mon substation",{"VOID":1128},"17681403287291595950",{"EN":1130},"Shunt reactor,Transient Recovery Voltage,Inductor load switching,switching overvoltage",{"VOID":1132},"10.15419\u002Fstdjet.v2i2.500","2023-09-14T10:42:32.382+00:00","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F500","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F500\u002F846",[1137,1153],{"id":1138,"sortIndex":50,"researcher":23,"roles":1139,"affiliations":1140,"properties":1150},"6562f33a-9393-4a53-a6ec-667ef07e8e9d",[],[1141],{"id":1142,"sortIndex":50,"affiliation":1143,"properties":23},"cf1f5189-fcc7-42ef-a716-5688114601a7",{"id":1142,"createTime":23,"updateTime":23,"relativeEntities":1144,"slug":23,"properties":1145,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":23,"parentIds":1149,"statistic":23},[],{"title":1146,"country":1148},{"VI":1147},"Power Transmission Company 4, National Power Transmission Copration, Electrcity of Vietnam",{"VOID":13},[],{"title":1151},{"VI":1152},"Phat Tan Tran",{"id":1154,"sortIndex":50,"researcher":23,"roles":1155,"affiliations":1156,"properties":1167},"ea1b6d9c-ead5-4c68-9308-b7bbf26bfb93",[],[1157],{"id":115,"sortIndex":50,"affiliation":1158,"properties":1165},{"id":115,"createTime":23,"updateTime":23,"relativeEntities":1159,"slug":23,"properties":1160,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":125,"parentIds":1164,"statistic":23},[],{"title":1161,"country":1162,"abbreviation":1163},{"EN":120,"VI":121},{"VOID":13},{"VOID":124},[32],{"title":1166},{"VI":129},{"title":1168,"gsAuthor":1170},{"VI":1169},"Dieu Ngoc Vo",{"VOID":1171},"rt6EdQQAAAAJ",{"url":1134,"publisher":1173,"properties":1196},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1174,"slug":10,"properties":1175,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"languages":1179,"translateLanguages":23,"viewCount":28,"subjectFields":1180,"manageAffiliations":1181,"indexDatabases":1190,"url":47,"thumbnailPath":48,"statistic":1191,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"issn":1176,"title":1177,"country":1178},{"VOID":15},{"EN":17,"VI":18},{"VOID":13},[26,27],[],[1182],{"id":32,"createTime":23,"updateTime":23,"relativeEntities":1183,"slug":23,"properties":1184,"entityType":23,"verifyStatus":23,"verifyTime":23,"verifyNote":23,"languages":23,"translateLanguages":23,"viewCount":23,"url":44,"parentIds":1189,"statistic":23},[],{"title":1185,"address":1186,"country":1187,"abbreviation":1188},{"EN":36,"VI":37},{"EN":39,"VI":40},{"VOID":13},{"VOID":43},[],[],{"impactFactor":50,"impactFactorByYear":1192,"i10Index":57,"i10IndexLast5Year":58,"totalPublication":59,"totalPublicationByYear":1193,"totalCitation":67,"totalCitationByYear":1194,"totalCitationPerPublication":74,"totalCitationPerPublicationByYear":1195,"hindexLast5Year":81,"hindex":81},{"2020":52,"2021":53,"2022":54,"2023":55,"2024":56},{"2019":61,"2020":62,"2021":63,"2022":64,"2023":65,"2024":66},{"2019":69,"2020":70,"2021":71,"2022":72,"2023":73},{"2019":76,"2020":77,"2021":78,"2022":79,"2023":80},{"issue":1197,"pages":1198,"volume":1200},{"VOID":166},{"VOID":1199},"86-96",{"VOID":166},{"total":50,"publishYear":168,"statisticByYear":1202},{},[]]