Nội dung được dịch bởi AI, chỉ mang tính chất tham khảo
BÀI BÁO ĐƯỢC RÚT LẠI: Thuật toán quyết định chuyển giao theo chiều dọc dựa trên niềm tin và quyền riêng tư cho ứng dụng telecardiology trong mạng không dây đa dạng
Tóm tắt
Telecardiology là một trong những lĩnh vực mới nổi của telemedicine nhằm cải thiện chất lượng cuộc sống cho bệnh nhân tim mạch. Nó sử dụng công nghệ thông tin và truyền thông để theo dõi bệnh nhân tim mạch bởi các chuyên gia y tế từ xa. Hệ thống telecardiology yêu cầu kết nối phổ biến để đảm bảo cung cấp dịch vụ hứa hẹn. Dịch vụ liền mạch như vậy được cung cấp bởi công nghệ không dây đa dạng. Tuy nhiên, cơ sở hạ tầng mạng mở của các mạng đa dạng dễ bị tấn công bảo mật khác nhau, làm cho quyền riêng tư của bệnh nhân trở nên dễ bị tổn thương. Do đó, trong bài báo này, hệ thống telecardiology được tích hợp với thuật toán quyết định chuyển giao theo chiều dọc dựa trên niềm tin và quyền riêng tư, nhằm xác định sự kết hợp tốt nhất giữa các ứng viên thay thế có sẵn dựa trên tình trạng sức khỏe của bệnh nhân. Kết quả mô phỏng cho thấy sự cải thiện về tỷ lệ chuyển giao, giảm xác suất chặn và cải thiện lưu lượng hiệu suất.
Từ khóa
#Telecardiology #telemedicine #công nghệ thông tin và truyền thông #chuyển giao theo chiều dọc #quyền riêng tư #bảo mậtTài liệu tham khảo
Abdullah RM, Abualkishik AZ, Alwan AA (2018) Improved handover decision algorithm using multiple criteria. Proceedings of international conference on emerging ubiquitous systems and pervasive networks, vol 141. Elsevier, Hoboken, pp 32–39
Almutairi AF, Landolsi MA, Al-Hawaj AO (2016) Weighting Selection in GRA-based MADM for vertical handover in wireless networks. Proceedings of international conference on computer modeling and simulation, pp. 331–336
Bergrath S, Rortgen D, Rossaint R, Beckers SK, Fischermann H, Brokmann J, Czaplik M, Felzen M, Schneiders MT, Skorning M (2011) Technical and organisational feasibility of a multifunctional telemedicine system in an emergency medical service—an observational study. J Telemed Telecare 17(7):371–377
Bhadouria S, Roshan R (2018) Network selection by vertical handoff in heterogeneous vehicular network using fuzzy MADM-TOPSIS. Optical and wireless technologies. Springer, Berlin, pp 317–324
Bhatia M, Kumar K (2018) Network selection in cognitive radio enabled wireless body area networks. Dig Commun Netw 6(1):75–85
Bo S, Lin L, Feng D (2014) The multi-attribute vertical handoff algorithm based on node mobility. Proceedings of the 5th IEEE international conference on software engineering and service science pp. 1146–1149
Busanelli S, Martaol M, Ferrari G, Spigoni G, Iotti N (2011) Vertical handover between Wi-Fi and UMTS networks: experimental performance analysis. Int J Energy Inf Commun 2(1):75–96
Caldarola P, Massimo Gulizia M, Gabrielli D, Sicuro M, De Gennaro L, Giammaria M, Brenno Grieco N, Grosseto D, Mantovan R, Mazzanti M, Menotti A, Daniele Brunetti N, Severi S, Russo G, Franco Gensini G (2017) ANMCO/SIT consensus document: telemedicine for cardiovascular emergency networks. pp. 229–243
Chen R, Shu G, Chen P, Zhang L (2017) Enhanced security and pairing-free handover authentication scheme for mobile wireless networks. J Phys Conf Ser. 910:1–9
Das S, Guha D (2017) Attribute weight computation in a decision making problem by particle swarm optimization. Neural computing and applications. Springer, Berlin, pp 1–11
Elhadj HB, Elias J, Chaari L, Kamoun L (2016) Multi attribute decision making handover algorithm for wireless body area networks. Comput Commun 81:97–108 (Elsevier)
Hafizul Islam SK, Biswas GP (2012) An improved pairing-free identity-based authenticated key agreement protocol based on ECC. Proced Eng 30:499–507 (Elsevier)
He D, Wang D, Xie Qi, Chen K (2017) Anonymous handover authentication protocol for mobile wireless networks with conditional privacy preservation. Sci China Inform Sci 60:1–17
Ijemaru GK, Adeyanju IA, Olusuyi KO, Ofusori TJ, Ngharamike ET, Sobowale AA (2018) Security Challenges of Wireless Communications Networks: A Survey. International Journal of Applied Engineering Research 13(8):5680–5692
Khan M, Ahmad A, Khalid S, Ahmed SH, Jabbar S, Ahmad J (2017) Fuzzy based multi-criteria vertical handover decision modeling in heterogeneous wireless networks. Multimed Tools Appl 76(23):24649–24674 (Springer)
Mahardhika G, Ismail M, Nordin R (2015) Vertical handover decision algorithm using multicriteria metrics in heterogeneous wireless network. J Comput Netw Commun 1:1–8
Mohamed L, Leghris C, Abdellah A (2012) Network selection decision based on handover history in heterogeneous wireless networks. Int J Comput Sci Telecommun 3(2):21–25
Persis Urbana Ivy B, Hema Malini RR, Chelladurai S (2012) QoS Metrics in telemedicine-modern approaches in traditional medicine. J Electr Commun Instrum Eng Res 2(3):27–36
Prakash S, Patel RB, Jain VK (2016) A multi-attribute intuitionistic fuzzy group decision method for network selection in heterogeneous wireless networks using TOPSIS. KSII Trans Internet Inf Syst 10(11):5229–5252
Radhika K, Venugopal Reddy A (2011) Network selection in heterogeneous wireless networks based on fuzzy multiple criteria decision making. Int J Comput Appl 22(1):7–10
Savitha K, Chandrasekar C (2011a) Grey relation analysis for vertical handover decision schemes in heterogeneous wireless networks. Eur J Sci Res 54(4):560–568
Savitha K, Chandrasekar C (2011b) Trusted network selection using SAW and TOPSIS algorithms for heterogeneous wireless networks. Int J Comput Appl 26(8):22–29
Tawil R, Pujolle G, Demerjian J (2008a) Distributed handoff decision scheme using MIH function for the fourth generation wireless networks. Proceedings of IEEE conference on information and communication technologies: from theory to applications
Tawil R, Salazar O, Pujolle G (2008b) Vertical handoff decision scheme using MADM for wireless networks. Proceedings of IEEE wireless communications and networking. pp. 2789–2792
Thanga Selvi R, I Muthulakshmi (2020) An optimal artificial neural network based big data application for heart disease diagnosis and classification model. J Ambient Intell Hum Comput. Springer, Berlin. pp. 296–316.
Van DD, Ai Q, Liu Q (2017) Vertical handover algorithm for WBANs in ubiquitous healthcare with quality of service guarantees. Information 8(1):1–16
Wang C, Yuan Y, Wu J (2017) A new privacy-preserving handover authentication scheme for wireless networks. Sensors 17:1–14
Wang D, Xu L, Wang F, Xu Q (2018) An anonymous batch handover authentication protocol for big flow wireless mesh networks. EURASIP J Wirel Commun Netw 1:1–8
Yang XS, Deb S (2009) Cuckoo search via lévy flight. Proceeding of world congress on nature and biologically inspired computing. pp 210–214
Yang Xu, Huang X, Liu JK (2016) efficient handover authentication with user anonymity and untraceability for mobile cloud computing. Fut Gener Comput Syst 52:190–195
Yew HT, Satria H, Hau YW, Omar Z, Supriyanto E (2014) A Telecardiology Framework for Rural Area. In: WSEAS proceeding of the 13th international conference on applied computer and applied computational science (ACACOS 14), Kuala Lumpur, Malaysia, pp 140–148
Yew HT, Aditya Y, SupriyantoSatrial EH, Hau YW (2015a) Telecardiology system for fourth generation heterogeneous wireless networks. ARPN J Eng Appl Sci 10(2):600–607
Yew HT, Supriyanto E, Satria MH, Hau YW (2015b) User-centric based vertical handover decision algorithm for telecardiology application in heterogeneous networks. Jurnal teknologi (Sciences and Engineering) 77(7):79–83
Yew HT, Supriyanto E, Satria MH, Hau YW (2015c) Autonomous network selection strategy for telecardiology application in heterogeneous wireless networks. Jurnal teknologi (Sciences & Engineering) 77(18):147–153
Yew HT, Supriyanto E, Satria MH, Hau YW (2016a) Adaptive network selection mechanism for telecardiology system in developing countries. Proceedings of IEEE international conference on biomedical and health informatics. pp. 94–97
Yew HT, Supriyanto E, Haikal Satria M, Hau Y-W (2016b) A vertical handover management for mobile telemedicine system using heterogeneous wireless networks. Int J Adv Comput Sci Appl 7(7):1–9
Zgheib R, Kristiansen S, Conchon E (2020) A scalable semantic framework for IoT healthcare applications. J Ambient Intell Hum Comput 13:246–268
Zineb AB, Ayadi M, Tabbane S (2015) Fuzzy MADM based vertical handover algorithm for enhancing network performances. Proceedings of the 23rd IEEE international conference on software, telecommunications and computer networks, pp. 153–159
Zineb AB, Ayadi M, Tabbane S (2017) An enhanced vertical handover based on fuzzy inference MADM approach for heterogeneous networks. Arab J Sci Eng 42(8):3263–3274