LoRa+: An extension of LoRaWAN protocol to reduce infrastructure costs by improving the Quality of Service
Tài liệu tham khảo
Lang, 2011, The “Intelligent Container” A Cognitive Sensor Network for Transport Management, IEEE Sensors Journal, 11, 688, 10.1109/JSEN.2010.2060480
Visser, 2015, Communicating Sustainable Shoes to Mainstream Consumers: The Impact of Advertisement Design on Buying Intention, Sustainability, 7, 8420, 10.3390/su7078420
Sharif, 2013, Wireless communications for E-health applications [Guest Editorial], IEEE Wireless Communications, 20, 10, 10.1109/MWC.2013.6590045
Shyam, 2017, Smart waste management using Internet-of-Things (IoT), 199
A. Piel, X. Huet, C. Leray, B. Pedrotti, B. Parrein, R. Lehn, An Experimental Device to Supervise the Daily Evaporation in the Guérande’s Salt Marshes, Springer International Publishing, Cham, pp. 421–432, doi:10.1007/978-3-319-73751-5_32.
LoRa Alliance, LoRaWAN Specification v1.1, (https://lora-alliance.org/resource-hub/lorawantm-specification-v11 ed.). 2017.
Sigfox, (https://www.sigfox.com/).
DASH7 Alliance Std, DASH7 Alliance Protocol Specification v1.1, (http://www.dash7-alliance.org/dash7-allianceprotocol-specification-v1-1-ready-for-download).
Mroue, 2018, MAC layer-based evaluation of IoT technologies: LoRa, SigFox and NB-IoT, 1
ETSI TR 101 362 V8.4.0, 2005
ETSI EN 300 220-1V3.1.0, 2016
Mroue, 2018, Analytical and Simulation study for LoRa Modulation, 655
Kowatsch, 1983, A Spread-Spectrum Concept Combining Chirp Modulation and Pseudonoise Coding, IEEE Transactions on Communications, 31, 1133, 10.1109/TCOM.1983.1095745
Springer, 2001, A wireless spread-spectrum communication system using SAW chirped delay lines, IEEE Transactions on Microwave Theory and Techniques, 49, 754, 10.1109/22.915460
Ayoub, 2019, Internet of Mobile Things: Overview of LoRaWAN, DASH7, and NB-IoT in LPWANs Standards and Supported Mobility, IEEE Communications Surveys Tutorials, 21, 1561, 10.1109/COMST.2018.2877382
Li, 2018, How Agile is the Adaptive Data Rate Mechanism of LoRaWAN?, 206
LoRa Alliance, Lora modulation basics, an1200.22, (http://www.semtech.com/images/datasheet/an1200.22.pdf). 2016.
SX1301 datasheet, Semtech corporation. Jun. 2014, v2.01.
Petri, 2016, Measurements, performance and analysis of LoRa FABIAN, a real-world implementation of LPWAN, 1
Georgiou, 2017, Low Power Wide Area Network Analysis: Can LoRa Scale?, IEEE Wireless Communications Letters, 6, 162, 10.1109/LWC.2016.2647247
Pop, 2017, Does Bidirectional Traffic Do More Harm Than Good in LoRaWAN Based LPWA Networks?, 1
Gupta, 2017, Modelling of IoT Traffic and Its Impact on LoRaWAN, 1
Bankov, 2017, Mathematical model of LoRaWAN channel access with capture effect, 1
Bankov, 2017, Mathematical model of LoRaWAN channel access, 1
Petjjrvi, 2017, Performance of a low-power wide-area network based on LoRa technology: Doppler robustness, scalability, and coverage, International Journal of Distributed Sensor Networks, 13
Neumann, 2016, Indoor deployment of low-power wide area networks (LPWAN): A LoRaWAN case study, 1
Wang, 2017, Performance of LoRa-Based IoT Applications on Campus, 1
Rizzi, 2017, Evaluation of the IoT LoRaWAN Solution for Distributed Measurement Applications, IEEE Transactions on Instrumentation and Measurement, 66, 3340, 10.1109/TIM.2017.2746378
Jörke, 2017, Urban channel models for smart city IoT-networks based on empirical measurements of LoRa-links at 433 and 868 MHz, 1
Radcliffe, 2017, Usability of LoRaWAN Technology in a Central Business District, 1
Adelantado, 2017, Understanding the Limits of LoRaWAN, IEEE Communications Magazine, 55, 34, 10.1109/MCOM.2017.1600613
Kim, 2018, Contention-Aware Adaptive Data Rate for Throughput Optimization in LoRaWAN, Sensors, 18, 10.3390/s18061716
Mikhaylov, 2018, Effect of Downlink Traffic on Performance of LoRaWAN LPWA Networks: Empirical Study, 1
Sanchez-Iborra, 2018, Performance Evaluation of LoRa Considering Scenario Conditions, Sensors, 18, 10.3390/s18030772
El Rachkidy, 2019, Collision Resolution Protocol for Delay and Energy Efficient LoRa Networks, IEEE Transactions on Green Communications and Networking, 3, 535, 10.1109/TGCN.2019.2908409
Voigt, 2017, Mitigating inter-network interference in LoRa networks, Int. Conf. Embedded Wireless Syst, 323
Qin, 2017, Resource Efficiency in Low-Power Wide-Area Networks for IoT Applications, 1
Bor, 2017, LoRa Transmission Parameter Selection, 27
Cuomo, 2017, EXPLoRa: Extending the performance of LoRa by suitable spreading factor allocations, 1
Varsier, 2017, Capacity limits of lorawan technology for smart metering applications, 1
Sanchez-Iborra, 2018, Performance evaluation of lora considering scenario conditions, Sensors (Basel, Switzerland), 18, 772, 10.3390/s18030772
Bezerra, 2019, Temperature impact in lorawan-a case study in northern sweden, Sensors (Basel, Switzerland), 19, 4414, 10.3390/s19204414