EH-GPSR: An Energy Harvesting Protocol for IoT-based Wireless Sensor Networks

被引:1
作者
Khelifi, Manel [1 ]
Lahreche, Ali [1 ]
Grine, Ismail [1 ]
Alioua, Ahmed [1 ]
机构
[1] Univ Mohamed Seddik Benyahia, Dept Comp Sci, Jijel 18000, Algeria
来源
2021 12TH INTERNATIONAL CONFERENCE ON INFORMATION AND COMMUNICATION SYSTEMS (ICICS) | 2021年
关键词
Energy harvesting; Internet of Things; EHWSNs; Green and renewable supply; Geographic routing; ROUTING PROTOCOL;
D O I
10.1109/ICICS52457.2021.9464593
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Energy harvesting is a promising paradigm in the Internet of things based on wireless sensor networks (IoT-based WSNs) for emerging applications such as smart cities, healthcare, and farming. Although the amalgamation of energy harvesting in WSNs (EH-WSNs) fostered many new opportunities, they still face challenging requirements to achieve high sustainability. Nowadays, most research efforts are focused on curtailing the limitation of the energy supply of IoT sensors, which strongly impacts their design. Therefore, new efficient energy harvesting routing protocols need to be developed, while ensuring network reliability and continuity. In this paper, we proposed a new energy harvesting greedy perimeter stateless routing protocol (EH-GPSR) to address the issue of limited sensor energy. EH-GPSR employs an EH rate in a cost function, derived from the randomized minimum path recovery time (R-MPRT) algorithm, to measure the harvested energy. Farther, it improves the greedy routing mechanism. Specifically, it uses a weighted function that combines the destination distance information with the EH rate-based cost to adaptively select the next hop. The simulation results showed that our protocol EH-GPSR extends the network lifetime and allows a better packet delivery rate by more than 20% compared to the GPSR protocol.
引用
收藏
页码:291 / 296
页数:6
相关论文
共 22 条
[11]  
Karp B., 2000, MobiCom 2000. Proceedings of the Sixth Annual International Conference on Mobile Computing and Networking, P243, DOI 10.1145/345910.345953
[12]  
Khelifi M, 2017, INT CONF UBIQ FUTUR, P249
[13]   Energetic sustainability of routing algorithms for energy-harvesting wireless sensor networks [J].
Lattanzi, Ernanuele ;
Regini, Edoardo ;
Acquaviva, Andrea ;
Bogliolo, Alessandro .
COMPUTER COMMUNICATIONS, 2007, 30 (14-15) :2976-2986
[14]  
Martinez G, 2014, IEEE GLOB COMM CONF, P106, DOI 10.1109/GLOCOM.2014.7036792
[15]   Wastage-Aware Routing in Energy-Harvesting Wireless Sensor Networks [J].
Martinez, Gina ;
Li, Shufang ;
Zhou, Chi .
IEEE SENSORS JOURNAL, 2014, 14 (09) :2967-2974
[16]   Prospective Efficient Ambient Energy Harvesting Sources for IoT-Equipped Sensor Applications [J].
Mishu, Mahmuda Khatun ;
Rokonuzzaman, Md. ;
Pasupuleti, Jagadeesh ;
Shakeri, Mohammad ;
Rahman, Kazi Sajedur ;
Hamid, Fazrena Azlee ;
Tiong, Sieh Kiong ;
Amin, Nowshad .
ELECTRONICS, 2020, 9 (09) :1-22
[17]   Packet Dropping Minimization in Energy Harvesting-Based Wireless Sensor Network With Linear Topology [J].
Nobar, Sina Khoshabi ;
Mansourkiaie, Fatemeh ;
Ahmed, Mohamed Hossam .
IEEE ACCESS, 2020, 8 :38682-38691
[18]   Max-SNR Opportunistic Routing for Large-Scale Energy Harvesting Sensor Networks [J].
Shafieirad, Hossein ;
Adve, Raviraj S. ;
Shahbazpanahi, Shahram .
IEEE TRANSACTIONS ON GREEN COMMUNICATIONS AND NETWORKING, 2018, 2 (02) :506-516
[19]   An optimization of distributed Voronoi-based collaboration for energy-efficient geographic routing in wireless sensor networks [J].
Sridhar, M. ;
Pankajavalli, P. B. .
CLUSTER COMPUTING-THE JOURNAL OF NETWORKS SOFTWARE TOOLS AND APPLICATIONS, 2020, 23 (03) :1741-1754
[20]   Stability-Aware Geographic Routing in Energy Harvesting Wireless Sensor Networks [J].
Tran Dinh Hieu ;
Le The Dung ;
Kim, Byung-Seo .
SENSORS, 2016, 16 (05)