Energy Efficient Dynamic Routing Mechanism (EEDRM) with Obstacles in WSN

被引:5
|
作者
Selvaraj, Sharmila [1 ]
Vasanthamani, Saranya [1 ]
机构
[1] Sri Krishna Coll Engn & Technol, Dept Informat Technol, Coimbatore, Tamil Nadu, India
关键词
Sensor node; Energy efficiency; Network lifetime; Obstacle; Sink; Clustering; Algorithm; WIRELESS SENSOR NETWORKS; MOBILITY MANAGEMENT; ALGORITHM; LIFETIME; CLUSTER; ROBUST; SINK;
D O I
10.1007/s11277-020-07174-9
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
In Wireless Sensor Networks, the in-built energy and processing capacity of sensors should be reliably used to ensure effective use of resources. The major pitfalls in WSN include network lifetime management, energy management and Obstacle avoidance. The paramount aim of proposed EEDRM protocol is to deliver better network efficiency thus uses the concept called clustering of sensor nodes. Cluster Heads are chosen based on energy, distance between cluster head (CH) and sink. Mobility enables high resource usage, hence in proposed work Cluster Heads are made mobile and routes in computed path. Obstacles in sensing environment is an important thing to be considered. EEDRM is designed in a way that it resists obstacles using travelling salesman problem, Hamiltonian Circuit algorithms and with the help of binary grid pattern in sensing environment. Data latency is reduced as CH is available all the time for receiving data from CM inside Cluster and all CH are independent to each other so data collected by CH will be transferred dynamically to the sink. Based on Obstacle avoidance model and node states an FSM is constructed using hidden Markov model. The increased network lifetime and throughput of EEDRM is analysed and compared with M-GEAR protocol. Analysis comes out with the result that EEDRM is 1.82 times better than M-GEAR and 3.92 times better than LEACH ME in terms of throughput and in terms of network lifetime EEDRM outperforms M-GEAR by 1.2 times and LEACH ME by 1.54 times.
引用
收藏
页码:2761 / 2776
页数:16
相关论文
共 50 条
  • [1] Energy Efficient Dynamic Routing Mechanism (EEDRM) with Obstacles in WSN
    Sharmila Selvaraj
    Saranya Vasanthamani
    Wireless Personal Communications, 2020, 112 : 2761 - 2776
  • [2] A Routing Efficient Mechanism for WSN
    Aswathi, T. S.
    Riyadh, M.
    Deepa, C. M.
    2015 INTERNATIONAL CONFERENCE ON INNOVATIONS IN INFORMATION, EMBEDDED AND COMMUNICATION SYSTEMS (ICIIECS), 2015,
  • [3] DMEERP: A dynamic multi -hop energy efficient routing protocol for WSN
    Nivedhitha, V.
    Saminathan, A. Gopi
    Thirumurugan, P.
    MICROPROCESSORS AND MICROSYSTEMS, 2020, 79
  • [4] Energy efficient clearance routing in WSN
    Singh D.P.
    Goudar R.H.
    International Journal of System Assurance Engineering and Management, 2017, 8 (Suppl 2) : 555 - 575
  • [5] An Energy Efficient Caching Integrated Delay-And-Forward Routing Mechanism In WSN
    Kamila, Nilayam Kumar
    Dhal, Sunil
    2018 INTERNATIONAL CONFERENCE ON RECENT INNOVATIONS IN ELECTRICAL, ELECTRONICS & COMMUNICATION ENGINEERING (ICRIEECE 2018), 2018, : 1243 - 1247
  • [6] Energy-Efficient Routing Research for WSN
    Wang Daoyuan
    Tian Hui
    Wang Shuang
    2007 INTERNATIONAL CONFERENCE ON WIRELESS COMMUNICATIONS, NETWORKING AND MOBILE COMPUTING, VOLS 1-15, 2007, : 2413 - 2415
  • [7] Erratum to: Energy efficient clearance routing in WSN
    Devesh Pratap Singh
    R. H. Goudar
    International Journal of System Assurance Engineering and Management, 2017, 8 (Suppl 2) : 576 - 576
  • [8] An Energy Efficient Routing with Range Switching in WSN
    Agrawal, Tripti
    Kushwah, Rajendra Singh
    Tomar, Ranjeet Singh
    2014 6TH INTERNATIONAL CONFERENCE ON COMPUTATIONAL INTELLIGENCE AND COMMUNICATION NETWORKS, 2014, : 354 - 357
  • [9] Energy Efficient Routing Protocols for WSN's
    Kodali, Ravi Kishore
    Sarma, Narasimha
    2013 INTERNATIONAL CONFERENCE ON COMPUTER COMMUNICATION AND INFORMATICS, 2013,
  • [10] Energy efficient clustering and routing algorithm for WSN
    Kumar, Mohit
    Mittal, Sonu
    Akhtar, Amir K.
    Recent Advances in Computer Science and Communications, 2021, 14 (01) : 282 - 290