An Energy Efficient Node Scheduling based Congestion Control Scheme for WSN Multicasting
- Title
- An Energy Efficient Node Scheduling based Congestion Control Scheme for WSN Multicasting
- Creator
- Raja Vikram G.; Shahu Chatrapati K.; Krishna A.V.N.
- Description
- Wireless Sensor Network (WSN) is the most preferred technology for communication in resource constrained environments. They offer high-quality data propagation with limited delay. Sensor Network can be established with the help of self-configurable nodes to monitor various physical phenomenon. Multicasting in WSN results in low communication control overhead but may lead to congestion, which results in data loss, redundant transmissions, poor throughput and reduced network lifetime. In this paper, we propose a protocol to estimate the Degree of Congestion (CD) at each node to ensure load balance and avoid further congestion within the network. It is demonstrated that the proposed scheme is better compared with existing congestion control schemes in terms of end-to-end delay and energy efficiency. 2020 G. Raja Vikram et al., licensed to EAI
- Source
- EAI Endorsed Transactions on Energy Web, Vol-2020, No. 30, pp. 1-6.
- Date
- 2020-01-01
- Publisher
- European Alliance for Innovation
- Subject
- Congestion Control; Energy Efficiency; Node Scheduling; Wireless Sensor Network; WSN Multicast
- Coverage
- Raja Vikram G., Department of CSE, Vignan Institute of Technology & Science, Hyderabad, Telangana, India; Shahu Chatrapati K., Department of CSE, J.N.T.U.H College of Engineering, Manthani, Telangana, India; Krishna A.V.N., Department of CSE, CHRIST (Deemed to be University), Bangalore, Karnataka, India
- Rights
- All Open Access; Gold Open Access
- Relation
- ISSN: 2032944X
- Format
- Online
- Language
- English
- Type
- Article
Collection
Citation
Raja Vikram G.; Shahu Chatrapati K.; Krishna A.V.N., “An Energy Efficient Node Scheduling based Congestion Control Scheme for WSN Multicasting,” CHRIST (Deemed To Be University) Institutional Repository, accessed February 24, 2025, https://archives.christuniversity.in/items/show/16414.