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Denaturalized cluster organization based improving energy constraints using relay link chain routing protocol in wireless sensor network
Journal of Ambient Intelligence and Humanized Computing ( IF 3.662 ) Pub Date : 2021-04-18 , DOI: 10.1007/s12652-021-03052-9
J. Jean Justus , T. Jayasankar , G. Sheryl Oliver , C. Bharatiraja , N. B. Prakash

Energy constraints is an important for routing standards in cooperative transmission to make a better communication on wireless medium. The WSN broadcast communication leads Loss of energy, broken link, non-relay network issues because of cooperative network does not make efficient routing standards. Most of the energy efficient schemas possess the network wide broadcast protocol (NWBP) to oppose the challenges in WSN. To improve the energy efficiency in WSN, we propose a denaturalized cluster organization to form the centralized cluster head (DNC-CCH) communication on route head to make the transmission without sleeping nodes on networks have the on state available node from source to destination. In Addition by improving energy constraints using relay link chain routing protocol (RLCRP) in wireless sensor network make an relay on routing to choose the non-sleeping cluster nodes relies the neighbor discourse supposed to the delay routing propagation. This select the closest relay links to make the continues link on really transmission with aggregate data from source to destination with improved energy. Also this consider the neighboring senders to improve the lifespan of the network nodes to make energy efficient routing standards and life time of WSN cooperative communication.



中文翻译:

在无线传感器网络中使用中继链路链路由协议基于变态集群组织改善能量约束

能量约束对于协作传输中的路由标准以在无线介质上进行更好的通信非常重要。由于协作网络无法制定有效的路由标准,因此WSN广播通信会导致能量损耗,链路断开,非中继网络问题。大多数节能方案都具有网络范围的广播协议(NWBP),可以应对WSN中的挑战。为了提高WSN中的能源效率,我们提出了一种变性集群组织,以在路由头上形成集中式集群头(DNC-CCH)通信,以使网络上没有睡眠节点的传输具有从源到目的地的接通状态可用节点。此外,通过在无线传感器网络中使用中继链路链路由协议(RLCRP)改善能量约束,使路由中继选择非睡眠群集节点依赖于延迟路由传播所假设的邻居话语。这样可以选择最接近的中继链路,以使真正的传输中的连续链路具有从源到目的地的聚合数据,并具有改进的能量。此外,这还考虑了相邻的发送方,以提高网络节点的使用寿命,从而制定出节能的路由标准和WSN协作通信的使用寿命。

更新日期:2021-04-18
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