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EBRP: Energy-Balanced Routing Protocol for Data Gathering in Wireless Sensor Networks

机译:EBRP:用于无线传感器网络中数据收集的能量平衡路由协议

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Energy is an extremely critical resource for battery-powered wireless sensor networks (WSN), thus making energy-efficient protocol design a key challenging problem. Most of the existing energy-efficient routing protocols always forward packets along the minimum energy path to the sink to merely minimize energy consumption, which causes an unbalanced distribution of residual energy among sensor nodes, and eventually results in a network partition. In this paper, with the help of the concept of potential in physics, we design an Energy-Balanced Routing Protocol (EBRP) by constructing a mixed virtual potential field in terms of depth, energy density, and residual energy. The goal of this basic approach is to force packets to move toward the sink through the dense energy area so as to protect the nodes with relatively low residual energy. To address the routing loop problem emerging in this basic algorithm, enhanced mechanisms are proposed to detect and eliminate loops. The basic algorithm and loop elimination mechanism are first validated through extensive simulation experiments. Finally, the integrated performance of the full potential-based energy-balanced routing algorithm is evaluated through numerous simulations in a random deployed network running event-driven applications, the impact of the parameters on the performance is examined and guidelines for parameter settings are summarized. Our experimental results show that there are significant improvements in energy balance, network lifetime, coverage ratio, and throughput as compared to the commonly used energy-efficient routing algorithm.
机译:能源是电池供电的无线传感器网络(WSN)的极其关键的资源,因此使节能协议设计成为一个关键的难题。大多数现有的节能路由协议总是将数据包沿着最小的能量路径转发到接收器,以仅使能量消耗最小,这导致传感器节点之间剩余能量的不平衡分配,并最终导致网络分区。在本文中,借助物理学中的电势概念,我们通过构造深度,能量密度和剩余能量方面的混合虚拟电势场,设计了能量平衡路由协议(EBRP)。这种基本方法的目标是迫使数据包通过密集的能量区域向接收器移动,以保护具有相对较低剩余能量的节点。为了解决这种基本算法中出现的路由环路问题,提出了增强的机制来检测和消除环路。首先通过大量的仿真实验验证了基本算法和环路消除机制。最后,在运行事件驱动的应用程序的随机部署网络中,通过大量仿真评估了完全基于势能的能量平衡路由算法的综合性能,检查了参数对性能的影响,并总结了参数设置准则。我们的实验结果表明,与常用的节能路由算法相比,能量平衡,网络寿命,覆盖率和吞吐量有了显着改善。

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