Improving Energy Efficiency of Wireless Sensor Networks through Topology Optimization

Stanley S. Akende, M. Ahaneku, U. Nwawelu, Uchenna C. Amazue, Douglas A. Amoke
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Abstract

- Relevance of the field of wireless sensor networks (WSNs) is increasing, and one of the most pressing challenges is in energy usage. This makes it a resource restraint type network for wireless sensor nodes that contain small unchangeable battery. Sensor network design has been influenced by and depends on the application by factors such as scalability, power consumption, environment etc. Most of the energy is used for communications among the three energy-saving activities: sensing, processing and communication. In this paper, an energy efficient (energy conserving) routing protocol called Wireless Sensor Network Energy Reduction Routing Coordinate Algorithm (WSNERRCA) is proposed. This provides a more efficient energy consumption pattern in WSN, by using eight straight line routing coordinate to sink. It transmits data within nodes transmission range (single-hop) and multi-hopping along routes (coordinates) thereby saving energy and optimizing delivery. The energy-model is simulated using NS-2 and the residual energy computed with the aid of AWK programming language coding. This model out-performed its counterpart (EEEWSNMIA) by 6%, as seen in recent research work published by Elsevier based on the criteria of conserving the highest energy of the sensor network with a hundred and twenty nodes while upholding optimally the QoS factors.
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通过拓扑优化提高无线传感器网络的能量效率
-无线传感器网络(WSNs)领域的相关性正在增加,其中最紧迫的挑战之一是能源使用。这使其成为一种资源约束型网络,用于包含小型不可更换电池的无线传感器节点。传感器网络的设计受到可扩展性、功耗、环境等因素的影响,并取决于应用。在传感、加工和通信这三种节能活动中,大部分能源用于通信。本文提出了一种节能路由协议——无线传感器网络能量降低路由坐标算法(WSNERRCA)。这为WSN提供了一种更有效的能量消耗模式,通过使用8条直线路由坐标来接收。它在节点传输范围内(单跳)和多跳沿路由(坐标)传输数据,从而节省能源和优化传输。利用NS-2对能量模型进行了仿真,并用AWK编程语言进行了编码,计算了剩余能量。根据爱思唯尔最近发表的研究成果,该模型的性能比其对应模型(EEEWSNMIA)高出6%,该研究基于保留120个节点的传感器网络的最高能量的标准,同时保持最佳的QoS因素。
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