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Issue and Solution on Coverage and Performance for Wireless Sensor Networks

机译:关于无线传感器网络的覆盖和性能的问题和解决方案

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To reduce energy consumption and extend lifetime is concemful in wireless sensor networks (WSNs). Besides, WSNs need to maintain coverage quality to capture the timely changed targets. A broad strategy is to select some sensors as working nodes to cover the monitored region while turning off redundant nodes. Therefore, scheduling node state and maintaining the coverage quality are two important aspects in WSNs. The contribution lies in two aspects in this paper. First, we present a mathematical model to compute minimum number of nodes under any given required coverage quality. Simulation results demonstrate that our approach is more accurate when the ratio of target region to sensor region is larger, and the complexity of proposed method is lower while the sensor's region can be perceived as arbitrary shape. Second, it is an NP-hard issue that network's coverage quality and ratio of sleeping nodes get to maximize together. The paper experiments by using genetic algorithm to try to solve mis problem, which is significant in WSNs for practical applications.
机译:为了减少能量消耗并在无线传感器网络(WSN)中展示延长寿命。此外,WSNS需要维持覆盖质量以捕获及时改变的目标。广泛的策略是选择一些传感器作为工作节点,以在关闭冗余节点时覆盖受监控区域。因此,调度节点状态和维护覆盖质量是WSN中的两个重要方面。贡献在于本文的两个方面。首先,我们提出了一个数学模型来计算任何给定的覆盖质量下的最小节点数量。仿真结果表明,当传感器区域的目标区域的比率更大时,我们的方法更准确,并且所提出的方法的复杂性较低,而传感器区域可以被认为是任意形状。其次,它是一个np-hard问题,即网络的覆盖质量和睡眠节点的比例得到最大化。用遗传算法尝试解决MIS问题的纸张实验,在WSN进行实际应用中是显着的。

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