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Effect of Landslide on Energy Efficiency Chain Based Routing Protocol for Wireless Sensor Network

机译:滑坡对无线传感器网络能效链路由协议的影响

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Wireless sensor network has been used as a landslide monitoring tool for more than one decade. The robustness of the network is important as the systems need to survive in harsh conditions. In this paper, we consider the living time of the sensor network under the influences of the small-scale landslide. We investigate the performance of famous energy-efficient routing protocol PEGASIS in both landslide case and non-landslide case. Genetic Algorithm is also applied to enhance the effectiveness of PEGASIS. The simulation results in this paper showed that the Genetic Algorithm helps to delay the first node death if it is used at the beginning of data transmission while being used every round helps to prolong last node death slightly. The impact of the Genetic Algorithm on energy usage and route length is also examined. Under the effect of landslide, with only 70% of energy are spent, the simulated protocols reduced around 30% equivalent route length while managed to keep the living time up the network up to 90.76%, comparing to cases with no landslide.
机译:无线传感器网络已被用作多十年以上的滑坡监控工具。由于系统需要在恶劣的条件下生存,网络的稳健性很重要。在本文中,我们考虑了传感器网络在小规模滑坡的影响下。我们调查着名节能路由协议PEGASIS在滑坡案例和非滑坡案件中的性能。还应用遗传算法以提高PEGASIS的有效性。本文的仿真结果表明,遗传算法有助于延迟第一个节点死亡,如果它在数据传输的开始时使用,同时每轮使用时有助于稍微延长延长节点死亡。还检查了遗传算法对能源使用和路线长度的影响。在滑坡的影响下,只花了70%的能量,模拟方案减少了大约30%的等效路线长度,同时设法将网络的生活时间保持在90.76%,与没有滑坡的情况相比。

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