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Modelling and planning reliable wireless sensor networks based on multi-objective optimization genetic algorithm with changeable length

机译:基于可变长度多目标优化遗传算法的可靠无线传感器网络建模与规划

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摘要

Wireless sensor networks (WSN) have shown their potentials in various applications, which bring a lot of benefits to users from different working areas. However, due to the diversity of the deployed environments and resource constraints, it is difficult to predict the performance of a topology. Besides the connectivity, coverage, cost, network longevity and service quality should all be considered during the planning procedure. Therefore, efficiently planning a reliable WSN is a challenging task, which requires designers coping with comprehensive and interdisciplinary knowledge. A WSN planning method is proposed in this work to tackle the above mentioned challenges and efficiently deploying reliable WSNs. First of all, the above mentioned metrics are modeled more comprehensively and practically compared with other works. Especially 3D ray tracing method is used to model the radio link and sensing signal, which are sensitive to the obstruction of obstacles; network routing is constructed by using AODV protocol; the network longevity, packet delay and packet drop rate are obtained via simulating practical events in WSNet simulator, which to the best of our knowledge, is the first time that network simulator is involved in a planning algorithm. Moreover, a multi-objective optimization algorithm is developed to cater for the characteristics of WSNs. Network size is changeable during evolution, meanwhile the crossovers and mutations are limited by certain constraints to eliminate invalid modifications and improve the computation efficiency. The capability of providing multiple optimized solutions simultaneously allows users making their own decisions, and the results are more comprehensive optimized compared with other state-of-the-art algorithms. Practical WSN deployments are also realized for both indoor and outdoor environments and the measurements coincident well with the generated optimized topologies, which prove the efficiency and reliability of the proposed algorithm.
机译:无线传感器网络(WSN)已在各种应用中展示了其潜力,这为来自不同工作区域的用户带来了很多好处。但是,由于所部署环境的多样性和资源限制,很难预测拓扑的性能。除了连通性之外,在规划过程中还应考虑覆盖范围,成本,网络寿命和服务质量。因此,有效地规划可靠的WSN是一项艰巨的任务,这要求设计人员应对全面的跨学科知识。在这项工作中提出了一种WSN计划方法,以解决上述挑战并有效地部署可靠的WSN。首先,与其他工作相比,上述指标的建模更加全面和实用。尤其是使用3D射线追踪方法对对障碍物敏感的无线电链路和感应信号进行建模。网络路由采用AODV协议构建。网络寿命,数据包延迟和数据包丢失率是通过在WSNet模拟器中模拟实际事件来获得的,据我们所知,这是网络模拟器首次参与规划算法。此外,开发了一种多目标优化算法来满足WSN的特征。网络规模在演进过程中是可变的,同时交叉和变异受到某些约束的限制,以消除无效的修改并提高计算效率。同时提供多种优化解决方案的能力使用户可以做出自己的决定,并且与其他最新算法相比,结果得到了更全面的优化。还针对室内和室外环境实现了实际的WSN部署,并且测量结果与生成的优化拓扑非常吻合,这证明了所提出算法的效率和可靠性。

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