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A bat-inspired algorithm for router node placement with weighted clients in wireless mesh networks

机译:一种受蝙蝠启发的无线网状网络中带有加权客户端的路由器节点放置算法

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This paper considers the problem of the dynamic router node placement (dynRNP) with weighted clients in wireless mesh networks (WMNs), in which both mesh clients and mesh router have mobility, and mesh clients can switch on or off their network access at different times. The main objective of the conventional dynRNP problem is to maximize both network connectivity and client coverage, i.e., the size of the greatest subgraph component of the WMN topology and the number of the clients within radio coverage of mesh routers, respectively. Furthermore, this paper considers a more complicated dynRNP problem in WMNs, in which each client is associated with a weighted value (i.e., the mesh clients with higher weights values are served with larger priority), so that the two objective measures are redefined with consideration of clients' weights. We resolve the weighted problem by a bat-inspired algorithm (BA) with dynamic local search selection scheme, which simulates the echolocation of bats to find the optimal solution. Finally, the performance of the proposed BA is compared with the original BA and PSO, and the effects of weights are analyzed.
机译:本文考虑了无线网状网络(WMN)中带有加权客户端的动态路由器节点放置(dynRNP)的问题,其中网状客户端和网状路由器都具有移动性,并且网状客户端可以在不同时间打开或关闭其网络访问权限。常规dynRNP问题的主要目的是最大化网络连接性和客户端覆盖范围,即WMN拓扑最大子图组件的大小和网状路由器无线覆盖范围内客户端的数量。此外,本文考虑了WMN中一个更复杂的dynRNP问题,其中每个客户端都与一个加权值相关联(即,具有较高权重值的网格客户端被赋予更高的优先级),因此考虑到了这两个客观度量的重新定义客户的体重。我们通过具有动态局部搜索选择方案的蝙蝠启发算法(BA)解决加权问题,该算法模拟蝙蝠的回声定位以找到最佳解决方案。最后,将提出的BA的性能与原始BA和PSO进行比较,并分析权重的影响。

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