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Design of Indoor WLANs: Combination of a ray-tracing tool with the BPSO method.

机译:室内WLAN的设计:光线跟踪工具与BPSO方法的组合。

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摘要

This article presents an approach that combines a ray-tracing tool with the binary version of the particle swarm optimization (BPSO) method to the design of infrastructure-mode indoor wireless local area networks (WLANs). This approach uses the power levels of a set of candidate access point (AP) locations obtained with the ray-tracing tool at a mesh of potential receiver locations or test points to allow the BPSO optimizer to carry out the design of the WLAN. For this purpose, several restrictions are imposed through a fitness function that drives the search toward the selection of a reduced number of AP locations and their channel assignments while keeping low transmission power levels. During the design, different coverage priority areas can be defined, and the signal-to-interference ratio (SIR) levels are kept as high as possible to comply with the quality-of-service (QoS) requirements imposed. The performance of this approach in a real scenario at the authors' premises is reported, showing its usefulness.
机译:本文提出了一种将射线跟踪工具与二进制版本的粒子群优化(BPSO)方法相结合的方法,以设计基础结构模式室内无线局域网(WLAN)。此方法使用在潜在的接收器位置或测试点的网格处通过光线跟踪工具获得的一组候选访问点(AP)位置的功率水平,以允许BPSO优化器执行WLAN的设计。为此,通过适合度功能施加了一些限制,该适合度功能使搜索趋向于选择数量减少的AP位置及其信道分配,同时保持较低的发射功率水平。在设计过程中,可以定义不同的覆盖优先级区域,并且将信号干扰比(SIR)级别保持尽可能高,以符合所施加的服务质量(QoS)要求。报告了这种方法在作者住所的真实场景中的性能,显示了其有用性。

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