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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Optimization of Recursive Least Square-Based Adaptive Linear Equalizer for ZigBee Transceiver
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Optimization of Recursive Least Square-Based Adaptive Linear Equalizer for ZigBee Transceiver

机译:Zigbee收发器递归最小二乘基于正方形自适应线性均衡器的优化

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摘要

An efficient technique to compensate for the channel detrimental effects in ZigBee systems is introduced in this paper. The proposed methodology relies on adding a recursive least square (RLS) based adaptive linear equalizer (ALE) to the physical layer of the receiver side. The performance of the RLS based ALE is investigated inside the ZigBee system under different multipath fading situations: Rician and Rayleigh. Moreover, the paper proposes a methodology for deciding the RLS based ALE's design parameters. The design procedure depends on solving multiple objectives optimizing function based on genetic algorithms (GAs). The ALE's parameters are chosen, such that the system experiences minimum bit error rate (BER) with fast convergence response. For design verification purposes, the ZigBee transceiver is modeled in MATLAB Simulink and tested under different fading and signal to noise ratios. In addition, the performance of the RLS adaptation algorithm is compared with the least mean square (LMS) one. The results show that the RLS based ALE provides better ZigBee performance with less BER and fast adaptation response.
机译:本文介绍了弥补ZigBee系统中的频道不利影响的有效技术。所提出的方法依赖于将基于递归的自适应线性均衡器(ALE)添加到接收器侧的物理层。根据不同的多径褪色情况,研究了基于RLS基于ZigBee系统的性能:Rician和Rayleigh。此外,本文提出了一种用于决定基于RLS的ALE的设计参数的方法。设计过程取决于基于遗传算法(气体)的多目标优化功能。选择ALE的参数,使得系统经历具有快速收敛响应的最小误码率(BER)。对于设计验证目的,ZigBee收发器在Matlab Simulink中建模并在不同的衰落和信号下测试到噪声比。此外,将RLS适应算法的性能与最小均方(LMS)进行比较。结果表明,基于RLS的ALE提供了更好的ZigBee性能,具有较少的BER和快速适应响应。

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