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Adaptive Software Defined Equalization Techniques for Indoor Visible Light Communication

机译:室内可见光通信的自适应软件定义均衡技术

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摘要

This paper focuses on a channel feed-forward software defined equalization (FSDE) of visible light communication (VLC) multistate quadrature amplitude modulation (M-QAM) based system, implemented in the LabVIEW programming environment. A highly modular platform is introduced; the whole experiment is simulated in software and then thoroughly explored and analyzed during practical measurements in the laboratory, simulating real-world situations. The whole platform is based on modified National Instruments software defined radios (NI SDR) and a commercially available Philips light source, often used in Czech government institutions. Three FSDE algorithms were tested: least mean squares (LMS), normalized least mean squares (NLMS), and QR decomposition based RLS (QR-RLS). Based on measurements, QR-RLS provides the best results, improving measured values by up to 10%. The experiments also show that the simulated results are very similar to real measurements, thus proving the validity of the chosen approach. The whole platform manages to improve measured data simply by making changes to the software side of the testing prototype.
机译:本文重点介绍了在LabVIEW编程环境中实现的基于信道的前馈软件定义的可见光通信(VLC)多态正交幅度调制(M-QAM)均衡(FSDE)系统。引入了高度模块化的平台;整个实验在软件中进行了仿真,然后在实验室的实际测量过程中进行了全面的探索和分析,以模拟现实世界的情况。整个平台基于改进的National Instruments软件定义的无线电(NI SDR)和市售的Philips光源,通常在捷克政府机构中使用。测试了三种FSDE算法:最小均方(LMS),归一化最小均方(NLMS)和基于QR分解的RLS(QR-RLS)。根据测量,QR-RLS可提供最佳结果,将测量值提高多达10%。实验还表明,仿真结果与实际测量结果非常相似,从而证明了所选择方法的有效性。整个平台仅通过更改测试原型的软件部分即可设法改善测量数据。

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