Flicker Mitigating High Rate RLL Codes for VLC with Low Complexity Encoding and Decoding

Uday Thummaluri, Abhinav Kumar, L. Natarajan
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引用次数: 2

Abstract

Visible light communications integrated with Internet-of-Things has numerous applications in indoor wireless communications and it requires high data rates and flicker mitigation. Flicker mitigation is an important consideration since light emitting diodes are simultaneously used for illumination and communications. Several run-length limited (RLL) codes have been proposed in the literature for flicker mitigation with trade-offs between code rate, bit error performance, encoding and decoding complexities. However, there are no generalized algorithms for high rate codes generation with low complexity encoding and decoding. Hence, in this paper, we propose generalized algorithm for generating high rate RLL codes with low complexity encoding and decoding. The proposed codes can be used for flicker mitigation conditioned on maximum flickering time period (MFTP). The performance of the proposed codes is compared with existing codes in terms of various metrics like code rate, minimum Hamming distance, peak to average power ratio, run-length, and bit error rate. We show that the proposed codes mitigate flicker conditioned on MFTP and provide high data rates with low complexity encoding and decoding compared to the codes in the literature.
用于VLC的低复杂度编码和解码的抑制闪烁的高速率RLL码
与物联网集成的可见光通信在室内无线通信中有许多应用,它需要高数据速率和闪烁缓解。闪烁缓解是一个重要的考虑因素,因为发光二极管同时用于照明和通信。文献中已经提出了几种运行长度限制(RLL)码,用于在码率、误码性能、编码和解码复杂性之间进行权衡,以缓解闪烁。然而,对于低复杂度编码和解码的高速率码生成,目前还没有通用的算法。因此,在本文中,我们提出了一种以低复杂度编码和解码生成高速率RLL码的通用算法。所提出的编码可用于以最大闪烁时间段(MFTP)为条件的闪烁缓解。根据码率、最小汉明距离、峰值与平均功率比、运行长度和误码率等各种指标,将所提出的码与现有码的性能进行比较。我们表明,与文献中的编码相比,所提出的编码减轻了MFTP条件下的闪烁,并提供了高数据速率和低复杂度的编码和解码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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