Analysis and Comparison of the LDPC and Reed Solomon Encodings in Mitigating the Impact of Clipping Noise in OFDM-Based VLC
Nima Taherkhani, Merve Apalak, Kamran Kiasaleh

TL;DR
This paper compares LDPC and Reed Solomon codes in mitigating clipping noise in OFDM-based VLC, demonstrating their effectiveness in improving BER performance under nonlinear distortion conditions.
Contribution
It provides a comparative analysis of LDPC and Reed Solomon encoding schemes for clipping noise mitigation in OFDM-based VLC systems, highlighting their respective advantages.
Findings
LDPC and RS codes reduce clipping noise impact.
LDPC shows better BER performance than RS.
Encoding schemes improve system robustness against nonlinear distortion.
Abstract
The linear error-correcting codes are known to be well suited for battling and correcting the burst errors caused by noise in the wireless data transmission system. However, different types of codes offer different decoding and burst-error-correcting capabilities. This paper compares the Low-Density-Parity Check (LDPC) and Reed Solomon (RS) encoding schemes in battling and correcting the burst error caused by the clipping distortion occurred due to the dynamic range constraints in an Orthogonal Frequency Division Multiplexing (OFDM) based Visible Light Communication (VLC). The unipolar conversion applied to the output of the multiplexer in this system results in a clipping noise which distorts the data symbols on the subcarriers in OFDM block. Considering that such distortion impacts the data symbol on each subcarrier differently, RS and LDP are used to encode the data block before…
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Taxonomy
TopicsOptical Wireless Communication Technologies · PAPR reduction in OFDM · Optical Network Technologies
