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Improving the BER Performance of M-FSK in a Noisy Multipath Rayleigh, and Rician Fading Channels Using Reed-Solomon Forward Error Correction Method

机译:使用里德-所罗门前向纠错方法提高M-FSK在嘈杂多径瑞利和Rician衰落信道中的BER性能

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This paper focuses on the application of Reed-Solomon Error Correction Code evaluation technique on the Bit-Error-Rate performance of M-ary Frequency Shift Keying (M-FSK) in noisy multipath Rayleigh and Rician fading channel. The detection and correction of the received information errors from the multipath fading channel was done using the Forward Error Correction (FEC) technique. The message is encoded and decoded using the error-correcting Reed-Solomon Codes were employed to encode and decode the message. The entire model based design, modelling and simulation was done using MATLAB/SIMULINK. It was observed that the BER performance of M-FSK with RS codes improved greatly compared to MFSK system without error correction. Decrease of BER performance was observed as the length of codeword symbols (n) increase at constant code rate and error correcting capability. The redundancy increases as code rate decreases leading to an improved Bit-Error-Rate performance. The improvement of the BER of M-FSK by using Reed-Solomon error correction code was achieved.
机译:本文着重介绍了Reed-Solomon纠错码评估技术在噪声多径瑞利和Rician衰落信道中的M元频移键控(M-FSK)的误码率性能上的应用。使用前向纠错(FEC)技术完成了对来自多径衰落信道的接收信息错误的检测和纠正。使用纠错码的里德-所罗门码对消息进行编码和解码。整个基于模型的设计,建模和仿真是使用MATLAB / SIMULINK完成的。可以看出,与没有纠错的MFSK系统相比,带有RS码的M-FSK的BER性能得到了极大的改善。在恒定码率和纠错能力下,随着码字符号(n)长度的增加,观察到BER性能下降。冗余度随着编码率的降低而增加,从而提高了误码率性能。通过使用Reed-Solomon纠错码提高了M-FSK的BER。

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