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Performance Analysis of Underwater Acoustic Communication using IDMA-OFDM-MIMO with Reed Solomon and Turbo Code

机译:使用Reed Solomon和Turbo码的IDMA-OFDM-MIMO水下声通信的性能分析

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The underwater acoustic environment is a promising technology which explores the real-time data collection for various applications. However, these channels are prone to errors, and characterized by propagation delay, half duplex communication. At low frequencies, the fading phenomenon extensively affect the behavior of the channel and hence the effect the design of reliable communication system. The underwater acoustic channels to perform appreciably reliable communication, an attempt are made by various modulation and coding techniques. Simulation esults for the combination of BPSK modulation with Reed Solomon code (BPSK-RS) having various interleavers Random Interleaver, Matrix Interleaver, have been investigated. To improve the Bit Error Rate performance various modulation techniques such as BPSK, QPSK, and QAM were combined with coding algorithms like RS code, Turbo code and different Interleavers. The investigation of the above combination reveals that IDMA-OFDM-MIMO with BPSK modulation, Turbo code with Random Interleaver technique improves significantly Bit Error Rate performance.
机译:水下声学环境是一种有前途的技术,它可以探索各种应用程序的实时数据收集。但是,这些信道容易出错,并且具有传播延迟,半双工通信的特征。在低频下,衰落现象会广泛影响信道的行为,从而影响可靠通信系统的设计。为了执行明显可靠的通信,水下声通道通过各种调制和编码技术进行了尝试。研究了将BPSK调制与具有多种交织器,随机交织器,矩阵交织器的里德所罗门码(BPSK-RS)相结合的仿真结果。为了提高误码率性能,将各种调制技术(如BPSK,QPSK和QAM)与编码算法(如RS码,Turbo码和不同的交织器)相结合。对以上组合的研究表明,具有BPSK调制的IDMA-OFDM-MIMO,具有随机交织器技术的Turbo码显着提高了误码率性能。

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