水声信道中迭代/积分均衡器/解码器结构的性能比较

F. Blackmon, E. Sozer, M. Murandian, J. Proakis, M. Salehi
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引用次数: 19

摘要

自适应决策反馈均衡器(DFE)在水声信道高速数据解调中的应用已经得到了很好的验证。然而,在许多信道中,传统的DFE和解码器所获得的性能并不足以满足特定的应用。本文考虑了四种不同的迭代均衡/解码器技术,以提高接收机的性能。一种技术使用来自解码器输出的困难决策反馈给DFE,以便对数据进行额外的传递。第二种技术使用来自解码器输出的软输出反馈到DFE。第三种技术,称为积分迭代均衡方案,旨在减轻和纠正在数据包内以块方式反馈给DFE的错误。最后,第四种技术称为turbo均衡器,是一种采用MAP均衡器和MAP解码器的迭代方案。这些迭代/积分均衡/解码技术应用于在几个现场测试中接收到的卷积编码BPSK和QPSK数据。在误码率和分组统计的基础上,比较了迭代均衡/解码器算法的性能。
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Performance comparison of iterative/integral equalizer/decoder structures for underwater acoustic channels
The use of an adaptive decision feedback equalizer (DFE) in the demodulation of high speed data transmitted through underwater acoustic channels has been well established. In many channels, however, the performance obtained with the conventional DFE and decoder is not adequate for particular applications. This paper considers four different iterative equalization/decoder techniques for improving the performance of the receiver. One technique uses the hard decisions from the decoder output to feed back to the DFE for making additional passes through the data. The second technique uses the soft outputs from the decoder output to feed back to the DFE. The third technique, termed an integral iterative equalization scheme, is designed to mitigate and correct the errors being fed back to the DFE in a block fashion within the data packet. Finally, the fourth technique, called a turbo equalizer, is an iterative scheme which employs a MAP equalizer and a MAP decoder. These iterative/integral equalization/decoding techniques are applied to convolutionally encoded BPSK and QPSK data received during several field tests. The performance of the iterative equalizer/decoder algorithms is compared on the basis of bit error rate and packet statistics.
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