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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >An Iterative ICI Cancellation and Decoding Scheme for Coded OFDM Systems in Mobile Channels
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An Iterative ICI Cancellation and Decoding Scheme for Coded OFDM Systems in Mobile Channels

机译:移动信道中编码OFDM系统的迭代ICI消除和解码方案

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摘要

Recently, it has been shown that the received signal in the orthogonal frequency-division multiplexing (OFDM) systems can be viewed as the synchronous code-division multiple access (SCDMA) signal in receiver after some mathematical manipulation, and the ICI term in the OFDM system is equivalent to the multiple access interference (MAI) term in SCDMA system. They proposed a successive interference cancellation multicarrier detector and it performs better than the conventional single-carrier detection schemes. To further improve the performance of OFDM systems in the presence of ICI, we propose to use a soft-in soft-out (SISO) multicarrier detector and a SISO convolutional decoder in an iterative (turbo) way. Note that full-complexity turbo multicarrier detector and turbo decoder are not used to strike a balance between performance and complexity of OFDM systems. And the transmitter structure of OFDM systems is unchanged. The simulation results show that the first iteration of the proposed scheme demonstrates 2-3 dB gain compared to the previous multicarrier detection schemes. The second and third iterations improve the performance further.
机译:最近,已经表明,经过一些数学处理,正交频分复用(OFDM)系统中的接收信号可以被视为接收机中的同步码分多址(SCDMA)信号,而OFDM中的ICI术语系统等同于SCDMA系统中的多址干扰(MAI)术语。他们提出了一种连续干扰消除多载波检测器,其性能优于传统的单载波检测方案。为了在存在ICI的情况下进一步提高OFDM系统的性能,我们建议以迭代(turbo)方式使用软入软出(SISO)多载波检测器和SISO卷积解码器。注意,不使用全复杂度turbo多载波检测器和turbo解码器来在OFDM系统的性能和复杂度之间取得平衡。 OFDM系统的发射机结构不变。仿真结果表明,与先前的多载波检测方案相比,该方案的第一次迭代显示了2-3 dB的增益。第二次和第三次迭代进一步提高了性能。

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