基于改进局部样条的卷积编码偏微分空时OFDM性能评价

Manan Bawa, M. Tahernezhadi
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引用次数: 1

摘要

卷积编码是提高系统抗频率选择信道,特别是抗衰落的有效技术。本文研究了一种将卷积编码和交错与偏微分空时正交频分复用(OFDM)相结合的技术。采用改进的局部样条法对信道参数进行估计。将空间分集技术应用于OFDM,可全面提高系统性能。通过时变信道传输的信号经历多径衰落,导致突发误差。这种突发误差降低了系统的性能,应该通过在发送端附加一个卷积编码器和一个交织器来克服,类似地,在接收端使用一个去交织器和一个维特比解码器。为了对抗载波间干扰(ICI),需要进行信道估计。另一种不需要信道估计来克服ICI的方法称为差分检测。这种方法只适用于低多普勒。在高多普勒条件下,将差分检测与信道估计相结合用于空时OFDM。本文比较了卷积编码偏微分ST-OFDM与其他三种不同方案的性能评价:偏微分ST-OFDM,卷积编码相干ST-OFDM和相干ST-OFDM。仿真结果表明,卷积编码偏微分ST-OFDM方案的性能优于其他方案。根据误码率(BER)、剩余ICI功率和信号功率与ICI功率比对其性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of convolutional encoded partial differential space time OFDM using modified local splines
Convolutional encoding is an effective technique to increase the resistance of the system towards frequency-selective channels, especially fading. In this paper, we investigate a technique in which convolutional encoding and interleaving are combined with the partial differential space time orthogonal frequency division multiplexing (OFDM). The estimation of channel parameters is done using modified local splines method. Space diversity is applied to OFDM for overall improvement of the system performance. The signals transmitted through the time-varying channel experiences multipath fading and results in burst error condition. This burst error degrades the performance of the system and should be overcome by appending a convolutional encoder and an interleaver at the transmitter end and similarly using a deinterleaver and a Viterbi decoder at the receiver end. To combat intercarrier interference (ICI), channel estimation should be done. Another method which does not require channel estimation to overcome ICI is called differential detection. This method is only valid for low Doppler. For high Doppler conditions, differential detection is combined with channel estimation for space time OFDM. This paper compares the performance evaluation of convolutional encoded partial differential ST-OFDM with three other different schemes namely; partial differential ST-OFDM, convolutional encoded coherent ST-OFDM and coherent ST-OFDM. The simulation results show that convolutional encoded partial differential ST-OFDM performs better than other mentioned schemes. Performances have been evaluated in terms of bit error rate (BER), residual ICI power and signal power to ICI power ratio.
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