首页> 外文会议>Personal, Indoor and Mobile Radio Communications, 2005. PIMRC 2005. IEEE 16th International Symposium on >Parallel Interference Cancellation Detection with Inner and Outer Iterations for Space-frequency Block Coded OFDM Systems
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Parallel Interference Cancellation Detection with Inner and Outer Iterations for Space-frequency Block Coded OFDM Systems

机译:空频分组编码OFDM系统中具有内外迭代的并行干扰消除检测

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In order to simplify the decoding algorithm, it is usually assumed in previously reported work on space-frequency block coded orthogonal frequency division multiplexing (SFBC-OFDM) systems utilizing space-time block codes (STBC) that the frequency responses of adjacent subchannels are approximately constant for a STBC block length [1]. Under this assumption, the conventional linear decoder proposed for STBC in [2] can be equivalently used in SFBC-OFDM systems to achieve the maximum diversity gain with the lowest computational complexity. However, this assumption is not accurate when the number of OFDM sub-carriers is small or the system operates in a severe multipath environment. The conventional decoder will give rise to interference due to the channel frequency response variations in adjacent subchannels. This result in an irreducible error floor in the high signal-to-noise ratio (SNR) region of the bit error rate (BER) curve and decreased diversity gain. In this paper, we propose a parallel interference cancellation (PIC) detection scheme with inner and outer iterations for g4|2| coded SFBC-OFDM transmit diversity systems over frequency selective fading channels. Simulation results will show that the proposed scheme can mitigate the interference effect and make the error floor occur at a very low BER, which can be neglected.
机译:为了简化解码算法,通常在先前报告的关于使用空时分组码(STBC)的空频块编码正交频分复用(SFBC-OFDM)系统上的工作中,相邻子信道的频率响应近似为STBC块长度[1]的常量。在这种假设下,[2]中为STBC提出的常规线性解码器可以等效地用于SFBC-OFDM系统中,从而以最低的计算复杂度获得最大的分集增益。但是,当OFDM子载波的数量少或系统在严重的多径环境中运行时,此假设并不准确。由于相邻子信道中的信道频率响应变化,传统的解码器将引起干扰。这导致误码率(BER)曲线的高信噪比(SNR)区域中的误差底限不可减小,并且分集增益降低。在本文中,我们针对g 4 | 2 |提出了具有内部和外部迭代的并行干扰消除(PIC)检测方案。频率选择性衰落信道上的已编码SFBC-OFDM发射分集系统。仿真结果表明,所提出的方案可以减轻干扰影响,并在很低的误码率下出现误差本底,这一点可以忽略不计。

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