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Turbo equalization using frequency-domain shortening filter for broadband single-carrier transmission over frequency-selective fading channels

机译:使用频域缩短滤波器进行频域缩短滤波器在频率 - 选择性衰落通道上进行频域缩短滤波器

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The paper presents a combined scheme using a frequency-domain shortening filter and turbo equalization for broadband single-carrier QAM transmission over frequency-selective fading channels. The frequency-selective fading channel response is first converted to a shortened desired channel impulse response by a frequency-domain pre-filter (FDPE). The shortened desired channel impulse response (SCIR) and convolutional code are used in concatenation for iterative equalization/decoding. The pre-selected small number of taps of the shortened desired channel impulse response helps to reduce the complexity of the iterative equalization/decoding. The optimum selection of coefficients/taps of the frequency-domain pre-filter and desired channel impulse response to achieve the minimum mean-square error (MMSE) is discussed. Simulation results on the performance of the proposed scheme in various frequency-selective fading channels indicate a substantial performance gain as compared to other high-performance equalization/detection schemes.
机译:本文呈现了一种组合方案,使用频率域缩短滤波器和频率选择性衰落通道上的宽带单载波QAM传输的Turbo均衡。首先通过频域预滤波器(FDPE)首先将频率选择衰落信道响应转换为缩短期望的信道脉冲响应。缩短所需的通道脉冲响应(SCIR)和卷积代​​码用于迭代均衡/解码的串联。缩短所需通道脉冲响应的预先选择的少量抽头有助于降低迭代均衡/解码的复杂性。讨论了频域预滤波器和期望信道脉冲响应以实现最小平方误差(MMSE)的最佳选择。仿真结果对各种频率选择性衰落通道中所提出的方案的性能表明与其他高性能均衡/检测方案相比的实质性增益。

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