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Channel noise robust transmit power optimized linear precoder for ISI channel with minimal complexity equalizer

机译:具有最小复杂度均衡器的ISI信道的信道噪声鲁棒发射功率优化线性预编码器

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摘要

A special class of linear precoder-equalizer pair with equalizers formed by simple tapped delay lines is proposed. With this special equalizer structure, the equalizer of this system not only can enjoy the minimal implementation complexity, but also can avoid the noise amplification effect. Moreover, using nonmaximally decimated filterbank structure, this precoder-equalizer pair is proven to be able to guarantee intersymbol interference (ISI)-free communication by zero-forcing approach, even if spectral ing exists in the physical channel. Another advantage of this system is that the length of the guard period introduced by the precoder can be any positive integer values, thus the guard period can be designed to maximize the spectral efficiency by selecting it to be as short as one symbol per block of transmitted signal. A systematic method for designing a minimal transmit power finite-impulse response (FIR) precoder under the proposed precoder-equalizer pair structure is presented. Under the ISI channel with independent additive white Gaussian noise, the design of this minimal transmit power FIR precoder is shown to be a minimum mean square error precoder design. Simulation results are presented to illustrate the performance of the proposed precoder-equalizer structure and that of the transmit power minimized precoder.
机译:提出了一类特殊的线性预编码器-均衡器对,它具有由简单抽头延迟线形成的均衡器。利用这种特殊的均衡器结构,该系统的均衡器不仅可以享受到最小的实现复杂性,而且可以避免噪声放大效应。此外,使用非最大抽取滤波器组结构,即使物理信道中存在频谱,该预编码器-均衡器对也能够通过强制零方法来保证无码元间干扰(ISI)的通信。该系统的另一个优点是,预编码器引入的保护周期的长度可以是任何正整数值,因此可以将保护周期设计为通过将其选择为短于每个传输块一个符号来最大化频谱效率。信号。提出了一种在所提出的预编码器-均衡器对结构下设计最小发射功率有限脉冲响应(FIR)预编码器的系统方法。在具有独立加性高斯白噪声的ISI信道下,这种最小发射功率FIR预编码器的设计显示为最小均方误差预编码器设计。给出仿真结果以说明所提出的预编码器-均衡器结构的性能以及最小化发射功率的预编码器的性能。

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