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Delay optimized zero-forcing channel shortening algorithm for wireless communication

机译:延迟优化的无线通信零强制通道缩短算法

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In Orthogonal Frequency Division Multiplexing and Discrete Multitone transceivers, a guard interval called Cyclic Prefix (CP) is inserted to avoid inter-symbol interference. The length of the CP is usually greater than the impulse response of the channel resulting in a loss of useful data carriers. In order to avoid long CP, a time domain equalizer is used to shorten the channel. In this paper, we propose a method to include a delay in the zero-forcing equalizer and obtain an optimal value of the delay, based on the location of zeros of the channel. The performance of the algorithms is studied using numerical simulations.
机译:在正交频分复用和离散多音频收发器中,插入称为循环前缀(CP)的保护间隔以避免符号间干扰。 CP的长度通常大于信道的脉冲响应,从而导致有用的数据载波的丢失。为了避免长CP,使用时域均衡器缩短通道。在本文中,我们提出了一种方法来包括零强制均衡器的延迟,并基于信道零的位置获得延迟的最佳值。使用数值模拟研究了算法的性能。

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