A Low Complexity EDGE Demodulator Based on FDE and Impulse Response Shortening

P. Dinakar, R. David Koilpillai
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Abstract

In this paper, a new low-complexity frequency-domain based technique is proposed for channel equalization and symbol detection of an enhanced data rate for global evolution (EDGE) cellular system, which uses 8-PSK modulation. The proposed method exploits the present of tail symbols in the EDGE slot structure and uses them as partial cyclic prefix in the frequency domain equalizer. For channels with longer memory than the tail length, the receiver computes a channel shortening filter such that, when the filter is cascaded with receive chain, results in a shorter effective impulse response. The parameters of the channel shortening are set such that the effective impulse response memory length is equal to the tail length. The performance of the proposed system is demonstrated by computer simulations
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基于FDE和脉冲响应缩短的低复杂度边缘解调器
本文提出了一种新的低复杂度频域技术,用于全球进化(EDGE)蜂窝系统的信道均衡和符号检测,该技术采用8-PSK调制。该方法利用EDGE槽结构中存在的尾符号作为频域均衡器的部分循环前缀。对于记忆长度大于尾长度的信道,接收机计算信道缩短滤波器,当该滤波器与接收链级联时,产生更短的有效脉冲响应。信道缩短的参数设置使有效脉冲响应记忆长度等于尾部长度。计算机仿真验证了该系统的性能
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