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Low Density Parity Check (LDPC) coded MIMO-Constant Envelop Modulation System with IF sampled 1-bit ADC

机译:具有IF采样1位ADC的低密度奇偶校验(LDPC)编码的MIMO恒定包络调制系统

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MIMO-Constant Envelop Modulation (CEM) is a very power and complexity efficient system, which is introduced as alternative candidate to the currently used MIMO-Orthogonal Frequency Division Multiplexing (OFDM). CEM system enables to use high efficient nonlinear power amplifier on the transmitter side and 1 bit (low resolution) analog to digital converter (ADC) on the receiver side. Due to adopting the low resolution at the receiver side a great reduction in hardware complexity and power consumption can be achieved. However, there will be a noticeable degradation on the performance of bit error rate (BER) on the receiver side due to sever quantization error introduced by the low resolution ADC, so a forward error correction coding is essential to enhance the BER. In this paper a LDPC coded MIMO-CEM system was used as a replacement for MIMO-OFDM to deal with the BER degradation problem of the CEM system. The performance of the LDPC coded MIMO-CEM with Gaussian Minimum Phase Shift Keying (GMSK) modulation is evaluated over a multi-path Rayleigh fading channel. It showed that LDPC codes are effective to improve the BER performance of CEM on Rayleigh fading channels. According to the simulation results, the MIMO-CEM system provides a significant improvement in BER performance and outperforms the un-coded and the original convolutional coder based CEM systems.
机译:MIMO恒定包络调制(CEM)是一种非常高效且复杂的系统,被引入作为当前使用的MIMO正交频分复用(OFDM)的替代候选方案。 CEM系统能够在发送器端使用高效的非线性功率放大器,并在接收器端使用1位(低分辨率)模数转换器(ADC)。由于在接收器端采用低分辨率,因此可以大大降低硬件复杂性和功耗。但是,由于低分辨率ADC引入的严重量化误差,接收机端的误码率(BER)的性能将显着下降,因此前向纠错编码对于增强BER是必不可少的。本文采用LDPC编码的MIMO-CEM系统替代MIMO-OFDM,以解决CEM系统的BER下降问题。在多径瑞利衰落信道上评估了具有高斯最小相移键控(GMSK)调制的LDPC编码MIMO-CEM的性能。结果表明,LDPC码可有效提高瑞利衰落信道上CEM的BER性能。根据仿真结果,MIMO-CEM系统显着提高了BER性能,并优于未编码和基于原始卷积编码器的CEM系统。

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