Effects of MLSE equalization for constant envelope modulation signals affected by ADC nonlinearity

Ryuta Fukunaga, O. Muta, H. Furukawa
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Abstract

A radio relay multi-hop transmission using Multi-Input Multi-Output (MIMO) is a promising technique to construct indoor wireless communication systems. To improve power efficiency at the power amplifier on the transmitter side, this paper considers MIMO constant envelope modulation (CEM) transceiver. On the other hand, the resolution of A/D converter (ADC) affects hardware complexity on MIMO receiver circuits. Although analog hardware complexity on MIMO receiver circuits can be reduced by decreasing the resolution of ADC, it causes severe ADC nonlinearity which affects achievable performance, i.e., there a trade-off between hardware complexity and non-linearity on ADC circuits for MIMO receiver. The objective of this paper is to investigate the influence of ADC nonlinearity on achievable performance in MIMO differential encoded Gaussian minimum shift keying (D-GMSK) systems using a reduced-state modified maximum sequence estimation (MLSE) equalization. In the MLSE equalization for D-GMSK systems, the influence of ADC nonlinearity is mitigated by approximating the received signal in presence of quantization error. Computer simulation results show that the MLSE equalization scheme approximating the influence of ADC nonlinearity improves BER performance of MIMO and SISO D-GMSK systems using a low resolution ADC compared to cases without using the above approximation in multi-path Rayleigh fading conditions.
受ADC非线性影响的恒包络调制信号的MLSE均衡效果
多输入多输出(MIMO)无线中继多跳传输是一种很有前途的室内无线通信技术。为了提高发射端功率放大器的功率效率,本文考虑了MIMO恒包络调制(CEM)收发器。另一方面,模数转换器(ADC)的分辨率会影响MIMO接收电路的硬件复杂度。虽然通过降低ADC的分辨率可以降低MIMO接收机电路上的模拟硬件复杂度,但这会导致严重的ADC非线性,影响可实现的性能,即在MIMO接收机的硬件复杂度和ADC电路的非线性之间存在权衡。本文的目的是研究ADC非线性对MIMO差分编码高斯最小移位键控(D-GMSK)系统可实现性能的影响,该系统采用了一种简化状态修正的最大序列估计(MLSE)均衡。在D-GMSK系统的MLSE均衡中,通过在存在量化误差的情况下逼近接收信号来减轻ADC非线性的影响。计算机仿真结果表明,采用低分辨率ADC的MIMO和SISO D-GMSK系统在多径瑞利衰落条件下,采用近似ADC非线性影响的MLSE均衡方案比不采用上述近似的方案提高了误码率性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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