In this paper, we analyze the error probability of reconfigurable intelligent surfaces (RIS)-enabled communication systems with quantized channel phase compensation over Rayleigh fading channels. The probability density and characteristic functions of the received signal amplitude are derive dand used to compute exact expressions for the bit error rate(BER). The resulting expressions are general, as they hold for an arbitrary number of reflecting elements N, and quantization levels, L. We introduce an exact asymptotic analysis in the high signal-to-noise ratio (SNR) regime, from which we demonstrate, in particular, that the diversity order is N/2 when L=2 and N when L >2. The theoretical frameworks and findings are validated with the aid of Monte Carlo simulation.
翻译:在本文中,我们分析了可重新配置智能表面(RIS)的通信系统的误差概率,在Rayleigh 淡化的频道中,有量化的频道阶段补偿。收到的信号振幅的概率密度和特性功能是用来计算位误差率(BER)的精确表达法。由此产生的表达法是一般性的,因为它们含有任意数量的反映元素N和量化水平,L. 我们对高信号对音率(SNR)制度进行了精确的无症状分析,我们从中特别从中表明,在L=2时和L>2时,多样性顺序是N/2,在Monte Carlo模拟的帮助下,理论框架和结论得到了验证。