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Channel parameter estimation in mobile radio environments using the SAGE algorithm

机译:使用SAGE算法估计移动无线电环境中的信道参数

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This study investigates the application potential of the SAGE (space-alternating generalized expectation-maximization) algorithm to jointly estimate the relative delay, incidence azimuth, Doppler frequency, and complex amplitude of impinging waves in mobile radio environments. The performance, i.e., high-resolution ability, accuracy, and convergence rate of the scheme, is assessed in synthetic and real macro- and pico-cellular channels. The results indicate that the scheme overcomes the resolution limitation inherent to classical techniques like the Fourier or beam-forming methods. In particular, it is shown that waves which exhibit an arbitrarily small difference in azimuth can be easily separated as long as their delays or Doppler frequencies differ by a fraction of the intrinsic resolution of the measurement equipment. Two waves are claimed to be separated when the mean-squared estimation errors (MSEEs) of the estimates of their parameters are close to the corresponding Cramer-Rao lower bounds (CRLBs) derived in a scenario where only a single wave is impinging. The adverb easily means that the MSEEs rapidly approach the CLRBs, i.e., within less than 20 iteration cycles. Convergence of the log-likelihood sequence is achieved after approximately ten iteration cycles when the scheme is applied in real channels. In this use, the estimated dominant waves can be related to a scatterer/reflector in the propagation environment. The investigations demonstrate that the SAGE algorithm is a powerful high-resolution tool that can be successfully applied for parameter extraction from extensive channel measurement data, especially for the purpose of channel modeling.
机译:这项研究调查了SAGE(空间交替广义期望最大化)算法在联合估计移动无线电环境中的相对时延,入射方位角,多普勒频率和冲击波的复振幅方面的应用潜力。在合成的和真实的宏和微微小区信道中评估该方案的性能,即高分辨率能力,准确性和收敛速度。结果表明,该方案克服了诸如傅立叶或波束形成方法等经典技术固有的分辨率限制。特别地,显示出,只要它们的延迟或多普勒频率相差测量设备的固有分辨率的几分之一,就可以容易地分离出在方位上具有任意小的差异的波。当它们的参数估计值的均方估计误差(MSEE)接近在仅单个波撞击的情况下得出的对应的Cramer-Rao下界(CRLB)时,声称两个波被分离。副词很容易表示MSEE在不到20个迭代周期内迅速接近了CLRB。当在实际信道中应用该方案时,在大约十个迭代周期之后,实现了对数似然序列的收敛。在这种使用中,估计的主导波可以与传播环境中的散射器/反射器相关。研究表明,SAGE算法是一种功能强大的高分辨率工具,可以成功地用于从大量信道测量数据中提取参数,尤其是用于信道建模的目的。

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