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Capacity Analysis and Bit Allocation Design for Variable-Resolution ADCs in Massive MIMO

机译:大规模MIMO中可变分辨率ADC的容量分析和比特分配设计

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We derive an expression for the capacity of massive multiple-input multiple-output Millimeter wave (mmWave) channel where the receiver is equipped with a variable-resolution Analog to Digital Converter (ADC) and a hybrid combiner. The capacity is shown to be a function of Cramer-Rao Lower Bound (CRLB) for a given bit-allocation matrix and hybrid combiner. The condition for optimal ADC bit-allocation under a receiver power constraint is derived. This is derived based on the maximization of capacity with respect to bit-allocation matrix for a given channel, hybrid precoder, and hybrid combiner. It is shown that this condition coincides with that obtained using the CRLB minimization proposed by Ahmed et al. Monte-Carlo simulations show that the capacity calculated using the proposed condition matches very closely with the capacity obtained using the Exhaustive Search bit allocation.
机译:我们导出了大规模多输入多输出毫米波(MMWAVE)信道的能力的表达,其中接收器配备有变量分辨率的模数转换器(ADC)和混合组合器。对于给定的比特分配矩阵和混合组合器,该容量是Cramer-Rao下限(CRLB)的函数。导出了接收器功率约束下最佳ADC比特分配的条件。这基于对于给定频道,混合预压制器和混合组合器的比特分配矩阵的容量的最大化来导出。结果表明,该条件与使用Ahmed等人提出的CRLB最小化获得的该条件一致。 Monte-Carlo模拟表明,使用所提出的情况计算的容量与使用详尽的搜索位分配获得的容量非常紧密地匹配。

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