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Memory and computation reduction for least-square channel estimation of mobile OFDM systems

机译:用于移动OFDM系统的最小平方信道估计的内存和计算减少

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Mobile OFDM refers to OFDM systems with fast moving transceivers, contrastive to traditional OFDM systems whose transceivers are stationary or have a low velocity. In this paper, we use Basis Expansion Models (BEM) to model the time-variation of channels, based on which two least-squares (LS) channel estimators are presented. The first channel estimator allows for a general BEM assumption, and thus is called as the general implementation, whereas the second one is particularly tailored for a specific Critically-sampled Complex Exponential (CCE) BEM assumption, leading to a simplified architecture. The experimental results show that the simplified estimator is an appealing alternative, which achieves roughly a reduction of 59% for the ASIC core area, 89% for the ROM size and 53% of the processing latency at the cost of a slight estimation accuracy penalty compared to the general implementation method.
机译:移动OFDM是指具有快速移动收发器的OFDM系统,这与收发器是固定的或低速的传统OFDM系统形成对比。在本文中,我们使用基础扩展模型(BEM)对通道的时变进行建模,在此基础上提出了两个最小二乘(LS)通道估计器。第一个信道估计器允许一般的BEM假设,因此被称为一般实现,而第二个信道估计器专门针对特定的关键采样复指数(CCE)BEM假设量身定制,从而简化了体系结构。实验结果表明,简化的估算器是一种有吸引力的选择,与ASIC核心面积相比,该估算器可减少约59%,ROM大小可减少89%,处理延迟为53%,而代价是略微降低了估算精度一般的实现方法。

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