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Performance Bounds Analysis for Semi-Blind Channel Estimation in MIMO-OFDM Communications Systems

机译:MIMO-OFDM通信系统中半盲信道估计的性能边界分析

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摘要

Most communications systems require channel estimation for equalization and symbol detection. Currently, this is achieved by using dedicated pilot symbols, which consume a non-negligible part of the throughput and power resources, especially for large dimensional systems. The main objective of this paper is to quantify the rate of reduction of this overhead due to the use of a semi-blind channel estimation. Different data models and different pilot design schemes have been considered in this paper. By using the Cramér Rao Bound (CRB) tool, the estimation error variance bounds of the pilot-based and semi-blind based channel estimators for a multiple-input multiple-output orthogonal frequency division multiplexing (MIMO-OFDM) system are compared. In particular, for large MIMO-OFDM systems, a direct computation of the CRB is prohibitive, and hence, a dedicated numerical technique for its fast computation has been developed. Many key observations have been made from this comparative study. The most important one is that, thanks to the semi-blind approach, one can skip about 95% of the pilot samples without affecting the channel estimation quality.
机译:大多数通信系统需要信道估计以进行均衡和符号检测。当前,这是通过使用专用导频符号来实现的,专用导频符号消耗了吞吐量和功率资源的不可忽略的一部分,尤其是对于大型系统。本文的主要目的是量化由于使用半盲信道估计而减少的开销的速率。本文考虑了不同的数据模型和不同的试验设计方案。通过使用CramérRao Bound(CRB)工具,比较了多输入多输出正交频分复用(MIMO-OFDM)系统的基于导频和基于半盲的信道估计器的估计误差方差边界。特别地,对于大型MIMO-OFDM系统,CRB的直接计算被禁止,因此,已经开发了用于其快速计算的专用数值技术。这项比较研究得出了许多关键的观察结果。最重要的是,由于采用了半盲方法,因此可以跳过约95%的导频样本,而不会影响信道估计质量。

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