计算机科学
IEEE 802.11p
方案(数学)
频道(广播)
估计
语音识别
算法
实时计算
电信
无线
数学
工程类
车载自组网
无线自组网
数学分析
系统工程
作者
Abdul Karim Gizzini,Marwa Chafii,Shahab Ehsanfar,Raed M. Shubair
出处
期刊:
日期:2021-12-01
卷期号:: 01-07
被引量:52
标识
DOI:10.1109/globecom46510.2021.9685409
摘要
In vehicular communications, reliable channel estimation is critical for the system performance due to the doubly-dispersive nature of vehicular channels. IEEE 802.11p standard allocates insufficient pilots for accurate channel tracking. Consequently, conventional IEEE 802.11p estimators suffer from a considerable performance degradation, especially in high mobility scenarios. Recently, deep learning (DL) techniques have been employed for IEEE 802.11p channel estimation. Neverthe-less, these methods suffer either from performance degradation in very high mobility scenarios or from large computational complexity. In this paper, these limitations are solved using a long short term memory (LSTM)-based estimation. The proposed estimator employs an LSTM unit to estimate the channel, followed by temporal averaging (TA) processing as a noise alleviation technique. Moreover, the noise mitigation ratio is determined analytically, thus validating the TA processing ability in improving the overall performance. Simulation results reveal the performance superiority of the proposed schemes compared to the recently proposed DL-based estimators, while recording a significant reduction in the computational complexity.
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