Single-sided adaptive estimation of multi-path millimeter wave channels

SPAWC(2014)

引用 40|浏览65
暂无评分
摘要
Millimeter wave (mmWave) cellular systems will enable ultra high data rates by communicating over the large bandwidth available in mmWave frequencies. To overcome the channel propagation characteristics in this frequency band, large antenna arrays need to be deployed at both the base station and mobile users. While these large arrays provide sufficient beamforming gains to meet the required link margins, they make it challenging to estimate the mmWave channel. In this paper, we propose a mmWave channel estimation algorithm that exploits the sparse nature of the channel and leverages tools from adaptive compressed sensing to efficiently estimate the channel with a small training overhead. The proposed algorithm considers practical hardware constraints on the training beamforming design, and does not require the availability of a feedback channel between the base station and the mobile user. Simulation results indicate that comparable precoding gains can be achieved by the proposed channel estimation algorithm relative to the case when perfect channel knowledge exists.
更多
查看译文
关键词
base station,precoding gains,link margins,mmwave channel estimation algorithm,feedback channel,small training overhead,cellular radio,mobile antennas,mobile users,adaptive compressed sensing,adaptive signal processing,mmwave cellular systems,single-sided adaptive estimation,antenna arrays,array signal processing,ultra high data rates,channel propagation characteristics,large antenna arrays,compressed sensing,hardware constraints,training beamforming design,multipath millimeter wave channels,beamforming gains,adaptive estimation,channel estimation,heating,frequency control,baseband,switches,radio frequency
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要