Litcius/Paper detail

Channel Tracking for RIS-Aided mmWave Communications Under High Mobility Scenarios

Yu Liu, Ming Chen, Cunhua Pan, Yijin Pan, Yinlu Wang, Yaoming Huang, Tianyang Cao, Jiangzhou Wang

2023IEEE Communications Letters20 citationsDOI

Abstract

The emerging reconfigurable intelligent surface (RIS) technology is promising for applications in the millimeter wave (mmWave) communication systems to effectively compensate for propagation loss or tackle the blockage issue. Considering the high mobility of users in realistic scenarios, it is essential to adjust the phase shifts in real time to align the beam towards the mobile users, which requires to frequently estimate the channel state information. Hence, it is imperative to design efficient channel tracking schemes to avoid the complex channel estimation procedure. In this letter, we develop a novel channel tracking scheme with two advantages over conventional schemes. First, our tracking scheme is based on the cascaded angles at the RIS instead of the accurate angle values, which is more practical. Second, it can be employed under a more general setting where the noise can be non-Gaussian. Simulation results show the high tracking accuracy of our proposed scheme, and validate the superiority to the existing EKF-based tracking scheme.

Topics & Concepts

Computer scienceChannel (broadcasting)Tracking (education)Scheme (mathematics)Electronic engineeringChannel state informationReal-time computingExtremely high frequencyWirelessTelecommunicationsEngineeringPedagogyMathematicsMathematical analysisPsychologyAdvanced Wireless Communication TechnologiesIndoor and Outdoor Localization TechnologiesMillimeter-Wave Propagation and Modeling
Channel Tracking for RIS-Aided mmWave Communications Under High Mobility Scenarios | Litcius