Title :
A Closed-Loop UL Power Control Scheme for Interference Mitigation in Dynamic TD-LTE Systems
Author :
Qinqin Chen ; Hui Zhao ; Lin Li ; Hang Long ; Jianquan Wang ; Xiaoyue Hou
Author_Institution :
Key Lab. of Universal Wireless Commun., BUPT, Beijing, China
Abstract :
The TD-LTE system is envisaged to adopt dynamic time division duplexing (TDD) transmissions for small cells to adapt their communication service to the fast variation of downlink (DL) and uplink (UL) traffic demands. However, different DL/UL directions for the same subframe in adjacent cells will result in new destructive interference components, i.e., eNB-to-eNB and UE-to-UE, with levels that can significantly differ from one subframe to another. In this paper, a feasible UL power control mechanism is proposed to manage eNB-to-eNB interference, where different UL power control parameters are set based on different interference level. We consider the geometric location information and the subframe set selection process about adjacent eNBs when the interference level is estimated. The performance of the proposed scheme is evaluated through system level simulations and it is shown that the scheme can achieve preferable improvement in terms of UL average and 5%-ile packet throughputs compared with the original scheme without power control. Also, the UE-to-UE interference is not worse when the UE transmit power become higher.
Keywords :
Long Term Evolution; interference suppression; power control; telecommunication control; telecommunication traffic; time division multiplexing; TDD transmissions; UE-to-UE interference; adjacent cells; closed-loop UL power control; destructive interference components; downlink traffic demand; dynamic TD-LTE systems; dynamic time division duplexing; eNB-to-eNB interference; interference mitigation; uplink traffic demand; Downlink; Interference; Power control; Throughput; Uplink; Vehicle dynamics; Wireless communication;
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2015 IEEE 81st
Conference_Location :
Glasgow
DOI :
10.1109/VTCSpring.2015.7145591