Title :
Reduced power centralized eICIC for LTE-advanced heterogeneous networks
Author :
Xibo Wang ; Cheng Wang ; Ruo Cai ; Supeng Huang ; Chaowei Wang ; Weidong Wang
Author_Institution :
Key Lab. of Universal Wireless Commun., Beijing Univ. of Posts & Telecommun., Beijing, China
Abstract :
With heterogeneous network developing, eICIC technology is widely considered and developed. eICIC is introduced to address the problem of downlink interference in HetNet. In the traditional eICIC, some pico users are scheduled in the protected subframe (referred to as almost blank subframe ABS) in which macrocell stops scheduling users. This causes serious loss of the cell throughput which ABS is applied. In this paper, on the basis of centralized eICIC, reduced power centralized eICIC technology is put forward, which the macrocell reduces transmission power in the protected subframe. We use CRE pico user information transmission rate to calculate macrocell transmission power, then the macrocell transmits the reduced power. More macro users will be served, and cell throughput will be improved. Simulation results show that cell throughput and mean user throughput are improved by employing reduced power (RP) centralized eICIC.
Keywords :
Long Term Evolution; cellular radio; picocellular radio; radiofrequency interference; telecommunication power management; telecommunication scheduling; HetNet; LTE-advanced heterogeneous networks; blank subframe ABS; downlink interference; information transmission rate; macrocell stops scheduling users; macrocell transmission power; mean user throughput; power centralized eICIC reduction; Base stations; Computer architecture; Information processing; Interference; Microprocessors; Throughput; Wireless communication; Cell range expansion; Centralized eICIC; HetNet; LTE-Advanced; Reduced power;
Conference_Titel :
Communications in China (ICCC), 2014 IEEE/CIC International Conference on
Conference_Location :
Shanghai
DOI :
10.1109/ICCChina.2014.7008374