Title :
System level results of a novel energy efficient time resource scheduling method in 3GPP LTE-Advanced heterogeneous networks
Author :
Yuan Gao ; Yi Li ; Yu Hongyi ; Xianfeng Wang ; Shihai Gao
Author_Institution :
State Key Lab. on Microwave & Digital Commun., Tsinghua Univ., Beijing, China
Abstract :
Due to the demand of higher throughput and lower latency of mobile users, network operators have established more and more service nodes to fulfill the needs. However, the constructions of service nodes lead to another problem of energy waste in some time intervals and regions. Aimed at the tendency of deploying heterogeneous networks, how to make full use of every access point and reduce energy consumption become another important problem. In order to reduce energy waste in such conditions, we raise a novel method of time domain resource scheduling of 3GPP LTE-Advanced heterogeneous networks. In multi-base stations scenario, the joint scheduling of on-off status in time domain with low traffic load can effectively reduce energy consumption considering the cost of on-off delays and static power consumption. The novel scheduling method make a balance between energy consumption and system performance. Compared with traditional proportional fairness method and traditional on-off scheduling method, our method is proved to be a more energy efficient method without losing performance of users. Simulation result under LTE-Advanced system level simulation has been done to prove the effectiveness of our method.
Keywords :
3G mobile communication; Long Term Evolution; energy conservation; scheduling; telecommunication traffic; 3GPP LTE-advanced heterogeneous networks; LTE-Advanced system level simulation; access point; energy consumption; energy efficient time resource scheduling method; energy waste; joint scheduling; mobile users; multi-base stations scenario; network operators; on-off scheduling method; on-off status; proportional fairness method; service nodes; static power consumption; system level results; system performance; time domain resource scheduling; time intervals; traffic load; Base stations; Delays; Energy consumption; Green products; Long Term Evolution; Power demand; Throughput; LTE-Advanced; System Level simulation; energy efficient; heterogeneous networks; resource scheduling;
Conference_Titel :
Communications and Networking in China (CHINACOM), 2013 8th International ICST Conference on
Conference_Location :
Guilin
DOI :
10.1109/ChinaCom.2013.6694664