Title :
Joint Power Reduction and Time-Domain Scheduling for Interference Mitigation in Macro-Pico Heterogeneous Networks with Differential Evolution
Author :
Rui Han ; Chunyan Feng ; Hailun Xia ; Qi Li ; Yu Xu
Author_Institution :
Beijing Key Lab. of Network Syst. Archit. & Convergence, Beijing Univ. of Posts & Telecommun., Beijing, China
Abstract :
Heterogeneous Network (HetNet) in 3GPP is a promising way to increase network coverage and capacity compared to macro cellular-only network. In order to further increase network capacity and balance cell load, Cell Range Expansion (CRE) and time-domain Inter-Cell Interference Coordination (ICIC) have been introduced into LTE-Advanced. The goal of our research is to mitigate the interference towards the User Equipments (UEs) served by the picocells and maintain the throughput of macrocells at the same time. We solve the problem by reducing the transmission power of macro Base Stations (BSs) in some subframes based on the proposed utility function, and accordingly scheduling picocell CRE UEs in these subframes. The existence of optimal solutions to the problem is discussed, and the Differential Evolution (DE) is applied to find the optimal transmission power which maximizes the utility function. System level simulation results show that the proposed algorithm can not only increase the total network´s capacity but also improve the load balance between macrocell and picocell.
Keywords :
Long Term Evolution; interference suppression; picocellular radio; time-domain analysis; 3GPP; BS; CRE; DE; HetNet; ICIC; LTE-Advanced; UE; balance cell load; base stations; cell range expansion; differential evolution; interference mitigation; macro cellular-only network; macro-pico heterogeneous networks; macrocells; network capacity; network coverage; optimal transmission power; picocells; power reduction; system level simulation; time-domain intercell interference coordination; time-domain scheduling; user equipments; utility function; Computer architecture; Interference; Macrocell networks; Scheduling; Signal to noise ratio; Throughput; Time-domain analysis;
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2013 IEEE 77th
Conference_Location :
Dresden
DOI :
10.1109/VTCSpring.2013.6692612