Title :
UE Relaying Cooperation Over D2D Uplink in Heterogeneous Cellular Networks
Author :
Duckdong Hwang ; Dong In Kim ; Seong Kyu Choi ; Tae-Jin Lee
Author_Institution :
Coll. of Inf. & Commun. Eng., Sungkyunkwan Univ. (SKKU), Suwon, South Korea
Abstract :
We consider beamformer optimization for user equipment (UE) relaying cooperation in heterogeneous cellular networks (HCNs), where the interference from femto cells nearby aggravates the signal-to-interference-plus-noise ratio (SINR) of a macro UE (MUE). A femto UE acts as a relay over device-to-device (D2D) uplink and forward to the MUE, the composite of desired signal and interference to improve the post SINR of the MUE. The beamformers of the UE relay and MUE collaborate to make a balance between the two signals so that the output signal after multistage maximal-ratio combining (MS-MRC) yields a sufficient post SINR for the desired signal. We first consider the case with a single interfering femto access point (FAP) and show that the beamforming for dual-stage MRC can effectively handle the interference. Then, the idea is generalized to the case of two interfering FAPs with a three-stage MRC. A geodesic geometry view allows us to parameterize the BF design with the angles that the involved channel vectors make. This approach makes the optimization of the BF simpler, reduces the feedback overhead, and provides better insight into the problem at hand. Simulations are carried out to validate the performance of the UE relaying cooperation in HCN environments.
Keywords :
array signal processing; cooperative communication; diversity reception; feedback; femtocellular radio; optimisation; radiofrequency interference; relay networks (telecommunication); vectors; BF design; D2D uplink; FAP; HCN; MS-MRC; MUE; SINR; UE relaying cooperation; beamformer optimization; channel vectors; device-to-device uplink; feedback overhead; femto UE; femto access point; femtocells; heterogeneous cellular networks; macro UE; multistage maximal-ratio combining; signal-to-interference-plus-noise ratio; user equipment; Interference; Receivers; Relays; Signal to noise ratio; Silicon carbide; Uplink; D2D uplink; Heterogeneous cellular networks (HCNs); UE relaying; coordinated beamforming; multi-stage MRC; multistage MRC;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2015.2486773