Title :
Optimal resource management for device-to-device communications underlaying SC-FDMA systems
Author :
Yue Wu ; Siyi Wang ; Weisi Guo ; Xiaoli Chu ; Jie Zhang
Author_Institution :
Dept. of Electron. & Electr. Eng., Univ. of Sheffield, Sheffield, UK
Abstract :
In this paper we propose an optimal resource management scheme for device-to-device (D2D) communications utilising uplink resources in a Single Carrier Frequency Division Multiple Access (SC-FDMA) system, which is the uplink access scheme in the 3GPP-Long Term Evolution (LTE) standard. We consider an arbitrary number of conventional cellular (CC) User Equipments (UEs) and D2D UEs, both utilising the same uplink resources. We leverage a practical capacity formula that takes into account the saturation effects of practical modulation schemes to optimise the power control for both CC and D2D UEs subject to certain Quality-of-Service (QoS) constraints. We then formulate the resource block (RB) allocation problem as a job sequence problem and apply the dynamic programming algorithm to solve the problem. Finally, we combine these two aspects together and propose a composite resource management scheme for D2D communications. Simulation results show that by our proposed scheme, a substantial improvement in the total throughput of D2D communications can be achieved while maintaining the QoS requirements of CC UEs.
Keywords :
Long Term Evolution; dynamic programming; frequency division multiple access; power control; quality of service; resource allocation; telecommunication power management; 3GPP long term evolution; D2D communications; LTE standard; QoS constraints; composite resource management; device-to-device communications; dynamic programming algorithm; job sequence problem; optimal resource management; power control; quality of service; resource block allocation problem; single carrier frequency division multiple access system; underlaying SC-FDMA systems; uplink access scheme; uplink resources; Interference; Power control; Quality of service; Resource management; Throughput; Transmitters; Uplink; Device-to-device (D2D) communication; capacity; radio resource management;
Conference_Titel :
Communication Systems, Networks & Digital Signal Processing (CSNDSP), 2014 9th International Symposium on
Conference_Location :
Manchester
DOI :
10.1109/CSNDSP.2014.6923893