DocumentCode :
3577283
Title :
Centralized Interference-Aware Resource Allocation for Device-to-Device Broadcast Communications
Author :
Che-Wei Yeh ; Guan-Yu Lin ; Mei-Ju Shih ; Hung-Yu Wei
Author_Institution :
Dept. of Electr. Eng., Nat. Taiwan Univ., Taipei, Taiwan
fYear :
2014
Firstpage :
304
Lastpage :
307
Abstract :
The Long Term Evolution-Advanced (LTE-A) networks are being developed to provide mobile broadband services for the fourth generation (4G) cellular wireless systems. Device to-Device (D2D) communications is a promising technique to provide wireless peer-to-peer communication services and enhance resource utilization, as well as spectrum efficiency. In this paper, a centralized resource allocation scheme involving several Device-to-Device (D2D) broadcast groups underlaying cellular network is proposed. The great amount of interference caused by sharing the resources between different D2D broadcast users may significantly affect the performances of other D2D users. Therefore, an efficient resource allocation method is necessary to coordinate the interference. Specifically, we formulate the interference relationships among different D2D broadcast groups as an innovative interference-aware graph. We propose a centralized interference-aware graph based resource allocation algorithm that can effectively minimize the interfered D2D users between different D2D broadcast groups. This scheme aims to optimize the number of "conflict UEs" meanwhile mitigate different D2D broadcast groups from affecting the performances of each other.
Keywords :
4G mobile communication; Long Term Evolution; broadcast communication; cellular radio; interference suppression; peer-to-peer computing; radio spectrum management; resource allocation; 4G cellular wireless system; D2D broadcast communication; LTE-A network; Long Term Evolution-Advanced network; centralized interference-aware graph based resource allocation algorithm; device-to-device broadcast communication; fourth generation cellular wireless system; interference minimization; mobile broadband service; resource utilization enhancement; spectrum efficiency enhancement; wireless peer-to-peer communication; Channel capacity; Interference; Quality of service; Resource management; Signal to noise ratio; Transmitters; Wireless communication; D2D; broadcast communication; interference-aware; resource allocation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Internet of Things (iThings), 2014 IEEE International Conference on, and Green Computing and Communications (GreenCom), IEEE and Cyber, Physical and Social Computing(CPSCom), IEEE
Print_ISBN :
978-1-4799-5967-9
Type :
conf
DOI :
10.1109/iThings.2014.55
Filename :
7059680
Link To Document :
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