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Open AccessJournal ArticleDOI

A Survey on Device-to-Device Communication in Cellular Networks

Arash Asadi, +2 more
- 24 Apr 2014 - 
- Vol. 16, Iss: 4, pp 1801-1819
TLDR
This paper provides a taxonomy based on the D2D communicating spectrum and review the available literature extensively under the proposed taxonomy to provide new insights into the over-explored and under- Explored areas that lead to identify open research problems of D1D communications in cellular networks.
Abstract
Device-to-device (D2D) communications was initially proposed in cellular networks as a new paradigm for enhancing network performance. The emergence of new applications such as content distribution and location-aware advertisement introduced new user cases for D2D communications in cellular networks. The initial studies showed that D2D communications has advantages such as increased spectral efficiency and reduced communication delay. However, this communication mode introduces complications in terms of interference control overhead and protocols that are still open research problems. The feasibility of D2D communications in Long-Term Evolution Advanced is being studied by academia, industry, and standardization bodies. To date, there are more than 100 papers available on D2D communications in cellular networks, but there is no survey on this field. In this paper, we provide a taxonomy based on the D2D communicating spectrum and review the available literature extensively under the proposed taxonomy. Moreover, we provide new insights into the over-explored and under-explored areas that lead us to identify open research problems of D2D communications in cellular networks.

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Citations
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Journal ArticleDOI

Improving physical layer security and efficiency in D2D underlay communication

TL;DR: This paper investigates the security and efficiency problem of D2D underlay communication in a base station cell area with the presence of malicious eavesdroppers.
Journal ArticleDOI

Simultaneous wireless information and power transfer in heterogeneous cellular networks with underlay D2D communication

TL;DR: This work presents a resource allocation and power control scheme for SWIPT enabled underlay D2D networks, designed to improve the energy efficiency and the amount of energy harvested while ensuring the minimum required data rates for the users.
Proceedings ArticleDOI

Location-Partition-Based Resource Allocation in D2D-Supported Vehicular Communication Networks

TL;DR: This paper studies the resource allocation (RA) problem when the in- band device-to-device (D2D) technology is applied to support vehicle- to-vehicle (V2V) communications and proposes a novel location-partition- based RA scheme that can improve the minimum achievable rate compared with conventional location-based RA methods.
Proceedings ArticleDOI

A user cooperative beamforming approach to PAPR reduction in MIMO-OFDM uplink

TL;DR: This work considers a scheme for PAPR reduction based on user cooperation in a single-cell multi-user MIMO-OFDM uplink system to utilize the unused space-frequency resources induced by collaborative beamforming to transmit dummy symbols, resulting in a transmit signal with reduced per-antenna peak powers.
Proceedings ArticleDOI

Stochastic modeling of device-to-device communications for intelligent transportation systems

TL;DR: This paper discusses the performance evaluation and dynamic optimization of D2D communications for ITS based on stochastic models, and outlines the research directions and present the challenges and major issues that need to be addressed.
References
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Book

Computers and Intractability: A Guide to the Theory of NP-Completeness

TL;DR: The second edition of a quarterly column as discussed by the authors provides a continuing update to the list of problems (NP-complete and harder) presented by M. R. Garey and myself in our book "Computers and Intractability: A Guide to the Theory of NP-Completeness,” W. H. Freeman & Co., San Francisco, 1979.
Book ChapterDOI

Dynamic Source Routing in Ad Hoc Wireless Networks

TL;DR: This paper presents a protocol for routing in ad hoc networks that uses dynamic source routing that adapts quickly to routing changes when host movement is frequent, yet requires little or no overhead during periods in which hosts move less frequently.
Book

Theory of Linear and Integer Programming

TL;DR: Introduction and Preliminaries.
Journal ArticleDOI

User cooperation diversity. Part I. System description

TL;DR: Results show that, even though the interuser channel is noisy, cooperation leads not only to an increase in capacity for both users but also to a more robust system, where users' achievable rates are less susceptible to channel variations.
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