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Journal ArticleDOI

Resource allocation for device-to-device communications underlaying LTE-advanced networks

TLDR
A novel resource allocation scheme based on a column generation method for D2D communications in LTE-Advanced networks is introduced to maximize the spectrum utilization by finding the minimum transmission length in terms of time slots while protecting the cellular users from harmful interference and guaranteeing the QoS of D1D links.
Abstract
The Long Term Evolution-Advanced (LTEAdvanced) networks are being developed to provide mobile broadband services for the fourth generation (4G) cellular wireless systems. Deviceto- device (D2D) communications is a promising technique to provide wireless peer-to-peer services and enhance spectrum utilization in the LTE-Advanced networks. In D2D communications, the user equipments (UEs) are allowed to directly communicate between each other by reusing the cellular resources rather than using uplink and downlink resources in the cellular mode when communicating via the base station. However, enabling D2D communications in a cellular network poses two major challenges. First, the interference caused to the cellular users by D2D devices could critically affect the performances of the cellular devices. Second, the minimum quality-of-service (QoS) requirements of D2D communications need to be guaranteed. In this article, we introduce a novel resource allocation scheme (i.e. joint resource block scheduling and power control) for D2D communications in LTE-Advanced networks to maximize the spectrum utilization while addressing the above challenges. First, an overview of LTE-Advanced networks, and architecture and signaling support for provisioning of D2D communications in these networks are described. Furthermore, research issues and the current state-of-the-art of D2D communications are discussed. Then, a resource allocation scheme based on a column generation method is proposed for D2D communications. The objective is to maximize the spectrum utilization by finding the minimum transmission length in terms of time slots for D2D links while protecting the cellular users from harmful interference and guaranteeing the QoS of D2D links. The performance of this scheme is evaluated through simulations.

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Citations
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Journal ArticleDOI

UE Relaying Cooperation Over D2D Uplink in Heterogeneous Cellular Networks

TL;DR: A geodesic geometry view allows us to parameterize the BF design with the angles that the involved channel vectors make, which makes the optimization of the BF simpler, reduces the feedback overhead, and provides better insight into the problem at hand.
Journal ArticleDOI

Transmission Power Adaption for Full-Duplex Relay-Aided Device-to-Device Communication

Hui Dun, +2 more
- 09 Mar 2017 - 
TL;DR: An efficient power allocation algorithm for the base station (BS) and D2D relay to reduce the loopback interference which is inherent due to the two-antenna infrastructure in full-duplex (FD) mode and also guarantees cellular users’ minimum transmit rate.
Journal ArticleDOI

Assessing the Coexistence of Heterogeneous Wireless Technologies With an SDR-Based Signal Emulator: A Case Study of Wi-Fi and Bluetooth

TL;DR: This paper proposes to simplify the impact assessment by emulating the signals of the potential wireless network with a single software-defined radio, and it is shown that the use of the emulator gives a reliable indication of the expected impact at the location of the Wi-Fi link.
Patent

Resource selection in device to device communication

TL;DR: In this article, a wireless communication device is configured to perform resource allocation of device-to-device (D2D) communication in a UE and radio resource selection circuitry is provided to select a time resource of the time-frequency resource grid for allocation to a D2D communication depending upon a result of the resource unit evaluation.
Journal ArticleDOI

A Resource Allocation Scheme for Multi-D2D Communications Underlying Cellular Networks with Multi-Subcarrier Reusing

TL;DR: A two-stage resource allocation scheme which comprises a subcarrier assignment by employing a heuristic greedy strategy, as well as a power allocation algorithm based on the Lagrangian dual method to maximize the overall system spectrum efficiency.
References
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Book

Introduction to linear optimization

TL;DR: p. 27, l.
Journal ArticleDOI

Device-to-device communication as an underlay to LTE-advanced networks

TL;DR: Device-to-device (D2D) communication underlaying a 3GPP LTE-Advanced cellular network is studied as an enabler of local services with limited interference impact on the primary cellular network.
Journal ArticleDOI

Branch-and-Bound Methods: A Survey

TL;DR: The essential features of the branch-and-bound approach to constrained optimization are described, and several specific applications are reviewed, including integer linear programming Land-Doig and Balas methods, nonlinear programming minimization of nonconvex objective functions, and the quadratic assignment problem Gilmore and Lawler methods.
Journal ArticleDOI

Resource Sharing Optimization for Device-to-Device Communication Underlaying Cellular Networks

TL;DR: The results show that by proper resource management, D2D communication can effectively improve the total throughput without generating harmful interference to cellular networks.
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