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Journal ArticleDOI

LTE-advanced: next-generation wireless broadband technology [Invited Paper]

TLDR
An overview of the techniques being considered for LTE Release 10 (aka LTEAdvanced) is discussed, which includes bandwidth extension via carrier aggregation to support deployment bandwidths up to 100 MHz, downlink spatial multiplexing including single-cell multi-user multiple-input multiple-output transmission and coordinated multi point transmission, and heterogeneous networks with emphasis on Type 1 and Type 2 relays.
Abstract
LTE Release 8 is one of the primary broadband technologies based on OFDM, which is currently being commercialized. LTE Release 8, which is mainly deployed in a macro/microcell layout, provides improved system capacity and coverage, high peak data rates, low latency, reduced operating costs, multi-antenna support, flexible bandwidth operation and seamless integration with existing systems. LTE-Advanced (also known as LTE Release 10) significantly enhances the existing LTE Release 8 and supports much higher peak rates, higher throughput and coverage, and lower latencies, resulting in a better user experience. Additionally, LTE Release 10 will support heterogeneous deployments where low-power nodes comprising picocells, femtocells, relays, remote radio heads, and so on are placed in a macrocell layout. The LTE-Advanced features enable one to meet or exceed IMT-Advanced requirements. It may also be noted that LTE Release 9 provides some minor enhancement to LTE Release 8 with respect to the air interface, and includes features like dual-layer beamforming and time-difference- of-arrival-based location techniques. In this article an overview of the techniques being considered for LTE Release 10 (aka LTEAdvanced) is discussed. This includes bandwidth extension via carrier aggregation to support deployment bandwidths up to 100 MHz, downlink spatial multiplexing including single-cell multi-user multiple-input multiple-output transmission and coordinated multi point transmission, uplink spatial multiplexing including extension to four-layer MIMO, and heterogeneous networks with emphasis on Type 1 and Type 2 relays. Finally, the performance of LTEAdvanced using IMT-A scenarios is presented and compared against IMT-A targets for full buffer and bursty traffic model.

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Citations
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Journal ArticleDOI

Joint Estimation of DOA and TDOA of Multiple Reflections in Mobile Communications

TL;DR: An effect algorithm is presented for the simultaneous estimation of these parameters by re-iterative super-resolution, beamforming, and MUSIC-like searching techniques to estimate the directions and relative delays of each multipath signal.
Journal ArticleDOI

Relay-Assisted Diversity Communications

TL;DR: A novel FEP-optimal power allocation technique is developed and compared with other allocation techniques such as uniform, destination-balanced (D-balanced), and relay- balanced (R-balanced) power allocations.
Proceedings ArticleDOI

CRS interference cancellation in heterogeneous networks for LTE-Advanced downlink

TL;DR: This paper investigates the impact of non-ideal CRS Interference Cancellation (IC) in eICIC systems and proposes a simple RSRP-based CRS IC criterion not requiring any extra signaling that is compared to the ideal case in the downlink by means of extensive system level simulations.
Journal ArticleDOI

Vertical Handover Solutions Over LTE-Advanced Wireless Networks: An Overview

TL;DR: The paper proposes fast intelligent inter-layer network selection as a new handover approach to select the best network among the candidate networks, where Quality of Service, handover delay and improved data bit rates are set to be achieved.
Journal ArticleDOI

Impact of power control optimization on the system performance of relay based LTE-Advanced heterogeneous networks

TL;DR: An evaluation of the relay based heterogeneous deployment within the LTE-Advanced uplink framework is carried out by applying the standardized LTE Release 8 power control scheme both at evolved node B and relay nodes to enhance the overall system performance.
References
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Proceedings ArticleDOI

Overview of UMTS Air-Interface Evolution

TL;DR: A preliminary look at the air interface for Evolved UTRA (E-UTRA) and associated key technologies required to reach its design objectives are provided.
Proceedings ArticleDOI

On UMTS-LTE Physical Uplink Shared and Control Channels

TL;DR: The proposed channel estimation technique is shown to have significant gains in performance compared to other well known channel estimation techniques such as the maximum-likelihood (ML) and the inverse fast Fourier transform (IFFT) channel estimation methods.
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LTE-Advanced (also known as LTE Release 10) significantly enhances the existing LTE Release 8 and supports much higher peak rates, higher throughput and coverage, and lower latencies, resulting in a better user experience.