With the increasing demand of mobile data traffic, cellular networks are evolving towards heterogeneous systems involving cells of different sizes (e.g., pico, micro, and macro cells). The presence of small cells is causing new interference issues that require the introduction of frequency reuse techniques suitable to manage both co-tier and cross-tier interference. In this paper, we propose a novel Soft Frequency Reuse (SFR) scheme for LTE-A, based on three frequency segments (named Three-Band Improved SFR, 3B-ISFR) where the Frequency Reuse Pattern (FRP) allocation scheme for micro cells is centralized at the level of each macro cell. This scheme is based on the exchange of measurements made by the micro cells with their macro cell (cogni...
The Fractional Frequency Reuse (FFR) is a resource allocation technique that can effectively mitigat...
Long-term evolution (LTE) femtocells represent a very promising answer to the ever growing bandwidth...
The decode-and-forward relay technique has been introduced in next generation wireless networks (suc...
With the increasing demand of mobile data traffic, cellular networks are evolving towards heterogene...
In modern cellular system such as LTE Advanced (LTE-A), frequency reuse scheme is targeted to be app...
This paper proposes a novel load distribution aware soft frequency reuse (LDA-SFR) scheme for inter-...
Includes bibliographical references (p. 37-38).A novel frequency reuse scheme is proposed for a hier...
Due to the requirement of high spectrum efficiency, the frequency reuse of one is targeted for next ...
In the paper a novel SPFR frequency reuse method is proposed which can be used for improvement of ph...
This paper deals with the planning of two-layer Long Term Evolution-Advanced (LTE-A) cellular system...
This paper presents a novel power allocation approach for soft frequency reuse (SFR) adopted in a mu...
In recent years, several researchers have embraced fractional frequency (FF) reuse as a strategy for...
International audienceFuture 4G cellular systems will address the need for capacity increase for the...
Long Term Evolution (LTE) has introduced Femtocells technology in cellular mobile communication syst...
The Fractional Frequency Reuse (FFR) is a resource allocation technique that can effectively mitigat...
Long-term evolution (LTE) femtocells represent a very promising answer to the ever growing bandwidth...
The decode-and-forward relay technique has been introduced in next generation wireless networks (suc...
With the increasing demand of mobile data traffic, cellular networks are evolving towards heterogene...
In modern cellular system such as LTE Advanced (LTE-A), frequency reuse scheme is targeted to be app...
This paper proposes a novel load distribution aware soft frequency reuse (LDA-SFR) scheme for inter-...
Includes bibliographical references (p. 37-38).A novel frequency reuse scheme is proposed for a hier...
Due to the requirement of high spectrum efficiency, the frequency reuse of one is targeted for next ...
In the paper a novel SPFR frequency reuse method is proposed which can be used for improvement of ph...
This paper deals with the planning of two-layer Long Term Evolution-Advanced (LTE-A) cellular system...
This paper presents a novel power allocation approach for soft frequency reuse (SFR) adopted in a mu...
In recent years, several researchers have embraced fractional frequency (FF) reuse as a strategy for...
International audienceFuture 4G cellular systems will address the need for capacity increase for the...
Long Term Evolution (LTE) has introduced Femtocells technology in cellular mobile communication syst...
The Fractional Frequency Reuse (FFR) is a resource allocation technique that can effectively mitigat...
Long-term evolution (LTE) femtocells represent a very promising answer to the ever growing bandwidth...
The decode-and-forward relay technique has been introduced in next generation wireless networks (suc...