Future RAN Architecture: SD-RAN Through a General-Purpose Processing Platform

Vehicular Technology Magazine, IEEE  (2015)

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摘要
In this article, we identify and study the potential of an integrated deployment solution for energy-efficient cellular networks combining the strengths of two very active current research themes: 1) software-defined radio access networks (SD-RANs) and 2) decoupled signaling and data transmissions, or beyond cellular green generation (BCG2) architecture, for enhanced energy efficiency. While SD-RAN envisions a decoupled centralized control plane and data-forwarding plane for flexible control, the BCG2 architecture calls for decoupling coverage from the capacity and coverage provided through an always-on low-power signaling node for a larger geographical area; the capacity is catered by various on-demand data nodes for maximum energy efficiency. In this article, we show that a combined approach that brings both specifications together can not only achieve greater benefits but also facilitate faster realization of both technologies. We propose the idea and design of a signaling controller that acts as a signaling node to provide always-on coverage, consuming low power, and at the same time host the control plane functions for the SDRAN through a general-purpose processing platform. The phantom cell concept is also a similar idea where a normal macrocell provides interference control to densely deployed small cells, although our initial results show that the integrated architecture has a much greater potential for energy savings than phantom cells.
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关键词
cellular radio,energy conservation,green computing,radio access networks,radiofrequency interference,software radio,telecommunication power management,telecommunication signalling,bcg2 architecture,sd-ran,always-on low-power signaling node,beyond cellular green generation architecture,data-forwarding plane,decoupled centralized control plane,decoupled signaling-and-data transmissions,decoupling coverage,energy efficiency enhancement,energy savings,energy-efficient cellular networks,future ran architecture,general-purpose processing platform,geographical area,integrated deployment solution,interference control,on-demand data nodes,phantom cell concept,signaling controller,signaling node,software-defined radio access networks,computer architecture,interference,sustainable development,communication systems,software defined radio,green design,resource management,signaling,cellular networks,mobile communication
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