DocumentCode
597523
Title
CellSlice: Cellular wireless resource slicing for active RAN sharing
Author
Kokku, Ravi ; Mahindra, Rajesh ; Honghai Zhang ; Rangarajan, Sampath
Author_Institution
IBM Res., Bangalore, India
fYear
2013
fDate
7-10 Jan. 2013
Firstpage
1
Lastpage
10
Abstract
We present the design and implementation of Cell-Slice, a novel system for slicing wireless resources in a cellular network for effective Radio Access Network (RAN) sharing. CellSlice is a gateway-level solution that achieves the slicing without modifying the basestations´ MAC schedulers, thereby significantly reducing the barrier for its adoption. Achieving slicing with a gateway-level solution is challenging, however, since resource scheduling decisions occur at the basestations at fine timescales, and these decisions are not visible at the gateways. In the uplink direction, CellSlice overcomes the challenge by indirectly constraining the uplink scheduler´s decisions using a simple feedback-based adaptation algorithm. For downlink, we build on the technique used by NVS, a native basestation virtualization solution, and show that effective downlink slicing can be easily achieved without modifying basestation schedulers. We instantiate a prototype of CellSlice on a Picochip WiMAX testbed. Through both prototype evaluation and simulations, we demonstrate that CellSlice´s performance for both remote uplink and remote downlink slicing is close to that of NVS. CellSlice´s design is access-technology independent, and hence can be equally applicable to LTE, LTE-Advanced and WiMAX networks.
Keywords
Long Term Evolution; WiMax; access protocols; cellular radio; radio access networks; scheduling; CellSlice; LTE-advanced; WiMAX networks; access-technology; active RAN sharing; basestations MAC schedulers; cellular network; cellular wireless resource slicing; gateway-level solution; native basestation virtualization solution; picochip WiMAX testbed; radio access network; remote downlink; remote uplink; resource scheduling; simple feedback-based adaptation; uplink direction; uplink scheduler decisions; Downlink; Logic gates; Radio access networks; Resource management; Uplink; WiMAX;
fLanguage
English
Publisher
ieee
Conference_Titel
Communication Systems and Networks (COMSNETS), 2013 Fifth International Conference on
Conference_Location
Bangalore
Print_ISBN
978-1-4673-5330-4
Electronic_ISBN
978-1-4673-5329-8
Type
conf
DOI
10.1109/COMSNETS.2013.6465548
Filename
6465548
Link To Document