Title :
Beyond co-existence: Exploiting WiFi white space for Zigbee performance assurance
Author :
Huang, Jun ; Xing, Guoliang ; Zhou, Gang ; Zhou, Ruogu
Author_Institution :
Michigan State Univ., East Lansing, MI, USA
Abstract :
Recent years have witnessed the increasing adoption of ZigBee technology for performance-sensitive applications such as wireless patient monitoring in hospitals. However, operating in unlicensed ISM bands, ZigBee devices often yield unpredictable throughput and packet delivery ratio due to the interference from ever increasing WiFi hotspots in 2.4 GHz band. Our empirical results show that, although WiFi traffic contains abundant white space, the existing coexistence mechanisms such as CSMA are surprisingly inadequate for exploiting it. In this paper, we propose a novel approach that enables ZigBee links to achieve assured performance in the presence of heavy WiFi interference. First, based on statistical analysis of real-life network traces, we present a Pareto model to accurately characterize the white space in WiFi traffic. Second, we analytically model the performance of a ZigBee link in the presence of WiFi interference. Third, based on the white space model and our analysis, we develop a new ZigBee frame control protocol called WISE, which can achieve desired trade-offs between link throughput and delivery ratio. Our extensive experiments on a testbed of 802.11 netbooks and 802.15.4 TelosB motes show that, in the presence of heavy WiFi interference, WISE achieves 4× and 2× performance gains over B-MAC and a recent reliable transmission protocol, respectively, while only incurring 10.9% and 39.5% of their overhead.
Keywords :
Pareto optimisation; Zigbee; packet radio networks; statistical analysis; telecommunication traffic; 802.11 netbooks; 802.15.4 TelosB motes; CSMA; Pareto model; WISE; WiFi hotspots; WiFi traffic; WiFi white space; ZigBee devices; ZigBee frame control protocol; ZigBee links; ZigBee performance assurance; ZigBee technology; coexistence mechanisms; frequency 2.4 GHz; heavy WiFi interference; link throughput; packet delivery ratio; performance-sensitive applications; real-life network traces; reliable transmission protocol; statistical analysis; unlicensed ISM bands; white space model; wireless patient monitoring; IEEE 802.11 Standards; Interference; Protocols; Receivers; Throughput; White spaces; Zigbee;
Conference_Titel :
Network Protocols (ICNP), 2010 18th IEEE International Conference on
Conference_Location :
Kyoto
Print_ISBN :
978-1-4244-8644-1
DOI :
10.1109/ICNP.2010.5762779