Title :
Protective Dummy-byte Preamble Padding for improving ZigBee packet transmission under Wi-Fi interference
Author :
Tianyu Du ; Zhipeng Wang ; Makrakis, Dimitrios ; Mouftah, Hussein T.
Author_Institution :
Broadband Wireless & Internetworking Res. Lab., Univ. of Ottawa, Ottawa, ON, Canada
Abstract :
Recent studies have shown that the low-power ZigBee based wireless sensor networks (WSN) are vulnerable to the interference generated by nodes of Wi-Fi wireless local area networks (WLAN). Mutual interference can be mitigated at nodes of either technology when energy detection (ED) is enabled in clear channel assessment (CCA). From our experimental studies on ZigBee and Wi-Fi coexistence issue, it is determined that a significant amount of ZigBee packet losses occur due to the Wi-Fi interference induced corruption of the physical layer header of ZigBee packets, which could happen even when the ED mechanisms of the Wi-Fi and ZigBee devices are able to detect each other´s signal and CSMA/CA algorithms are applied accordingly. To study this phenomenon, a series of experiments were carried out, followed by thorough analysis of the recorded data. The study led to the design of a simple but effective technique named Protective Dummy-byte Preamble Padding (PDBPP) that improves the performance of ZigBee packet transmission in terms of packet loss rate (PLR) and transmission efficiency. The experimental performance evaluation results confirmed the effectiveness of PDBPP in improving PLR and transmission efficiency of a ZigBee network exposed to interference generated by collocated WLAN. Some material in this paper is part of a pending patent.
Keywords :
Zigbee; radiofrequency interference; wireless LAN; wireless channels; wireless sensor networks; CCA; CSMA/CA algorithms; ED; PDBPP; PLR; WLAN; WSN; Wi-Fi coexistence issue; Wi-Fi interference; Wi-Fi wireless local area networks; ZigBee devices; ZigBee packet; ZigBee packet transmission; clear channel assessment; energy detection; low power ZigBee based wireless sensor networks; mutual interference; packet loss rate; physical layer header; protective dummy byte preamble padding; IEEE 802.11g Standard; Interference; Packet loss; Wireless LAN; Zigbee; CSMA/CA; clear channel assessment; coexistence; preamble; wireless sensor network;
Conference_Titel :
Wireless Communications and Networking Conference (WCNC), 2015 IEEE
Conference_Location :
New Orleans, LA
DOI :
10.1109/WCNC.2015.7127761