DocumentCode :
1772825
Title :
Low-power and topology-free data transfer protocol with synchronous packet transmissions
Author :
Jongsoo Jeong ; Jongjun Park ; Hoon Jeong ; Jongarm Jun ; Liang, Chieh-Jan Mike ; JeongGil Ko
fYear :
2014
fDate :
June 30 2014-July 3 2014
Firstpage :
399
Lastpage :
407
Abstract :
Tightly synchronizing transmissions of the same packet from different sources theoretically results in constructive interference. Exploiting this property potentially speeds up network-wide packet propagation with minimal latencies. Our empirical results suggest the timing constraints can be relaxed in the real world, especially for radios using lower frequencies such as the IEEE 802.15.4 radios at 900 MHz. Based on these observations we propose PEASST, a topology-free protocol that leverages synchronized transmissions to lower the cost of end-to-end data transfers, and enables multiple traffic flows. In addition, PEASST integrates a receiver-initiated duty-cycling mechanism to further reduce node energy consumption. Results from both our Matlab-based simulations and indoor testbed reveal that PEASST can achieve a packet delivery latency matching the current state-of-the-art schemes that also leverages synchronized transmissions. In addition, PEASST reduces the radio duty-cycling by three-fold. Furthermore, comparisons with a multi-hop routing protocol shows that PEASST effectively reduces the per-packet control overhead. This translates to a ~10% higher packet delivery performance with a duty cycle of less than half.
Keywords :
Zigbee; protocols; radio receivers; radiofrequency interference; telecommunication traffic; wireless sensor networks; IEEE 802.15.4 radios; Matlab-based simulations; PEASST; end-to-end data transfers; frequency 900 MHz; indoor testbed; low-power data transfer protocol; minimal latencies; multiple traffic flows; network-wide packet propagation; node energy consumption reduction; packet delivery latency matching; per-packet control overhead reduction; radio duty-cycling reduction; receiver-initiated duty-cycling mechanism; synchronous packet transmissions; timing constraints; topology-free data transfer protocol; wireless sensor networks; Interference; Protocols; Receivers; Signal generators; Synchronization; Wireless communication; Wireless sensor networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sensing, Communication, and Networking (SECON), 2014 Eleventh Annual IEEE International Conference on
Conference_Location :
Singapore
Type :
conf
DOI :
10.1109/SAHCN.2014.6990377
Filename :
6990377
Link To Document :
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