Title :
An adaptive sniff scheduling scheme for power saving in Bluetooth
Author :
Lin, Ting-Yu ; Tseng, Yu-Chee
Author_Institution :
Dept. of Comput. Sci. & Inf. Eng., Nat. Chiao-Tung Univ., Hsinchu, Taiwan
Abstract :
Bluetooth is expected to be an important basic constructing component for smart homes. In a smart home environment, many devices will be portable and battery-operated, making power saving an essential issue. The authors study the problem of managing the low-power sniff mode in Bluetooth, where a slave is allowed to be awake only periodically. One challenging problem is how to schedule each slave´s sniffing period in a piconet so as to resolve the trade-off between traffic and power-saving requirements, to which we refer as the sniff-scheduling problem. We propose an adaptive protocol to dynamically adjust each slave´s sniff parameters, with a goal of catching the varying, and even asymmetric, traffic patterns among the master and slaves. Compared to existing works, our work is unique. First, our scheduling considers multiple slaves simultaneously. Existing work only considers one slave, and different slaves are treated independently. Second, our scheduling is more accurate and dynamic in determining the sniff-related parameters based on slaves´ traffic patterns. Most work is restricted to a naive exponential adjustment in sniff interval/sniff-attempt window. Third, our proposal includes the placement of sniff-attempt periods of sniffed slaves on the time axis when multiple slaves are involved. This issue is ignored by earlier work. Extensive simulation results are presented.
Keywords :
Bluetooth; adaptive systems; digital simulation; home automation; picocellular radio; protocols; telecommunication computing; telecommunication traffic; Bluetooth; adaptive protocol; adaptive sniff scheduling; battery-operated devices; low-power sniff mode; master; multiple slaves; naive exponential adjustment; piconet; portable devices; power saving; simulation results; slave sniff parameters; smart homes; sniff interval/sniff-attempt window; sniff-attempt periods; sniff-scheduling problem; traffic patterns; traffic requirements; Ad hoc networks; Adaptive scheduling; Batteries; Bluetooth; Communications technology; Home appliances; Personal area networks; Pervasive computing; Smart homes; Wireless communication;
Journal_Title :
Wireless Communications, IEEE
DOI :
10.1109/MWC.2002.1160087