Title :
Predictive power control for dynamic state estimation over wireless sensor networks with relays
Author :
Ostergaard, Jan ; Quevedo, Daniel E. ; Ahlen, Anders
Author_Institution :
Dept. of Electron. Syst., Aalborg Univ., Aalborg, Denmark
Abstract :
We present a predictive power controller for state estimation of a stationary ARMA process over a wireless sensor network (WSN), consisting of sensor nodes, relays, and a single gateway (GW). The state estimate is formed centrally at the GW by using packets received from sensors and relays. The latter perform network coding of sensor measurements. Communication from sensors and relays to the GW is over a fading channel. Packet loss probabilities depend upon the time-varying channel gains and the transmission powers used. To achieve an optimal trade-off between state estimation quality and energy expenditure, in our approach the GW decides upon the in general time-varying transmission powers of sensors and relays. This decision process is carried out on-line and adapts to changing channel conditions by using elements of stochastic model predictive control. Simulations on measured channel data illustrate the performance achieved by the proposed controller.
Keywords :
autoregressive moving average processes; fading channels; network coding; power control; predictive control; relay networks (telecommunication); state estimation; stochastic processes; telecommunication control; time-varying channels; wireless sensor networks; WSN; dynamic state estimation; energy expenditure; fading channel; network coding; packet loss probability; predictive power control; sensor measurement; single gateway; state estimation quality; stationary ARMA process; stochastic model; time-varying channel gain; time-varying transmission power; wireless sensor networks; Entropy; Logic gates; Network coding; Relays; State estimation; Wireless communication; Wireless sensor networks;
Conference_Titel :
Signal Processing Conference, 2010 18th European
Conference_Location :
Aalborg