بایگانی برچسب برای: power management

A Survey on Power Management Techniques in Wireless Sensor[taliem.ir]

A Survey on Power Management Techniques in Wireless Sensor Network

A Wireless Sensor Network (WSN) is an ad-hoc network. In Wireless Sensor Network the number of nodes which are organized into a cooperative network. WSN is a network that contained battery-powered nodes which route the data from source node to sink. Each node consumes energy in order to transmit or receive the data on its radio. Therefore, power management is a major issue for wireless sensor network. A survey is presented in this paper on power management considers various routing schemes to maximize the efficiency of WSNs.
Power Management Strategies for a Microgrid With[taliem.ir]

Power Management Strategies for a Microgrid With Multiple Distributed Generation Units

This paper addresses real and reactive power management strategies of electronically interfaced distributed generation (DG) units in the context of a multiple-DG microgrid system. The emphasis is primarily on electronically interfaced DG (EI-DG) units. DG controls and power management strategies are based on locally measured signals without communications. Based on the reactive power controls adopted, three power management strategies are identified and investigated. These strategies are based on 1) voltage- droop characteristic, 2) voltage regulation, and 3) load reactive power compensation. The real power of each DG unit is controlled based on a frequency-droop characteristic and a complimentary frequency restoration strategy. A systematic approach to develop a small-signal dynamic model of a multiple-DG microgrid, including real and reactive power management strategies, is also presented. The microgrid eigen structure, based on the developed model, is used to 1) investigate the microgrid dynamic behavior, 2) select control parameters of DG units, and 3) incorporate power management strategies in the DG controllers. The model is lso used to investigate sensitivity of the design to changes of parameters and operating point and to ptimize performance of the microgrid system. The results are used to discuss applications of the proposed power management strategies under various microgrid operating conditions.