Event-driven scheduler in monitoring and controlling system for greenhouse based on wireless sensor networks

被引:0
|
作者
Han A. [1 ]
Guo X. [2 ]
Sun Y. [1 ]
机构
[1] Institute of Electrical Engineering and Electronic Technology, China Jiliang University
[2] Fair Friend Institute of Electromechanics, Hangzhou Vocational and Technical College
关键词
Event-driven scheduler; Feedback control; Greenhouse; Wireless sensor networks;
D O I
10.3969/j.issn.1000-1298.2010.07.038
中图分类号
学科分类号
摘要
In order to reduce the adverse impact of network time-varying delay, packet loss, network congestion, jitter and other properties on performance of the monitoring and controlling system for greenhouse environment based on wireless sensor networks, the event-driven feedback scheduling strategy was proposed. The basic idea of the proposed event-driven feedback scheduling strategy was to use deadline miss ratio as the indicator for the network quality of service, adjust the sampling period of each sensor nodes by means of feedback control technology at run time such that the bandwidth requirement of each sensor nodes could adapt the change of the network workload, and the quality of network service could be maintained at a certain level. The novel event-driven invocation mechanism for the feedback scheduler was adopted to reduce the design difficulty and overhead of the feedback scheduler. Experiments indicated the proposed event-driven feedback scheduling strategy was with rationality, effectiveness and practicability.
引用
收藏
页码:186 / 190+204
相关论文
共 19 条
  • [1] Cullar D., Estrin D., Strvastava M., Overview of sensor networks, Computer, 37, 8, pp. 41-49, (2004)
  • [2] Feng Y., Zhang R., Shen M., Construction of wireless sensor networks for precision irrigation, Transactions of the Chinese Society for Agricultural Machinery, 40, 1, pp. 56-59, (2009)
  • [3] Pawlowski A., Guzman J.L., Rodriguez F., Et al., Simulation of greenhouse climate monitoring and control with wireless sensor network and event-based control, Sensors, 9, 1, pp. 232-252, (2009)
  • [4] Zhang R., Feng Y., Shen Z., Et al., Communication method of star wireless sensor network for greenhouse dynamic measurement, Transactions of the CSAE, 28, 12, pp. 107-110, (2008)
  • [5] Rezgui A., Eltoweissy M., Service-oriented sensor-actuator networks: Promises, challenges, and the road ahead, Computer Communications, 30, 13, pp. 2627-2648, (2007)
  • [6] Ploplys N., Kawka P., Alleyne A., A closed-loop control over wireless networks, IEEE Control Systems Magazine, 24, 3, pp. 58-71, (2004)
  • [7] Felemban E., Lee C., Ekici E., MMSPEED: Multipath multi-SPEED protocol for QoS guarantee of reliability and timeliness in wireless sensor networks, IEEE Transactions on Mobile Computing, 5, 6, pp. 738-754, (2007)
  • [8] Han A., Guo X., Design of the LQR output feedback controller based on the wireless sensor networks, Computer Measurement and Control, 17, 1, pp. 53-56, (2009)
  • [9] Wang Y., Zhang D., Zhang D., Best energy route discovery method with the requirement of QoS bandwidth satisfied for wireless sensor networks, Chinese Journal of Sensors and Actuators, 19, 6, pp. 2754-2759, (2006)
  • [10] (2005)