无线传感器与执行器网络(WSAN)系统中室温数字PI控制器的设计

B. Sugiarto, Elan Djaelani
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引用次数: 1

摘要

在无线传感器和执行器网络(WSAN)系统中,传感器节点除了监测被测参数外,还必须具有打开执行器的功能,以便移动或控制设备。通过附加功能对执行器进行控制,使WSAN系统具有闭环系统的形式。本文提出了一种将传感器节点和执行器节点合并为一个节点的无线局域网系统。这对于处理对监测结果有快速响应时间而无需等待来自中央站点的命令的某些情况很有用。该WSAN配置是一个闭环系统,因此需要一个数字控制器来控制执行器以实现稳定性。我们提出了一个数字比例积分(PI)作为控制器来克服这个闭环系统,最大超调标准为5%,稳定时间标准为5秒。然后利用等根特征法从极点出发,确定PI常数,从而得到输出系统响应。结果表明,数字PI控制器可以产生预期的输出响应,通过陪审团测试,可以看出系统的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of A digital PI controller for room temperature on Wireless Sensor and Actuator Network (WSAN) system
In the Wireless Sensor and Actuator Network (WSAN) system, a sensor node must have the function to turn on the actuator in order to move or control an equipment besides monitoring the measured parameter. With the addition function to control the actuator, the WSAN system will have a form of closed loop system. This paper propose a WSAN system in which the sensor nodes and actuator nodes are combined into a single node. It is useful to handle some cases that have a fast response time of monitoring results without waiting for the order from the central station. This WSAN configuration is a closed loop system so it needs a digital controller for controlling the actuator to achieve stability. We propose a digital Proportional Integral (PI) as a controller to overcome this closed loop system with 5% for the maximum overshoot criteria and 5 second for settling time criteria. By using the equality root characteristics method from the poles, then the PI constant can be determined in order to obtain an output system response. The result showed that the digital PI controller can produce the desired output response and through the Jury test, the stability of the system can be seen.
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