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Optimal sensor and actuator location for unstable systems

机译:不稳定系统的最佳传感器和执行器位置

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Accurate and reliable process measurements play a key role in the success of process control. In addition to selecting the instrumentation hardware, it is important to determine which variables should be measured in a process. Therefore it is important to study techniques for placing sensors on the processes. Dually the problem of placing actuators on the processes is equally important. In this paper, the problem of determining optimal sensor and actuator locations for the linear systems is addressed. The problem of the sensor locations is viewed as the problem of maximizing the output energy generated by a given state and for the actuator locations is viewed as the problem of minimizing the input energy required to reach a given state. Such design problems occur in many applications, and therefore have been studied extensively. Unfortunately, the results in this context, which have been proposed so far, only support stable systems. However, in industrial practices it is often the case that the system, which is needed to be controlled, is not stable. The method which is proposed in this paper is a general method in the sense that it supports both stable and unstable systems. The technique is successfully used for determining the optimal sensor locations of the linearized Continuous Stirred-Tank Reactor unstable model.
机译:准确而可靠的过程测量在过程控制的成功中起着关键作用。除了选择仪器硬件以外,确定在过程中应该测量哪些变量也很重要。因此,研究在工艺上放置传感器的技术很重要。双重地,在过程上放置致动器的问题同样重要。在本文中,解决了为线性系统确定最佳传感器和执行器位置的问题。传感器位置的问题被视为使给定状态产生的输出能量最大化的问题,而致动器位置的问题被视为使达到给定状态所需的输入能量最小化的问题。这种设计问题出现在许多应用中,因此已经被广泛研究。不幸的是,到目前为止已经提出的这种结果仅支持稳定的系统。但是,在工业实践中,经常需要控制的系统不稳定。本文提出的方法在支持稳定和不稳定系统的意义上是一种通用方法。该技术已成功用于确定线性化连续搅拌釜反应堆不稳定模型的最佳传感器位置。

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