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INTELLIGENT SERVOMECHANISM CONTROL

机译:智能伺服控制

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In the pursue of providing high quality output regulation and the minimization of energy costs for industrial plants, it has become important to develop high performance servomechanism controllers. Under nominal operating conditions, such controllers are generally found to be satisfactory. However, severe limitations in performance in such systems often occur when large unanticipated structural controllers which have this property as being 'intelligent'. This paper gives an overview of a class of intelligent servomechanism controllers, which is based on the results of [Miller, Davison (1989)], [Chang, Davison (1994a)] (Sec. 7.3). These controllers contain a switching device which applies a sequence of LTI controllers to the system, and which after a finite time (i.e. 'learning time'), switching ceases, resulting in the system being controlled by a LTI controller; the parameters of this LTI controller can then be adjusted by on-line tuning to minimize a performance index for the system.
机译:在追求为工业工厂提供高质量的输出调节和最小化能源成本的过程中,开发高性能伺服机械控制器已经变得很重要。在正常的工作条件下,通常认为这种控制器是令人满意的。但是,当大型无法预期的结构控制器具有“智能”特性时,通常会在此类系统中出现严重的性能限制。本文基于[Miller,Davison(1989)],[Chang,Davison(1994a)](第7.3节)的结果,对一类智能伺服机械控制器进行了概述。这些控制器包含一个开关设备,该开关设备将一系列LTI控制器应用于系统,并且在有限的时间(即“学习时间”)之后,开关停止,导致系统由LTI控制器控制;然后可以通过在线调整来调整此LTI控制器的参数,以最大程度地降低系统的性能指标。

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