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首页> 外文期刊>Research journal of applied science, engineering and technology >Designing a Robust and Adaptive PID Controller for Gas Turbine Connected to the Generator
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Designing a Robust and Adaptive PID Controller for Gas Turbine Connected to the Generator

机译:设计与发电机连接的燃气轮机鲁棒自适应PID控制器

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摘要

Gas turbines are increasingly spread throughout the world to provide mechanical and electrical power in consumer and industrial sections. To ensure an accurate control process temperature of gas turbine with no extortionary operator involvement, a proper controller is required. Load frequency control of gas turbine is also regulates the power flow between different areas while holding the frequency constant. The main idea in this study is to assemble these 2 controllers in a unit work; the area of robust control has grown to be one of the wealthy in terms of algorithms, design techniques, analytical tools and modifications. Several books and papers already exist on the topics of parameter estimation and adaptive control. In The proposed approach, a robust and evolutionary based Proportional, Integral, Derivative (PID) is utilized to control frequency-response and a robust evolutionary based Proportional, Integral (PI) is utilized to control temperature. The evolutionary algorithm is used to make an optimal Proportional-Integral-Derivative (PID) controller Tuning parameters. The new robust PID controller is compared with a normal classic controller (Ziegler-Nichols) designed by the method.
机译:燃气轮机日益遍布全球,以在消费和工业领域提供机械和电力。为了确保准确的控制燃气轮机的过程温度而又不花力气地操作人员,需要一个合适的控制器。燃气轮机的负载频率控制还可以在保持频率恒定的同时调节不同区域之间的功率流。本研究的主要思想是将这两个控制器组装成一个单元。就算法,设计技术,分析工具和修改而言,鲁棒控制领域已成为丰富的领域之一。关于参数估计和自适应控制的主题已经有几本书和论文。在提出的方法中,基于鲁棒和演化的比例,积分,微分(PID)用于控制频率响应,基于鲁棒基于演化的比例,积分(PI)用于控制温度。进化算法用于制定最佳的比例积分微分(PID)控制器调整参数。将新的鲁棒PID控制器与通过该方法设计的常规经典控制器(Ziegler-Nichols)进行了比较。

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