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A novel classical controller for automatic generation control in thermal and hydrothermal systems

机译:用于热力和水热系统中自动发电控制的新型经典控制器

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This paper presents automatic generation control (AGC) of interconnected two equal area thermal system, two equal area hydrothermal System and five unequal area thermal system. Thermal plants have single reheat turbines with generation rate constraints of 3% per minute. The hydro plant in hydrothermal system has electric governor and has generation rate constraints of 270% per minute for raising generation and 360% per minute for lowering generation. A novel classical controller based on Integral and Double Derivative control is used in AGC and its performance is compared to several other classical controllers such as Integral (I), Proportional-Integral (PI), Integral-Derivative (ID) and Proportional-Integral-Derivative (PID) controllers. Integral squared error (I.S.E) and Bacteria Foraging (BF) techniques are used for optimization. Investigations reveal on comparison that Integral (I), Proportional-Integral (PI), Integral-Derivative (ID) or Proportional-Integral-Derivative (PID) controllers all provide more or less same response where as Integral - Double Derivative (IDD) controller provides much better response. Further, the controller action can be optimally delayed to provide the best dynamic response.
机译:提出了互联的两个相等面积的热力系统,两个相等面积的热力系统和五个不相等面积的热力系统的自动发电控制(AGC)。热电厂拥有单台再热式涡轮机,其发电率限制为每分钟3%。热液系统中的水力发电厂具有电调速器,发电量限制为每分钟270%(增加发电量)和360%(每分钟降低发电量)。在AGC中使用了一种基于积分和双导数控制的新型经典控制器,并将其性能与其他几种经典控制器进行了比较,例如积分(I),比例积分(PI),积分微分(ID)和比例积分-派生(PID)控制器。积分平方误差(I.S.E)和细菌觅食(BF)技术用于优化。比较研究表明,积分(I),比例积分(PI),积分微分(ID)或比例积分微分(PID)控制器都提供与积分-双导数(IDD)控制器几乎相同的响应提供更好的响应。此外,控制器动作可被最佳地延迟以提供最佳的动态响应。

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