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INTELLIGENT 2-DOF PID CONTROL FOR THERMAL POWER PLANT USING IMMUNE BASED MULTIOBJECTIVE

机译:基于免疫多目标的火电厂智能2自由度PID控制

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In the thermal power plant, the main steam temperature is typically regulated by the fuel flow rate and the spray flow rate, and the reheater steam temperature is regulated by the gas recirculation flow rate. However, Strictly maintaining the steam temperature can be difficult due to heating value variation to the fuel source, time delay changes in the main steam temperature, the change of the dynamic characteristics in the reheater. Up to the present time, PID Controller has been used to operate this system. However, it is very difficult to achieve an optimal PID gain with no experience, since the gain of the PID controller has to be manually tuned by trial and error. This paper focuses on tuning of the 2-DOF PID Controller on the DCS for steam temperature control using immune based multiobjective approach. The stable range of a 2-DOF parameter for only this system could be found for the start-up procedure and this parameter could be used for the tuning problem. Therefore tuning technique of multiobjective based on immune network algorithms in this paper can be used effectively in tuning 2-DOF PID controllers.
机译:在火力发电厂中,主要蒸汽温度通常由燃料流量和喷雾流量调节,而再热器蒸汽温度由气体再循环流量调节。然而,由于燃料源的热值变化,主蒸汽温度的时间延迟变化,再热器中动态特性的变化,严格保持蒸汽温度可能是困难的。到目前为止,PID控制器已用于操作系统。但是,没有经验就很难获得最佳的PID增益,因为PID控制器的增益必须通过反复试验手动进行调整。本文着重在DCS上使用基于免疫的多目标方法对2-DOF PID控制器进行调节,以进行蒸汽温度控制。对于启动过程,只能找到该系统的2-DOF参数的稳定范围,并且该参数可以用于调整问题。因此,本文基于免疫网络算法的多目标调整技术可以有效地用于2-DOF PID控制器的调整。

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