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Genetic algorithm based Neuro Fuzzy tuning of PID controller for a nonlinear temperature water bath with feedforward control

机译:基于遗传算法基于PID控制器的Neuro模糊调谐,用于使用前馈控制的非线性温度水浴

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Temperature control is an important task in the modern industries like chemical, pharmaceutical etc. considering the real time load and set point variations in their plants. The present work gives experimental results for the control of a constant level stirred nonlinear temperature water bath with continuous inlet and outlet flow under load and set point disturbances. When the inlet temperature becomes comparable to the desired set point their effect becomes that much prominent in terms of rise time, overshoot and short term stability. In the present system, the level plays an important factor in the heat distribution. The slight variation in the inlet flow rate disturbs the system by varying its level assumed to be constant. Also the fluctuation in the mains voltage plays a major role in the short term stability of the system. In the work presented here, all these three disturbances have been considered using feedforward control. A real time PID controller taken with a fixed bias voltage has been used and tuned by Genetic Algorithm based Neuro Fuzzy Controller (GANFC) developed on the platform of Visual BASIC 6.0. The PID controller was designed and developed based on 89C51 microcontroller around MK-70 MLW bath with 10Litre capacity. A 1500W heater was operated between 0–240Vac with 256 different firing angles for the Triac. Fluke Hydra 2625A Data acquisition unit has been used for acquiring the data. The load disturbances have been created by varying inlet flow rate from 100m1/min to 500m1/min at 28°C for a set point of 40°C. Also the set point disturbance was induced by changing the set point from 35.0°C to 45.0°C. The constant level is maintained by keeping the outflow rate same as the inflow rate. Results for the modified GANFC, including feedforward control, were compared with GANFC controller without feedforward control.
机译:温度控制是现代行业中的重要任务,如化学,制药等。考虑到其植物的实时负荷和设定点变化。本作者给出了在负载和设定点干扰下的连续入口和出口流动控制恒定水平搅拌非线性水浴的实验结果。当入口温度与所需设定点相当时,它们的效果在上升时间,过冲和短期稳定性方面变得非常突出。在本系统中,水平在热分布中起着重要因素。入口流速的轻微变化通过改变其恒定的水平来扰乱系统。同样在系统的短期稳定性中,电源电压的波动也在发挥着重要作用。在此处呈现的工作中,所有这三种干扰都已考虑使用前馈控制。通过基于Visual Basic 6.0平台开发的基于遗传算法的基于遗传算法的基于遗传算法的神经模糊控制器(GANFC)进行了实时PID控制器。 PID控制器是基于89C51微控制器的设计和开发,周围的MK-70 MLW浴缸,具有10Litre容量。在0-240VAC之间运行1500W加热器,用于三端双向可控硅的256个不同的烧制角度。 Fluke Hydra 2625A数据采集单元已被用于获取数据。通过在28℃下从100m1 / min到500m1 / min的不同入口流速来产生负载扰动,以设定40°C的设定点。此外,通过将设定点从35.0°C变为45.0°C来诱导设定点干扰。通过保持与流入速率相同的流出速率来保持恒定水平。与没有前馈控制的GANFC控制器相比,改进的GANFC(包括前馈控制)的结果。

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