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Neuro-PID Control of an Industrial Furnace Temperature

机译:Neuro-PID控制工业炉温度

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In this paper temperature control of a batch tank in a glass factory is investigated. In a turbogenerator system a large amount of energy is wasted as thermal energy at the exhaust. Therefore, use of Combined Heat and Power (CHP) systems is highly under attention. In this work a turbo-generator system and a glass factory are considered as a CHP system. Since the hot exhaust gas has emissions which have a bad effect on the quality of molten glass, therefore, the hot exhaust must be used indirectly in melting glass process, so a rotary regenerator is proposed to transfer gas turbine exhaust heat to the inlet air of the glass melting furnace. It is assumed that turbo-generator is operated at full load condition and gas turbine exhaust is directed into rotary regenerator to transfer gas turbine exhaust heat to inlet air of glass furnace. By controlling the speed of the rotary regenerator, the amount of exchanged energy is controlled. An adaptive control strategy, namely, Neuro-PID controller is proposed in this paper. The simulation results depict the capabilities of the proposed controller in different working states.
机译:在该纸张厂的温度控制中,调查了玻璃厂中的批量控制。在涡轮机电器系统中,大量能量被浪费为排气时的热能。因此,使用组合的热量和功率(CHP)系统受到严重的注意。在这项工作中,涡轮发电机系统和玻璃厂被认为是CHP系统。由于热废气具有对熔融玻璃质量产生不良影响的排放,因此,必须在熔化玻璃工艺中间接使用热排气,因此提出旋转再生器以将燃气涡轮机排气热传递到入口空气中的燃气涡轮机排气玻璃熔炉。假设涡轮发电机在满载状态下操作,并且燃气轮机排气被引导到旋转再生器中,以将燃气涡轮机排气热传递到玻璃炉的入口空气。通过控制旋转再生器的速度,控制交换能量的量。本文提出了一种自适应控制策略,即神经PID控制器。仿真结果描绘了不同工作状态所提出的控制器的能力。

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