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首页> 外文期刊>Journal of Control Engineering and Applied Informatics >Heat transport modelling and adaptive model predictive temperature control of the direct current plasma nitriding process performed in a linear non-isotherm plasma reactor
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Heat transport modelling and adaptive model predictive temperature control of the direct current plasma nitriding process performed in a linear non-isotherm plasma reactor

机译:线性非等温等离子体反应器中直流等离子体氮化过程的热传递模型和自适应模型预测温度控制

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The paper focuses on the exact modelling and the model-based predictive temperature control of the direct current plasma nitriding (DCPN) system. The DCPN process is a well-known industrial technology, however the mathematical modelling of the process from the control point of view is not developed, thus the aim of the paper is to develop a systematic modelling procedure for the heat transport and pressure dynamics. The heat transport modelling was performed taking into account the heat transported by the gas-flow, the conducted heat and the radiated heat. The emissivity of the treated part was estimated and the temperature dependence of the emissivity was modelled. The pressure dynamics was modelled and validated. The obtained model for the temperature dynamics is highly nonlinear, mainly due to the heat-radiation, and the model contains variable parameters like the mass of the treated parts, thus an adaptive model predictive controller (A-MPC) is proposed for an accurate temperature control. The performance of the A-MPC is compared with the classical PID controller, proving the benefits of the model-based control.
机译:本文着重研究直流等离子体氮化(DCPN)系统的精确建模和基于模型的预测温度控制。 DCPN工艺是一种众所周知的工业技术,但是从控制的角度来看,该工艺的数学建模尚未开发,因此,本文的目的是开发一种用于传热和压力动力学的系统建模程序。考虑到由气流传输的热量,传导的热量和辐射的热量,进行了热传输建模。估计了被处理部件的发射率,并模拟了发射率的温度依赖性。对压力动力学进行建模和验证。所获得的温度动态模型是高度非线性的,主要是由于热辐射所致,并且该模型包含可变参数,例如被处理零件的质量,因此,提出了一种用于精确温度的自适应模型预测控制器(A-MPC)控制。将A-MPC的性能与经典PID控制器进行了比较,证明了基于模型的控制的优势。

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