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The Temperature Control of Blackbody Radiation Source Based on IMC-PID

机译:基于IMC-PID的黑体辐射源温度控制

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With the rapid development of radiation temperature measurement technology in recent decades, blackbody radiation source plays an increasingly important role in the field of temperature measurement. A large number of experimental data show that not only it has the characteristic of typical nonlinearity, but also the system has time delay and large inertia in the process of heating and cooling. In industry, most blackbody radiation source temperature control adopts traditional PID control method, but because of its large overshoot and long adjustment time, the temperature control efficiency is greatly reduced. In this paper, IMC-PID is introduced to improve the dynamic performance of blackbody radiation source. Firstly, both the internal working principle of blackbody radiation source and the establishment process of its internal mathematical model are described. Then the control principle and method of IMCPID is established in this system. Finally, MATLAB/SIMULINK platform is used to compare the conventional PID algorithm with IMC-PID algorithm. The simulation results show that IMC-PID shortens plant stable times and it is without overshoot. what's more, the results also indicated that the control method of IMC-PID improves the dynamic performance of the system and has a strong prospect for practical application.
机译:随着近几十年来辐射温度测量技术的飞速发展,黑体辐射源在温度测量领域中发挥着越来越重要的作用。大量实验数据表明,该系统不仅具有典型的非线性特性,而且在加热和冷却过程中具有时滞和较大的惯性。在工业上,大多数黑体辐射源温度控制采用传统的PID控制方法,但由于过冲大,调整时间长,大大降低了温度控制效率。本文介绍了IMC-PID,以改善黑体辐射源的动态性能。首先,描述了黑体辐射源的内部工作原理及其内部数学模型的建立过程。然后在该系统中建立了IMCPID的控制原理和方法。最后,使用MATLAB / SIMULINK平台将常规PID算法与IMC-PID算法进行比较。仿真结果表明,IMC-PID可以缩短设备稳定时间,并且不会出现过冲现象。此外,结果还表明,IMC-PID的控制方法提高了系统的动态性能,具有广阔的实际应用前景。

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