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基于半导体激光器的Tornambe控制算法研究

Research on Tornambe control algorithm based on semiconductor laser

  • 摘要: 为了给热电偶时间常数测试中提供更加准确的阶跃温升信号,优化控制效果,提高热电偶时间常数测量的准确性,采用Tornambe控制器来反馈控制半导体激光器的输出功率,在MATLAB下的Simulink模块中实现整个系统的搭建,并对系统进行同一输入信号下的仿真研究,通过实验来比较2阶Tornambe控制器与比例-积分-微分(PID)控制在系统运行过程中的控制效果。结果表明,采用PID控制器测得CO1-K型热电偶的时间常数为456.2ms,而采用Tornambe控制器测得的热电偶时间常数为284.6ms。2阶Tornambe控制器能够有效缩短热电偶达到平衡温度的时间,且在控制器结构参量整定上也更加简便,具有较强的实用价值。

     

    Abstract: In order to provide more accurate step temperature rise signal in thermocouple time constant testing, optimize the control effect, and improve the accuracy of thermocouple time constant measurement, Tornambe controller was used to feedback control the output power of semiconductor laser. The system was constructed in the Matlab Simulink module, and the simulation was carried out under the same input signal. The control effects of the second-order Tornambe controller and the proportional-integral-differential (PID) were compared in the running process of system. The results show that the time constant of CO1-K thermocouple measured by PID controller is 456.2ms, while that measured by Tornambe controller is 284.6ms. The second-order Tornambe controller can effectively shorten the time of the thermocouple temperature balance. Moreover, it is more convenient to set the parameters of the controller structure, which has strong practical value.

     

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