标题: 以模糊逻辑设计及DSP实现之气体流量控制器
Implementation of a Fuzzy Logic-based Mass Flow Controller Using DSP
作者: 杨文江
Wen-Jiang Yang
郑木火
Mu-Huo Cheng
电控工程研究所
关键字: 数位讯号处理;系统判别;模糊逻辑;流量控制器;PID控制;超越量;主极点决定法;MFC;System identification;Fuzzy logic;DSP;PID control;Overshoot;Dominant pole positioning
公开日期: 1998
摘要: 本论文提出一个以TMS320C50数位讯号处理器(DSP)实现使用系统判别和模糊逻辑原理来设计之气体流量控制器(MFC)。在目前的流量控制器中,不论是数位式或类比式,大都是应用PID来控制,但若PID控制器的参数固定时,当有大量的气体变化时,很容易产生超越量(Overshoot),可能造成流量控制器阀门之损害。因此,我们应用着名的Steiglitz-MacBride法来判断在不同压力下、不同气体流量设定值的流量系统受控体模型。利用此方法得到的系统参数,设计以主极点决定法为基础的比例-积分控制器(PI-Controller)。接着引进模糊逻辑的观念,取代PI控制。由于模糊控制可以根据受控体的状态改变来自动调整其控制参数,因此可以结合同一压力下、不同流量设定值的各个PI控制参数,成为一个新的流量控制器,并且避免超越量的发生。我们使用TMS320C50来实作此一模糊控制器与验证其性能及优点。本论文将显示令人满意的实验结果。
In this paper, we introduces a new mass flow controller using the technique of system identification and fuzzy logic. We realize it by the digital signal processor(DSP),TMS320C50. Currently, most digital and analog mass flow controllers use PID control technique. However, if the parameters of PID controller are fixed, the overshoot problem during a large change of mass flow could damage the valve of mass flow controller. Thus, we apply the well-known Steiglitz MacBride method for identifying the plant model under different pressure and flow desire value. The resulting system coefficients are used to design PI controllers based on the dominant pole positioning procedure. Then we employ the fuzzy logic to replace PI control. Since the parameters of fuzzy controller can be automatically tuned according to the states of system plant, it can associate with effects of each PI controller and form a new mass flow controller so that the overshoot can be avoided. We implement the fuzzy logic-based mass flow controller by a TMS320C50 and verify its performance and benefits. The experimental results are satisfactory and shown in this paper.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT870591103
http://hdl.handle.net/11536/64988
显示于类别:Thesis