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A graphical technique of controller synthesis with desired closed-loop specifications

机译:具有期望闭环规格的控制器合成的图解技术

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A graphical technique for the design of PI/PID controllers to achieve desired closed-loop frequency-domain as well as time-domain specifications simultaneously, is proposed in this paper. Both frequency and time-domain performance measures such as gain margin, phase margin, maximum percentage overshoot and settling time can be specified before controller tuning. Simplicity of the technique is an added advantage. The concept of stability boundary locus along with gain phase margin tester (GPMT) is used to compute constant gain and phase margin boundaries in the controller parameters plane. Common area of constant gain and phase margin boundaries within the all stability region is the desired gain and phase margin region (DGPMR). A novel graphical technique using the direct synthesis approach is proposed to obtain the desired closed-loop time response. Curves corresponding to the time-domain performance measures (maximum percentage overshoot and settling time) are drawn in the controller parameters plane. Intersection of the above-said curves within the DGPMR gives the desired controller parameters. Simulation results for a nonminimum-phase third order process and hardware experimental results for a DC-DC boost converter with comparison are given to show the effectiveness of the proposed tuning strategy.
机译:本文提出了一种用于实现PI / PID控制器的图形技术,以实现所需的闭环频域以及时域规格。在控制器调谐之前,可以指定频率和时域性能测量,如增益裕度,相距,最大百分比过冲和稳定时间。技术的简单性是一个额外的优势。稳定边界轨迹以及增益相位裕度测试仪(GPMT)的概念用于计算控制器参数平面中的恒定增益和相位裕度边界。所有稳定区域内的恒定增益和相位裕度边界的公共区域是所需的增益和相位裕度区域(DGPMR)。提出了一种使用直接合成方法的图形技术,得到所需的闭环时间响应。对应于时域性能测量的曲线(最大百分比过冲和稳定时间)在控制器参数平面中绘制。在DGPMR内的上述曲线的交叉点给出了所需的控制器参数。仿真结果对于具有比较的DC-DC升压转换器的非最小相三阶工艺和硬件实验结果,以显示提出的调谐策略的有效性。

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