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Practical Design of RC Approximants of Constant Phase Elements and Their Implementation in Fractional-Order PID Regulators Using CMOS Voltage Differencing Current Conveyors

机译:恒定相位元件RC近似值的实用设计及其在分数阶PID调节器中使用CMOS电压差动电流传输器的实现

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摘要

This paper brings a practical and straightforward view on the design of circuit elements described by fractional-order dynamics known as the constant phase element (CPE) and their implementation in a novel structure of a PID (or PID in some literature) regulator based on fabricated CMOS voltage differencing current conveyors. Comparison of presented topology with known solutions indicates significant improvements regarding overall simplification, simpler electronic controllability of time constants, and having all passive elements in grounded form. Step-by-step design of the CPE as well as the PID regulator is supported by experiments with active devices fabricated using the C07 I2T100 0.7m CMOS process (ON Semiconductor). Laboratory tests in frequency and time domain confirm the correct operation of the designed application and the accuracy of the derived results in comparison with the theoretical expectations.
机译:本文对由分数阶动力学描述的电路元件的设计(称为恒相元件(CPE))及其在基于制造的PID(某些文献中为PID)调节器的新型结构中的实现提供了实用而直接的见解。 CMOS压差电流传送器。提出的拓扑与已知解决方案的比较表明,在总体简化,时间常数的电子可控制性更简单以及所有无源元件都接地的情况下,存在重大改进。通过使用C07 I2T100 0.7m CMOS工艺(ON Semiconductor)制造的有源器件进行的实验,可以支持CPE和PID调节器的逐步设计。在频域和时域的实验室测试证实了设计应用的正确运行以及与理论预期相比得出的结果的准确性。

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