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New network structures of reconfigurable fractional-order PID regulators with DVCC

机译:具有DVCC的可重构分数阶PID调节器的新网络结构

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This brief paper shows design procedure towards new non-integer order proportional-integrative-derivative (PID) regulators with single grounded two-terminal device known as constant phase element (CPE). Proposed concept is based on the modified matrix method of unknown nodal voltages originally invented to analyze linearized lumped circuits. New topologies of PID regulators are obtained by handling with pseudo-admittance matrix prefilled by fixed connection of single differential voltage current conveyor (DVCC). Unique property of designed circuits is orthogonal electronical reconfiguration of the voltage transfer function by using external control quantities; this is achieved thanks to a suitable interconnection of several operational trans-admittance amplifiers (OTA). It is shown by using frequency- and time-domain Oread Pspice circuit simulations that network topologies provided in this manuscript allows smooth closed-loop feedback control dynamics. Limited validity of a passive ladder approximation of CPE together with the parasitic properties of DVCC as well as OTA causes limitations of regulator function; these aspects are theoretically analyzed. Finally, further practical perspectives in area of PID regulation are shortly discussed.
机译:这篇简短的论文介绍了采用具有固定接地元件(CPE)的单接地两端子设备的新型非整数比例积分-微分(PID)调节器的设计程序。提出的概念基于最初为分析线性集总电路而发明的未知节点电压的改进矩阵方法。 PID调节器的新拓扑结构是通过处理伪导纳矩阵来获得的,该伪导纳矩阵由单个差动电压电流传输器(DVCC)的固定连接预先填充。设计电路的独特属性是通过使用外部控制量对电压传递函数进行正交电子重新配置;这要归功于几个运算跨导放大器(OTA)的适当互连。通过使用频域和时域Oread Pspice电路仿真表明,该手稿中提供的网络拓扑结构可实现平滑的闭环反馈控制动态。 CPE的无源梯形逼近的有限有效性以及DVCC和OTA的寄生特性会限制调节器功能;从理论上分析了这些方面。最后,简短讨论了PID调节方面的其他实用观点。

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