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Electronically reconfigurable two-path fractional-order PI/D controller employing constant phase blocks based on bilinear segments using CMOS modified current differencing unit

机译:基于使用CMOS修改的电流差分单元的电子可重新配置的双路分数阶PI / D控制器采用基于双线性段的恒定相块

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This work introduces a versatile type of electronically controllable bilinear transfer segments, i.e. two ports allowing independent electronic control of zero and pole of transfer function, based on modified current differencing unit (MCDU) active element. These proposed bilinear transfer segments serve for construction of fractional-order constant phase block (phi(alpha) = +/- 15 degrees and +/- 36 degrees, i.e. orders alpha = +/- 1/6 and +/- 2/5, tested in our case) representing electronically controllable integrator or differentiator (in dependence on current demand) as a part of novel two-path system of the fractional-order proportional-integral or derivative (FOPI/D) controller. The example of design procedure employs four bilinear transfer segments, electronically controllable proportional path and summing stage. Cadence IC6 Spectre simulation results (TSMC 0.18 mu m CMOS process) in both frequency and time domain are performed in order to confirm expected behavior of the system. An application of the proposed FOPI controller in control of linear voltage regulator is also demonstrated and performance improvements of the proposed design are discussed.
机译:这项工作引入了一种多功能类型的电子可控双线性转移段,即,基于改进的电流差分单元(MCDU)有源元素,两个端口允许独立电子控制零和极点的磁极控制。这些提出的双线性转移段用于构建分数阶常数相块(PHI(alpha)= +/- 15度和+/- 36度,即订单alpha = +/- 1/6和+/- 2/5在我们的情况下测试,在我们的情况下代表电子可控积分器或微分器(根据当前需求而依赖于当前需求)作为分数级比例积分或衍生物(FoPI / D)控制器的新型双路系统的一部分。设计过程的示例采用四个双线性转移段,电子可控比例路径和求和阶段。频率和时域的Cadence IC6幽灵仿真结果(TSMC 0.18 mu M CMOS过程)是为了确认系统的预期行为。还证明了所提出的FoPI控制器控制线性稳压器的应用,并讨论了所提出的设计的性能改进。

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