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Input-output linearization and zero-dynamics control of three-phase AC/DC voltage-source converters

机译:三相AC / DC电压源转换器的输入输出线性化和零动力学控制

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Nonlinear differential-geometric techniques are proposed for the design of a feedback controller for three-phase voltage-source pulsewidth modulation (PWM) AC/DC boost converters under a cascade control structure. The input-output linearizability of the system modeled in d-q synchronous reference frames is examined. The results lead to a decoupled d-q current control scheme. For the internal DC-bus voltage dynamics (zero dynamics), by considering the d-axis current command as control input and using a square transform on DC-bus voltage, it is shown that this remaining system contains an input memoryless nonlinearity of conic sector type and satisfies the conditions for a Lur'e plant. This suggests a new outer-loop control strategy to control the square of the DC output voltage, rather than DC output voltage itself, utilizing a simple proportional plus integral (PI) controller cascaded to the d-axis current loop. Since most results do not consider the control of zero dynamics, the strategy for the control of zero dynamics via cascade control structure may provide valuable insight for the design of input-output linearized systems in which zero dynamics contain some desired control variables. The absolute tracking concept for Lur'e plants is introduced to prove the global tracking capability with zero steady-state error of the voltage loop. The controlled PWM AC/DC converter has the features of global stability, fast (exponential) tracking of DC-bus voltage command with zero steady-state error, asymptotic rejection of load disturbance, robustness against parameter uncertainties and decoupled dynamical responses between d and q current loops. Also, measurement of load current is not required. All these features are confirmed via laboratory experiments on a 1.5 kVA PC-based controlled prototype.
机译:针对级联控制结构下的三相电压源脉宽调制(PWM)AC / DC升压转换器的反馈控制器的设计,提出了非线性差分几何技术。研究了在d-q同步参考帧中建模的系统的输入输出线性化。结果导致解耦的d-q电流控制方案。对于内部DC总线电压动态(零动态),通过将d轴电流命令作为控制输入并对DC总线电压使用平方变换,可以证明该剩余系统包含圆锥形扇区的无输入非线性输入输入并满足Lur'e植物的条件。这暗示了一种新的外环控制策略,该策略使用级联到d轴电流环路的简单比例加积分(PI)控制器来控制DC输出电压的平方,而不是DC输出电压本身。由于大多数结果都没有考虑零动态的控制,因此通过级联控制结构控制零动态的策略可以为零动态包含一些所需控制变量的输入输出线性化系统的设计提供有价值的见解。引入了Lur'e工厂的绝对跟踪概念,以证明零电压回路稳态误差的全局跟踪能力。受控PWM AC / DC转换器具有以下特性:全局稳定性,具有零稳态误差的DC总线电压命令的快速(指数)跟踪,负载扰动的渐近抑制,针对参数不确定性的鲁棒性以及d和q之间解耦的动态响应电流回路。另外,不需要测量负载电流。所有这些功能均通过基于1.5 kVA PC的受控原型的实验室实验得到证实。

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