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Tri-state current source inverter with improved dynamic performance

机译:具有改善的动态性能的三态电流源逆变器

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Traditional dc-ac current source inverter (CSI) has a right-half-plane (RHP) zero in its control-to-output transfer function. This RHP zero causes the inverter output to fall before rising when a step increase in command reference is required (commonly known as non-minimum-phase effect). To achieve a better dynamic response, this paper proposes the design of a tri-state CSI using only an additional semiconductor switch for introducing unique free-wheeling states to the traditional six active and three null states of a CSI. With the free-wheeling states inserted appropriately within the inverter state sequence, the inductive boosting and discharging intervals can be decoupled, allowing the RHP zero to be eliminated with only minor circuit modifications (high level control schemes like predictive and multi-loop voltage/current control remain unchanged). The designed inverter can be controlled using an appropriately formulated digital pulse-width modulation algorithm, which can conveniently be implemented using a digital signal processor with an on-chip carrier-based modulator and an external digital programmable logic device. The resulting inverter is tested by simulation and experimentally using a laboratory prototype for demonstrating its improved dynamic performance with no commutation difficulties introduced.
机译:传统的dc-ac电流源逆变器(CSI)在其控制到输出的传递函数中具有右半平面(RHP)为零。当需要逐步增加命令参考值时(通常称为非最小相位效应),该RHP零会导致逆变器输出在上升之前下降。为了获得更好的动态响应,本文提出了一种三态CSI的设计,该设计仅使用一个额外的半导体开关将独特的续流状态引入CSI的传统六个活动状态和三个零状态。通过将续流状态适当地插入逆变器状态序列中,可以消除感性的升压和放电间隔,从而仅需很小的电路修改即可消除RHP零(高级控制方案,例如预测和多回路电压/电流)控件保持不变)。可以使用适当制定的数字脉宽调制算法来控制设计的逆变器,该算法可以方便地使用具有片上基于载波的调制器和外部数字可编程逻辑器件的数字信号处理器来实现。最终的逆变器通过仿真进行了测试,并使用实验室原型进行了实验,以证明其改进的动态性能而没有引入换向困难。

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