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Inducverters: PLL-Less Converters With Auto-Synchronization and Emulated Inertia Capability

机译:感应器:具有自动同步和仿真惯性功能的PLL更少转换器

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Inspired by induction machines working principles, this paper presents the idea of phase-locked-loop-less (PLL-less) operation of grid-connected voltage source converters (VSCs) under new concept of inducverter. The proposed controller eliminates the need for a dedicated synchronization process and the related PLL, and therefore it offers a simpler and more reliable control strategy compared to the conventional methods. In addition, it represents an improved performance, as it provides real and true auto-start and auto-synchronization with a grid without the need for grid voltage information. A current damping/synchronization unit enables grid auto-synchronization by using local current information and can track grid voltage frequency, angle, and amplitude variations while feeding constant amount of power, which is of high-interest in frequency varying grids and also in the case of grid voltage angle jump. Another advantage of the inducverter is that it introduces virtual inertia to the grid to regulate frequency, which enhances frequency dynamics of smart grids. Beside the current synchronization unit, the proposed strategy has a single-loop controller core with control over both power and current, which is implemented in a hybrid and frame using a virtual adaptive lead or lag impedance. The controller also offers stable and high-performance synchronization and operation under unbalanced and/or distorted grid conditions. The work beside synchronous current converters gives a bird’s eye view to research in the new area of PLL-less and virtual inertia-based operation of VSCs and fulfill a unified set of controllers for the smart grid integration. Simulation, hardware-in-loop, and experimental results are presented to validate effectiveness of the controller.
机译:受到感应电机工作原理的启发,本文提出了在感应器新概念下并网电压源转换器(VSC)的无锁相环(less-PLL)操作的想法。所提出的控制器消除了对专用同步过程和相关PLL的需求,因此与传统方法相比,它提供了一种更简单,更可靠的控制策略。此外,它还代表了一种改进的性能,因为它提供了与电网的真实和真实的自动启动和自动同步,而无需电网电压信息。电流阻尼/同步单元通过使用本地电流信息实现电网自动同步,并可以在馈入恒定功率的同时跟踪电网电压频率,角度和幅度变化,这在变频电网中以及在这种情况下都非常重要电网电压角跳变。感应器的另一个优点是它将虚拟惯性引入电网以调节频率,从而增强了智能电网的频率动态。除了当前同步单元之外,所提出的策略还具有可控制功率和电流的单环控制器内核,该内核使用虚拟自适应超前或滞后阻抗在混合和帧中实现。该控制器还可以在不平衡和/或失真的电网条件下提供稳定,高性能的同步和操作。同步电流转换器旁边的工作为研究VSC的无PLL和基于虚拟惯性的新领域的研究提供了鸟瞰图,并为智能电网集成实现了一套统一的控制器。仿真,硬件在环测试和实验结果均经过验证,以验证控制器的有效性。

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