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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Internal Model Power Synchronization Control of a PV-Based Voltage-Source Converter in Weak-Grid and Islanded Conditions
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Internal Model Power Synchronization Control of a PV-Based Voltage-Source Converter in Weak-Grid and Islanded Conditions

机译:弱电网和岛状条件下PV基电压源转换器内部模型电源同步控制

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摘要

The power synchronization control strategy for grid-connected voltage-source converters (VSCs) provides an operation similar to synchronous machines. It is able to avoid the instability caused by a standard phase-locked loop in integration into weak grids. However, the non-minimum phase phenomenon in the developed dynamics places a fundamental limitation on the ac system's stability. This paper proposes a one-degree-of-freedom internal-model-based control methodology. It introduces a control approach to incorporate the dynamics of the system's nominal model in the control structure. It also rectifies the unwanted effects of the right-half plane zeros. The explicit incorporation of the model enhances the tracking capabilities of the controller in a PV-based VSC. Besides, this article shows that a single-loop of control will suffice to regulate active and reactive power. Validating results are generated via a hardware-in-the-loop system based on a Xilinx Zynq-7000 SoC field-programmable gate array (FPGA). Furthermore, experimental results are conducted for low-power prototyping to examine the satisfactory performance of the proposed control architecture.
机译:电网连接电压源转换器(VSC)的电源同步控制策略提供了类似于同步机的操作。它能够避免因标准阶段锁定环路集成到弱网格中引起的不稳定性。然而,发达动态中的非最小相位现象对AC系统的稳定性施加了根本的限制。本文提出了一种自由度基于内部模型的控制方法。它介绍了一种控制方法,将系统标称模型的动态纳入控制结构中。它还整流了右半平面零的不需要的效果。模型的显式融合增强了基于PV的VSC中控制器的跟踪功能。此外,本文表明,单环路控制将足以调节主动和无功功率。通过基于Xilinx Zynq-7000 SoC现场可编程门阵列(FPGA)的硬件循环系统生成验证结果。此外,对低功耗原型进行了实验结果,以检查所提出的控制架构的令人满意的性能。

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