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An Estimation-Based Solution to Weak-Grid-Induced Small-Signal Stability Problems of Power Converters

机译:基于估计的弱电网诱导的功率转换器的小信号稳定性问题的解决方案

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摘要

The large-scale deployment of grid-tied power electronic converters in renewable generation, electric motor drives, and energy storage systems speeds up the global energy transition. However, the stability problems faced by power converters in weak grids, which feature large and variable grid impedances, stand as a serious challenge that has puzzled the power electronic community for more than 15 years. Existing solutions to weak-grid-induced small-signal stability problems modify system and/or control parameters so that stable operation is achieved under a certain condition. However, such solutions are problem and application-specific. Therefore, the solutions can hardly be generalized to various operating conditions or stability problems. As such, this article proposes an estimation-based solution that targets multiple weak-grid-induced small-signal stability problems, particularly for converters with grid-supportive services. The essence of the proposed solution lies in the accurate estimation of real grid information rather than the point-of-common-coupling information. For implementation, Kalman filters serve as an estimator. Subsequently, the estimated information is used to design controllers, such as voltage droop, that allow for stable power conversion. Finally, simulation and experimental results validate the effectiveness and generality of the proposed solution.
机译:在可再生生成,电动机驱动器和能量存储系统中,电网电源电子转换器的大规模部署加速了全球能源转换。然而,功能转换器面临的稳定性问题弱网格,具有大型和可变的电网阻抗,这是一个严重的挑战,这已经困扰了电力电子社区超过15年。现有解决方案弱电网诱导的小信号稳定性问题修改系统和/或控制参数,以便在一定条件下实现稳定的操作。但是,这种解决方案是问题和特定于应用的。因此,解决方案几乎不能推广到各种操作条件或稳定性问题。因此,本文提出了一种基于估计的解决方案,其针对多个弱电网诱导的小信号稳定性问题,特别是对于具有网格支持服务的转换器。所提出的解决方案的精髓在于准确地估计真实网格信息,而不是共同耦合信息。对于实施,卡尔曼过滤器作为估算器。随后,估计的信息用于设计控制器,例如电压下垂,允许稳定的功率转换。最后,仿真和实验结果验证了所提出的解决方案的有效性和一般性。

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