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Robustness of damping control implemented by Energy Storage Systems installed in power systems

机译:安装在动力系统中的储能系统实现的阻尼控制的鲁棒性

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An Energy Storage System (ESS) installed in a power system can effectively damp power system oscillations through controlling exchange of either active or reactive power between the ESS and power system. This paper investigates the robustness of damping control implemented by the ESS to the variations of power system operating conditions. It proposes a new analytical method based on the well-known equal-area criterion and small-signal stability analysis. By using the proposed method, it is concluded in the paper that damping control implemented by the ESS through controlling its active power exchange with the power system is robust to the changes of power system operating conditions. While if the ESS damping control is realized by controlling its reactive power exchange with the power system, effectiveness of damping control changes with variations of power system operating condition. In the paper, an example of power system installed with a battery ESS (BESS) is presented. Simulation results confirm the analytical conclusions made in the paper about the robustness of ESS damping control. Laboratory experiment of a physical power system installed with a 35 kJ/7 kW Superconducting Magnetic Energy Storage (SMES) was carried out to evaluate theoretical study. Results are given in the paper, which demonstrate that effectiveness of SMES damping control realized through regulating active power is robust to changes of load conditions of the physical power system.
机译:安装在电力系统中的储能系统(ESS)可通过控制ESS与电力系统之间的有功或无功交换来有效地抑制电力系统的振荡。本文研究了ESS实施的阻尼控制对电力系统运行条件变化的鲁棒性。提出了一种基于众所周知的等面积准则和小信号稳定性分析的新分析方法。通过使用所提出的方法,论文得出结论,由ESS通过控制其与电力系统的有功功率交换来实现的阻尼控制对于电力系统工作条件的变化是鲁棒的。虽然如果通过控制其与电力系统的无功交换来实现ESS阻尼控制,则阻尼控制的有效性会随电力系统运行条件的变化而变化。在本文中,给出了一个安装了电池ESS(BESS)的电源系统的示例。仿真结果证实了本文关于ESS阻尼控制的鲁棒性的分析结论。进行了安装有35 kJ / 7 kW超导磁储能(SMES)的物理电源系统的实验室实验,以评估理论研究。本文给出的结果表明,通过调节有功功率实现的SMES阻尼控制的有效性对物理电力系统的负载条件变化具有鲁棒性。

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