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Assessing the Contribution of Large Inverter-connected Power Sources on the Performance of Power System Stabilizers

机译:评估大型逆变器连接的电源对电力系统稳定器性能的贡献

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摘要

This article investigates the impacts of dominant electromechanical oscillations on power systems with the participation of large inverter-connected power source systems. From first principles, new formulas are derived to estimate the contribution of synchronizing and damping torques as functions of the current power system operating condition. An extended Heffron-Phillips model accounting for these effects is then proposed and further simplified to be used for designing damping controllers in power systems having a large inverter-connected power source. A clear interpretation of the influence of inverter-connected power source generators on the synchronizing and damping torque is provided. By using the developed system model, the performance degradation of a power system stabilizer damping controller is assessed for a wide range of operating conditions. The results of computational studies performed on a test system show that the damping torque is adversely affected as the level of active power generation of the large inverter-connected power source is increased. Furthermore, the simulation results obtained indicate that there is an increased potential for amplifying adverse interacting effects between power system stabilizer controllers and other control system devices responding in the frequency range of the dominant electromechanical modes.
机译:本文研究了大型机电连接的大型逆变器连接的电源系统对主要机电振荡的影响。从第一个原理出发,得出了新的公式来估算同步转矩和阻尼转矩对当前电力系统运行状况的影响。然后,提出了考虑这些影响的扩展Heffron-Phillips模型,并将其进一步简化,以用于设计具有大型逆变器连接电源的电力系统中的阻尼控制器。提供了对连接逆变器的电源发电机对同步转矩和阻尼转矩的影响的清晰解释。通过使用开发的系统模型,可以评估各种工作条件下电力系统稳定器阻尼控制器的性能下降。在测试系统上进行的计算研究结果表明,随着连接大型逆变器的有功功率的增加,阻尼扭矩受到不利影响。此外,获得的仿真结果表明,在主要的机电模式的频率范围内响应,电力系统稳定器控制器和其他控制系统设备之间存在不利的相互作用放大作用,这具有增加的潜力。

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