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Novel Fault Models for Electronically Coupled Distributed Energy Resources and Their Laboratory Validation

机译:电子耦合分布式能源的新型故障模型及其实验室验证

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摘要

In this paper, novel models for electronically coupled distributed energy resources (ECDERs) for online fault calculations of large-scale systems are proposed. ECDERs have different fault responses than traditional synchronous and induction (AC) machines, and generally accepted models for these emerging DERs do not exist. The deployment of ECDERs is constantly increasing worldwide and there is an urgent need for developing appropriate models for fault calculations. In order to have fast calculations, applicable to large-scale systems, the dynamic behavior of traditional AC machines have been approximated in three steady state time-periods (sub-transient, transient, and steady-state). Accordingly, the online fault calculations of large-scale systems have been conducted for these three periods. To simulate the ECDERs' dynamic behavior, and develop models that are compliant with traditional fault calculations, fault models of ECDERs in the sub-transient, transient, and steady-state periods are proposed, with a short peak current period included in the proposed models during the sub-transient period. To validate the proposed models, they are integrated into recently developed online fault calculations, and tested on various large-scale systems. Results from computer simulations are compared with results obtained using state-of-the-art laboratory equipment, as well as with relevant reports on fault current contributions of ECDERs. The results match very well, further validating the proposed models.
机译:在本文中,提出了用于大型系统在线故障计算的电子耦合分布式能源(ECDER)的新模型。 ECDER与传统的同步和感应(AC)机器具有不同的故障响应,并且不存在这些新兴DER的公认模型。 ECDER的部署在全球范围内不断增加,迫切需要开发用于故障计算的适当模型。为了进行快速计算,以适用于大型系统,传统的交流电机的动态行为已在三个稳态时间周期(子瞬态,瞬态和稳态)中进行了近似估算。因此,已经针对这三个时期进行了大型系统的在线故障计算。为了模拟ECDER的动态行为并开发与传统故障计算兼容的模型,提出了亚瞬态,瞬态和稳态期间ECDER的故障模型,并在模型中包括了短峰值电流周期在次暂态期间。为了验证所提出的模型,将它们集成到最近开发的在线故障计算中,并在各种大型系统上进行了测试。将计算机仿真的结果与使用最新实验室设备获得的结果进行比较,并与有关ECDER故障电流贡献的相关报告进行比较。结果非常吻合,进一步验证了所提出的模型。

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