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Co-simulation of electrical networks by interfacing EMT and dynamic- phasor simulators

机译:通过连接EMT和动态相量模拟器对电网进行联合仿真

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The paper presents a hybrid co-simulator comprising EMT and dynamic phasor-based simulators. The EMT simulator models portion(s) of the network wherein fast transients are prevalent and detailed modeling is necessary. The dynamic phasor solver models the rest of the network using extended-frequency Fourier components. Specialized algorithms are developed and presented to accurately map instantaneous EMT and counterpart dynamic phasor samples. Interfacing requirements for co-simulation using different time-steps in the two solvers are also discussed along with implications on accuracy and numerical stability. The paper demonstrates the developed co-simulation algorithm using an example of the IEEE three-phase 118-bus network in which a wind farm is included. The wind farm and the network in its vicinity are modeled in the PSCAD/EMTDC electromagnetic transient simulator, and are interfaced to the rest of the system modeled in a dynamic phasor-based solver. The paper demonstrates the accuracy of the proposed co-simulation for a range of time-step ratios of the two solvers, and also reports the substantial computational time savings obtained using the hybrid simulator.
机译:本文提出了一种混合协同仿真器,包括EMT和基于动态相量的仿真器。 EMT仿真器对网络中快速瞬变普遍存在的部分进行建模,因此需要详细的建模。动态相量求解器使用扩展频率傅立叶分量对网络的其余部分进行建模。开发并提出了专用算法,以准确映射瞬时EMT和对应的动态相量样本。还讨论了在两个求解器中使用不同时间步进行协同仿真的接口要求,以及对精度和数值稳定性的影响。本文以包括风电场的IEEE三相118总线网络为例,演示了开发的协同仿真算法。在PSCAD / EMTDC电磁瞬变模拟器中对风电场及其附近的网络进行建模,并与基于动态相量的求解器中建模的系统的其余部分接口。本文演示了针对两个求解器的时步比范围进行拟仿真的准确性,并报告了使用混合仿真器节省的大量计算时间。

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