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An Integrated Transmission-Distribution Modeling for Phasor-Domain Dynamic Analysis in Real-time

机译:实时相量域动态分析的综合输配电模型

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The interactions between transmission and distribution (T&D) networks have become extremely important in recent years with the increase of dynamic loads and distributed energy resources (DERs) in the distribution networks that impacts the operation of transmission systems. Since conventional tools can only model and analyze T&D networks separately, there is a need for modern modeling tools capable of integrated analysis of these strong T&D interactions. To address this need, a T&D integration method in ePHASORsim software is presented in this paper utilizing the dynamic Thevenin equivalents. Additionally, ePHASORsim allows users to run these integrated models in real-time, enabling hardware-in-the-loop (HIL) testing of grid optimization and control with real devices. The integrated modeling method was demonstrated using a positive-sequence transmission network modeled in PSS/e with around 7000 buses and an unbalanced three-phase distribution network modeled in CYME with around 3000 nodes. These models were validated individually first and then integrated for dynamic simulation. The integrated model was run in real-time on OPAL-RT's OP5600 simulator with a time step of 10ms and tested successfully for simulation of T&D interactions.
机译:近年来,随着配电网络中动态负载和分布式能源(DER)的增加(影响传输系统的运行),传输和配电(T&D)网络之间的交互变得极为重要。由于常规工具只能分别对T&D网络进行建模和分析,因此需要能够对这些强大的T&D交互进行集成分析的现代建模工具。为了满足这一需求,本文提出了利用动态戴维宁等效物在ePHASORsim软件中进行T&D集成的方法。此外,ePHASORsim允许用户实时运行这些集成模型,从而实现对网格优化和实际设备控制的硬件在环(HIL)测试。使用在PSS / e中建模的正序传输网络(约有7000条总线)和在CYME中建模的不平衡三相配电网络(约有3000个节点)对集成建模方法进行了演示。这些模型首先经过单独验证,然后进行集成以进行动态仿真。集成模型在OPAL-RT的OP5600仿真器上实时运行,时间步长为10ms,并成功测试了T&D交互的仿真。

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