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UID:1761-1722517200-1722520800@curent.utk.edu
SUMMARY:Presentation: Dr. Min Xiong-Power System Dynamic Simulation with inverter-based resources
DESCRIPTION:Talk by Dr. Kai Sun
URL:https://curent.utk.edu/event/monthly-presentation-to-industry/
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DTSTART;TZID=America/New_York:20240814T100000
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UID:3136-1723629600-1723642200@curent.utk.edu
SUMMARY:2024 Mini-workshop on Power System Simulation
DESCRIPTION:  \nMin Kao Building\, Room 124\, The University of Tennessee \n  \nAugust 14th\, 2024 (Wednesday) 10am to 1:30 pm  \n  \n\n\n\n10:00-10:05\nWelcome – Fran Li & Kai Sun\n\n\n10:05-11:05\nRepresenting distribution systems in transmission system transient stability studies – Qiuhua Huang (Colorado School of Mines)\n\n\n11:05-12:05\nThe Philosophy of Co-simulation – Philip Top (Lawrence Livermore National Laboratory)\n\n\n12:05-1:00\nCenter Overview – Fran Li \nBoxed lunch – All\n\n\n1:00-1:30\nCURENT Testbed Demonstration – Jingxin Wang & Jinning Wang\n\n\n1:30\nAdjourn\n\n\n\n  \nAbstracts: \nRepresenting distribution systems in transmission system transient stability studies \nDistribution systems are physically connected to and interact with transmission systems. Traditionally\, due to grid operation practices\, model complexity\, and data availability issues\, distribution and transmission systems are often simulated or analyzed separately or in a decoupled manner. As the primary components (i.e.\, demand and generation) of distribution systems\, along with their dynamic and transient behaviors\, evolve over time\, their representations in transmission system-level studies must also adapt. This tutorial will first review typical representations and modeling of distribution systems in bulk power system transient stability studies. We will analyze gaps in some of these representations and explore recent efforts to improve them\, followed by future directions. \n  \nThe Philosophy of Co-simulation \nCo-simulation is a simulation technique in which two or more independent simulations are coupled together to analyze a complex system.  While the concept of co-simulation is straightforward\, the complexity of any instantiation often lies in the details and design philosophy used in the development.  This talk will explore the philosophical principles used in the design of HELICS a co-simulation library\, how they came about and how those principles played out the development of the software.   HELICS(Hierarchical Engine for large scale infrastructure co-simulation) is a result of joint effort from several national labs to unify and simplify the use of co-simulation.  It is an open-source software library and associated tools to enable co-simulation.
URL:https://curent.utk.edu/event/2024-mini-workshop-on-power-system-simulation/
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