List of Our Open-Source Models:
EMT Model of Large AI Data Center Load in PSCAD
EMT Model of Large Crypto-Mining Load in PSCAD
EMT Model of IEEE 39-Bus System with GFM and GFL Inverters in MATLAB Simulink
Electromagnetic Transient (EMT) Model of Large AI Data Center Load in PSCAD.
ERCOT Website: [Model Link] [User Manual]
If the ERCOT link does not work, the same models and user manual are also available here.
Key Features:
Facility-level data center models with a library of key modules, including rectifier, inverter, DC/DC converter, battery UPS system, cooling load, computing load, and associated controllers.
Embedded disturbance ride-through mechanisms, protection logic, operating mode transitions, and reconnection behaviors.
Both average models and switching models.
Per-unit representations that are scalable in power capacity.
Multiple test cases for evaluating voltage ride-through capability and load fluctuation responses.
Suggested Citation:
[1] Xiaoyang Wang, Xin Chen, Prasad Enjeti, Fang Chen Lin, Ali Yazdanpanah, Jonathan Rose, Yunzhi Cheng, Amro Quedan, Prashant Kansal, “Dynamic Modeling of AI Data Center Load in PSCAD”, TAMU-ERCOT, April 2026.
Electromagnetic Transient (EMT) Model of Large Crypto-Mining Load in PSCAD.
ERCOT Website: [Model Link] [User Manual]
If the ERCOT link does not work, the same models and user manual are also available here.
Key Features:
Crypto-mining facility-level dynamic model
Protection mechanisms and disturbance ride-through are embedded
Both switching and average models are provided
Validated via lab tests and field data
Suggested Citation:
[1] Xiaoyang Wang, Xin Chen, Prasad Enjeti, Fangchen Lin, Ali Yazdanpanah, Jonathan Rose, Yunzhi Cheng, Prashant Kansal, “Dynamic Modeling of Crypto-Miner Load in PSCAD”, TAMU-ERCOT, October 27, 2025.
Electromagnetic Transient (EMT) Model of a Modified IEEE 39-Bus Power System with Grid-Forming and Grid-Following Inverters in MATLAB Simulink.
Key Features:
IEEE 39-bus test system
10 inverter-based resources (IBRs)
4 grid-forming (GFM) inverters
6 grid-following (GFL) inverters
All IBRs are implemented using full-order dynamic models
Primary and secondary frequency control layers are embedded
Suggested Citation:
[1] Xiaoyang Wang, Xin Chen, “Distributed Coordination of Grid-Forming and Grid-Following Inverters for Optimal Frequency Control in Power Systems“, IEEE Transactions on Power Systems, 2026.