Multi-Frequency Power-Channel Power-Packet Networks
Author:
Affiliation:
1. Michigan Technological University,Houghton,MI,USA,49931
2. Sandia National Labs,Albuquerque,New Mexico,USA,87123
Funder
Sandia National Laboratories
National Nuclear Security Administration
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10220946/10220439/10221194.pdf?arnumber=10221194
Reference13 articles.
1. A printed circuit board suitable for controlling a 22.8 kva igbt three-phase inverter for dc nanogrids in a laboratory setup;barone;IEEE International Conference on Environment and Electrical Engineering,2017
2. HIL 404,2023
3. An introduction to optimal estimation of dynamical systems
4. A Novel Receiver Design for Energy Packet‐Based Dispatching
5. WEC Arrays with Power Packet Networks for Efficient Energy Storage and Grid Integration
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1. Hamiltonian-Based Power Flow and Stability Analysis on a Passively Controlled Multi-Frequency Power System;2024 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM);2024-06-19
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