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This paper introduces a potential learning scheme that can dynamically predict the stability of the reconnection of subnetworks to a main grid. As the future electrical power systems tend toward smarter and greener technology, the deployment of self sufficient networks, or microgrids, becomes more likely. Microgrids may operate on their own or synchronized with the main grid, thus control methods...
This paper investigates the potential impacts of load oscillating attacks in a microgrid to the stability of the main power grid. The adversary is assumed to be able to control switches within compromised smart meters and thus is able to dynamically connect or disconnect the corresponding loads within the microgrid. Using the commercial PSS/e time-domain simulator with the IEEE Reliability Test System...
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