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This paper focuses on the coordination of a population of thermostatically controlled loads (TCLs) with unknown parameters to achieve group objectives. The problem involves designing the device bidding and market clearing strategies to motivate self-interested users to realize efficient energy allocation subject to a peak energy constraint. This coordination problem is formulated as a mechanism design...
A large population of thermostatically controlled loads (TCLs) can be coordinated to provide various ancillary services to the grid. Effective operation and coordination of TCLs requires an accurate and simple model to capture their aggregate power flexibility. One appealing approach is the virtual battery method, which models the aggregate flexibility offered by a collection of TCLs as a simple scalar...
Nondisruptive demand response programs often result in complex and fast aggregated load dynamics, which may lead to severe impact on the distribution and transition systems. Accurate modeling of aggregated load dynamics is of fundamental importance for systematic analysis and design of various demand response strategies. Existing methods mostly focus on simple first-order linear Thermostatically Controlled...
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