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Aggregate Flexibility of Thermostatically Controlled Loads

IEEE Transactions on Power Systems · 2014 · Vol. 30(1) · pp. 189–198
He HaoBorhan M. SanandajiKameshwar PoollaTyrone L. Vincent

Abstract

It is widely accepted that thermostatically controlled loads (TCLs) can be used to provide regulation reserve to the grid. We first argue that the aggregate flexibility offered by a collection of TCLs can be succinctly modeled as a stochastic battery with dissipation. We next characterize the power limits and energy capacity of this battery model in terms of TCL parameters and random exogenous variables such as ambient temperature and user-specified set-points. We then describe a direct load control architecture for regulation service provision. Here, we use a priority-stack-based control framework to select which TCLs to control at any time. The control objective is for the aggregate power deviation from baseline to track an automatic generation control signal supplied by the system operator. Simulation studies suggest the practical promise of our methods.

Smart Grid Energy ManagementMicrogrid Control and OptimizationSmart Grid Security and ResilienceFlexibility (engineering)Aggregate (composite)DissipationComputer scienceOperator (biology)GridSmart gridControl (management)Demand responseLoad regulation

Funding

  • Electric Power Research Institute
  • Colorado School of Mines
  • Robert Bosch
Citations
713
FWCI
34.90
field-weighted impact
References
23
Percentile
100%
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Citations per year
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