A Stochastic Controller for Primary Frequency Regulation using ON/OFF Demand Side Resources

Residential ON/OFF devices, such as thermal-controlled loads and smart appliances, have great potential for providing frequency regulation service in the power grid. These devices can be engaged using centralized, distributed, or local control. However, both centralized and distributed controls requ...

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Published inIEEE transactions on smart grid Vol. 14; no. 5; p. 1
Main Authors Tian, Guanyu, Sun, Qun Zhou
Format Journal Article
LanguageEnglish
Published Piscataway IEEE 01.09.2023
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract Residential ON/OFF devices, such as thermal-controlled loads and smart appliances, have great potential for providing frequency regulation service in the power grid. These devices can be engaged using centralized, distributed, or local control. However, both centralized and distributed controls require significant costs for communication infrastructure, while local controllers may perform poorly due to a lack of coordination. To address the challenges, a stochastic demand-side management controller is proposed. The stochastic controller dynamically adjusts the aggregated response power profile by randomizing the execution of demand response actions using a stochastic filter with no communication required. The system frequency response is analytically proved to be critically damped to the nominal value. Using the stochastic controller on grid-interactive water heaters, test cases are implemented to validate the frequency regulation performance under a power system transient scenario. The proposed controller produces the best system frequency response compared to benchmark controllers.
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Residential ON/OFF devices, such as thermal-controlled loads and smart appliances, have great potential for providing frequency regulation service in the power grid. These devices can be engaged using centralized, distributed, or local control. However, both centralized and distributed controls require significant costs for communication infrastructure, while local controllers may perform poorly due to a lack of coordination. To address the challenges, a stochastic demand-side management controller is proposed. The stochastic controller dynamically adjusts the aggregated response power profile by randomizing the execution of demand response actions using a stochastic filter with no communication required. The system frequency response is analytically proved to be critically damped to the nominal value. Using the stochastic controller on grid-interactive water heaters, test cases are implemented to validate the frequency regulation performance under a power system transient scenario. The proposed controller produces the best system frequency response compared to benchmark controllers.
Author Tian, Guanyu
Sun, Qun Zhou
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SubjectTerms Benchmark testing
Controllers
Convergence
Demand response
Electric power systems
Engineering
Frequency analysis
Frequency control
frequency regulation
Frequency response
Interactive control
Steady-state
stochastic controller
Switches
Water heaters
Water heating
Title A Stochastic Controller for Primary Frequency Regulation using ON/OFF Demand Side Resources
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Volume 14
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