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A Demand Side Response Game Method for Realizing Optimal Coordination of Temperature Control Loads

A demand-side response and temperature-controlled load technology, applied in data processing applications, instruments, AC network circuits, etc., can solve problems such as inability to meet grid dispatching needs, achieve the effect of reducing electricity consumption and improving flexibility

Active Publication Date: 2021-10-22
ZHEJIANG UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the complex user behaviors faced by demand-side response and the distribution of rewards among individual users bring uncertain factors to the effect of user-side response. The existing demand response methods cannot meet the dispatching needs of the power grid. A Demand Side Response Method Based on Optimal Load Coordination

Method used

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  • A Demand Side Response Game Method for Realizing Optimal Coordination of Temperature Control Loads
  • A Demand Side Response Game Method for Realizing Optimal Coordination of Temperature Control Loads
  • A Demand Side Response Game Method for Realizing Optimal Coordination of Temperature Control Loads

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Embodiment Construction

[0036] Such as figure 1 As shown, a demand side response game method of the present invention to realize the optimal coordination of temperature control loads includes the following steps:

[0037] Step 1. Initialize the temperature initial value of each temperature control load Power Policy Collection and the corresponding

[0038] Step 2. Solve the multi-time scale minimum electricity cost optimization problem for temperature-controlled loads, and obtain a new set of electricity utilization strategies

[0039] Step 3. Judgment If yes, go to step 4, if not, update And send new strategies to other temperature control loads;

[0040] Step 4. Determine whether the power consumption strategy of other temperature-controlled loads has been updated. If so, go to step 5. If not, output Finish;

[0041] Step 5. Receive and update the updated power consumption strategy of other temperature-controlled loads Go to step 2 until output Finish.

[0042] In the above-men...

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Abstract

The invention discloses a demand-side response game method for realizing optimal coordination of temperature-controlled loads. The method establishes a demand-side temperature-controlled load game method, fully excavates and utilizes the energy storage characteristics of temperature-controlled loads, and minimizes the consumption of individual loads. Taking electricity expenditure as the target, rationally allocating the load power in each time period can improve the efficiency of power supply on the demand side. This method can not only reduce the electricity expenditure of each user, but also improve the flexibility of power supply on the demand side.

Description

technical field [0001] The invention belongs to the technical field of power systems and smart grids, and relates to a demand-side response game method for realizing optimal coordination of temperature-controlled loads. Background technique [0002] With the advancement of the smart grid process, demand side response has become a hot spot in the future smart grid research field. Existing demand-side response projects tap the dispatch potential of temperature-controlled loads (such as air conditioners, heat pumps, etc.) safe and stable operation. However, the complex user behaviors faced by demand-side response and the distribution of rewards among individual users bring uncertain factors to the effect of user-side response. The existing demand response methods cannot meet the dispatching needs of the power grid. Demand side response method for optimal load coordination. Contents of the invention [0003] The purpose of the present invention is to provide a demand-side r...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G06Q10/06G06Q50/06H02J3/00
CPCG06Q10/0637G06Q50/06H02J3/00H02J2203/20
Inventor 丁一谢敦见惠红勋梅峰
Owner ZHEJIANG UNIV