一种电-热-冷多能互补的微电网协同运行控制系统

By collecting and analyzing the delay and consistency coefficients of heating and cooling systems in the microgrid, and optimizing the energy storage system using droop control technology, the supply and demand imbalance and dispatch lag problems of multi-energy complementary park microgrids are solved, achieving more efficient energy dispatch and balance.

CN122000994BActive Publication Date: 2026-07-17TIANJIN ANJIE PUBLIC FACILITIES SERVICE CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
TIANJIN ANJIE PUBLIC FACILITIES SERVICE CO LTD
Filing Date
2026-04-10
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The microgrids in multi-energy complementary parks face problems such as supply and demand imbalance, and delayed dispatch response and insufficient regulation capacity due to the inertia of heating and cooling systems, under the high penetration rate of renewable energy.

Method used

The output power and load power of the microgrid heating and cooling system are obtained by the power grid data acquisition module. The delay coefficient and consistency coefficient of the heating and cooling system are obtained by combining sliding window analysis. The operation and regulation of the energy storage system are optimized by using droop control technology.

Benefits of technology

It improves the accuracy of supply and demand balance and dispatch response capability of microgrids, makes up for the defects of dispatch lag and insufficient regulation, and realizes the coordinated operation of multi-energy complementarity.

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Abstract

本申请涉及配电系统控制技术领域,具体涉及一种电‑热‑冷多能互补的微电网协同运行控制系统。该系统包括:电网数据采集模块,获取微电网供热系统和供冷系统的输出功率,以及需求侧的热负荷功率、冷负荷功率,并采集微电网中供电侧发电功率和负荷侧用电功率;电网状态评估模块,用于获取各滑动窗口内微电网的发电状态与整体负荷之间的一致性系数,计算各时段内用电功率的变化显著系数,以得到各时段内微电网整体供需平衡状态的第一特征值;协同运行控制模块,根据第一特征值对下垂系数进行调整,利用下垂控制技术对微电网进行储能运行调节。本申请提高了微电网协同运行控制的精度。
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