基于SOC分层与可抢占调度的共享储能工业园区双目标优化方法及系统、终端、存储介质

By adopting a shared energy storage method with SOC hierarchical structure and preemptive scheduling within the industrial park, the state-of-charge interval is dynamically divided into a minimum load zone and a flexible load zone. Combined with priority queue scheduling, the problem of resource silos in the energy storage system is solved, the equipment utilization rate and economic efficiency are improved, and multi-user sharing and revenue distribution are realized.

CN121766552BActive Publication Date: 2026-07-17STATE GRID SHANGHAI MUNICIPAL ELECTRIC POWER CO +3

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
STATE GRID SHANGHAI MUNICIPAL ELECTRIC POWER CO
Filing Date
2026-03-05
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing energy storage systems serve a single user group within industrial parks, making it difficult to achieve resource sharing. They also suffer from low equipment utilization, low return on investment, and fail to effectively optimize allocation based on real-time changes in new energy power generation and user load.

Method used

A shared energy storage method based on SOC hierarchical and preemptive scheduling is adopted. By dynamically dividing the state of charge interval into a minimum guarantee zone and an elastic zone, and combining high priority and ordinary dual queues with a preemptive redistribution scheduling mechanism, the dynamic boundary value of the state of charge is optimized to achieve real-time reuse and priority-based protection among multiple users.

Benefits of technology

It significantly improves the utilization rate and investment economy of shared energy storage, increases equipment operating hours, provides a business model for multi-user sharing and revenue distribution, and improves the investment return cycle of energy storage projects.

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Abstract

基于SOC分层与可抢占调度的共享储能工业园区双目标优化方法及系统、终端、存储介质,获取不同运行场景下共享储能参数、园区能源系统的关键负荷保供需求和各用户用能请求,优化荷电状态动态分界值;基于优化后荷电状态动态分界值,计算抢占重分配功率的惩罚成本;建立园区的经济性优化目标函数、经济性优化约束条件,解得不同运行场景下园区调度方案;基于不同运行场景下园区调度方案,对优化后荷电状态动态分界值进行滚动优化;基于滚动优化后荷电状态动态分界值,更新抢占重分配功率的惩罚成本及经济性优化目标函数,解得不同运行场景下园区优化调度方案,使共享容量在多用户间实时复用与按优先级保障,提升共享储能的利用率与响应及时性。
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