Battery energy storage system scheduling method considering dynamic charge and discharge efficiency

A technology for battery energy storage systems and charging and discharging efficiency, applied in flexible AC transmission systems, AC network load balancing, single-network parallel feeding arrangements, etc., can solve the problems of lack of targeted and adaptive special-purpose solving algorithms, etc.

Active Publication Date: 2019-11-26
XIAN THERMAL POWER RES INST CO LTD
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, at present, general commercial optimization software is generally used to solve the scheduling mode...

Method used

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  • Battery energy storage system scheduling method considering dynamic charge and discharge efficiency
  • Battery energy storage system scheduling method considering dynamic charge and discharge efficiency
  • Battery energy storage system scheduling method considering dynamic charge and discharge efficiency

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Embodiment Construction

[0070] The invention aims to provide a battery energy storage system scheduling method considering the dynamic charge and discharge efficiency characteristics, which can make optimal decisions for the operation of the battery energy storage system in a future period of time according to the characteristics of the battery energy storage itself, operation constraints and predicted market electricity prices , so as to guide the operation of the battery energy storage system and improve the operating efficiency and operating income of the system.

[0071] Attached below figure 1 The implementation manner and the whole process of the scheduling method in the invention will be further described.

[0072] A battery energy storage system scheduling method considering dynamic charge-discharge efficiency. Using the method, the optimal operation decision of the energy storage battery system can be made and the operation economy of the battery energy storage system can be improved. The me...

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Abstract

The invention relates to a battery energy storage system scheduling method considering dynamic charge and discharge efficiency. The method comprises the following steps: A, acquiring basic informationof a battery energy storage system, and performing segmented linearization on a charge and discharge efficiency characteristic curve; B, acquiring scheduling information such as running limit, initial and final electricity quantities, a predicated time-sharing electricity price or a price multiplier and the like of the battery energy storage system; C, establishing a scheduling model; D, calculating the dynamic upper limit and lower limit of storing the electric quantity by the battery energy storage system in each time period; E, performing dynamic planning on reverse recursion to obtain anoptimization model of a core sub-problem needing to be repeatedly solved in each time period; F, using geometric features of the core sub-problem optimization model to sequentially solve an optimal path in each horizontal sub-region from bottom to top; G, solving the optimal path in the horizontal sub-regions; H, processing the optimal path jump; I, performing dynamic planning on forward recursion, and calculating the optimal charge and discharge electric quantity and power decision of each time period; and J, entering the next time period along with the schedule development, updating the scheduling information in the step B, and executing the step C. According to the method, an effective way is provided for optimized operation of the battery energy storage system, and an engineering practical value is achieved.

Description

technical field [0001] The invention relates to the technical field of battery energy storage, in particular to a scheduling method for a battery energy storage system considering dynamic charge-discharge efficiency. Background technique [0002] The continuous and rapid access of renewable energy to the power grid brings new challenges to the control and management of the power system. In recent years, energy storage has become a new industry hotspot. Through the wide application of energy storage system, it can not only stabilize power fluctuation, improve power quality, and enhance the reliability of power grid system operation. [0003] In general, the charging and discharging efficiency of energy storage varies dynamically with the charging and discharging power. For example, the state of charge (SOC) of lead-acid batteries and lithium battery energy storage systems is between 20% and 95% during discharge. Within this range, the voltage is basically unchanged during d...

Claims

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Application Information

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IPC IPC(8): H02J3/32H02J3/46
CPCH02J3/32H02J3/46Y02E40/10
Inventor 童博赵勇文乐张宝锋
Owner XIAN THERMAL POWER RES INST CO LTD
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