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A multi-level comprehensive evaluation method for the reliability of energy storage grid-connected system

A comprehensive evaluation and battery energy storage system technology, applied in the field of multi-level comprehensive evaluation of the reliability of energy storage grid-connected systems, can solve the misjudgment of faults, ignore the characteristics of cooperative work, and the reliability evaluation results cannot reflect the operation of the BESS grid-connected system State and other issues, to achieve the effect of strong general applicability, taking into account economy and parameter estimation accuracy

Active Publication Date: 2022-05-27
SICHUAN UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0012] 1) The existing technology has established a complete BESS grid-connected system model, which explains the mechanism of various faults in the BESS grid-connected system. The reliability of a single component has been studied in depth, but the BESS grid-connected system is essentially a large number of components The reliability evaluation of a complex system formed by multi-level coupling considers the reliability of collaborative work among complex systems. The existing reliability evaluation methods often focus on the reliability of individual components under laboratory preset conditions. Component parameters are simply accumulated, ignoring the cooperative working characteristics of each component, and it is difficult to accurately reflect the working reliability of the BESS grid-connected system under actual working conditions
[0013] 2) The reliability assessment of BESS grid-connected system in the existing technology often relies on the online monitoring data of each part of the system, and adopts the empirical estimation method to set the reliability threshold. The accuracy of reliability assessment is related to the accuracy of data monitoring. The environment conditions are complex and the operation strategies are diverse, and the reliability parameter estimation of each component has different degrees of deviation. If the actual working conditions are not considered, the operating state and its own safety characteristics of the complex system are directly preset, and the reliability threshold is established based on experience. , then the monitoring data of the BESS grid-connected system in normal operation will easily exceed the preset threshold, resulting in misjudgment of faults, making the reliability evaluation results unable to reflect the real operating status of the BESS grid-connected system

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  • A multi-level comprehensive evaluation method for the reliability of energy storage grid-connected system

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Embodiment Construction

[0073] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. The technical solution of the present invention can be divided into three major steps, namely, establishing the BESS grid-connected reliability model based on the state space analysis method, establishing the state space of each element of the BESS grid-connected model, and the reliability evaluation of the energy storage grid-connected system. The flow chart is as follows: figure 1 The specific process is as follows:

[0074] Step 1: Establish BESS grid-connected reliability model based on state space analysis method

[0075] State space refers to the entire set of system operating states. The state space analysis method is based on Markov process and describes the reliability of system operation through the state transition relationship of the system. The comprehensive failure rate and repair rate of the module.

[0076] Step 1.1: Est...

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Abstract

The invention discloses a multi-level comprehensive evaluation method for the reliability of an energy storage grid-connected system, constructs a top-down hierarchical state space of the BESS grid-connected model, comprehensively considers various operating strategies and equipment operating characteristics, and utilizes reliability The parameter coupling calculation method simulates the cooperative working mechanism of the system, and proposes a multi-level analysis method for the state space of the BESS grid-connected system, and obtains the evaluation results that truly reflect the reliability of the BESS grid-connected system, which meets the requirements for the reliability of the BESS grid-connected system under actual working conditions. Engineering application requirements for performance assessment.

Description

technical field [0001] The invention relates to the technical field of battery energy storage system performance evaluation, in particular to a multi-level comprehensive evaluation method for the reliability of an energy storage grid-connected system. Background technique [0002] In recent years, with the widespread implementation of renewable energy, power system reliability is affected by the intermittent and fluctuating characteristics of distributed generation (DG) such as wind power and photovoltaics. In order to smooth the fluctuation of renewable energy processing and restrain its impact on the grid, BESS (battery energu storage system) is increasingly integrated into the grid. BESS has high energy density, fast cycle response, and low requirements for the construction environment. It is an ideal device for improving system stability and reliability. However, the safety features and operation strategies of the large-capacity BESS have a great impact on the reliable ...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G06F30/18G06Q50/06
CPCG06F30/18G06Q50/06G06F2119/02
Inventor 肖先勇陈智凡汪颖
Owner SICHUAN UNIV