Design and analysis of electric spring based on battery-less current-source inverter
ISSN: 0332-1649
Article publication date: 15 February 2024
Issue publication date: 1 March 2024
Abstract
Purpose
Electric spring (ES) is a demand response method that can stabilize the voltage of critical loads and improve power quality, especially in a weak power grid with a high proportion of renewable energy sources. Most of existing ESs are implemented by voltage-source inverter (VSI), which has some shortcomings. For example, the DC-link capacitor limits the service life of ES, and the battery is costly and hard to recycle. Besides, conventional VSI cannot boost the voltage, which limits the application of ES in high-voltage occasions. This study aims to propose a novel scheme of ES to solve the above problems.
Design/methodology/approach
In this work, an ES topology based on current-source inverter (CSI) without a battery is presented, and a direct current control strategy is proposed. The operating principles, voltage regulation range and parameter design of the proposed ES are discussed in detail.
Findings
The proposed ES is applicable to various voltage levels, and the harmonics are effectively suppressed, which have been validated via the experimental results in both ideal and distorted grid conditions.
Originality/value
An ES topology based on battery-less CSI is proposed for the first time, which reduces the cost and prolongs the service time of ES. A novel control strategy is proposed to realize the functions of voltage regulation and harmonic suppression.
Keywords
Acknowledgements
This work is supported by the Science and Technology Project of China Southern Power Grid Co., Ltd. under Grants GZKJXM20222153 and GZKJXM20222249.
Citation
He, Y., Gu, T., Li, B., Wang, Y., Qiu, D., Zhang, Y. and Qiu, P. (2024), "Design and analysis of electric spring based on battery-less current-source inverter", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 43 No. 1, pp. 192-206. https://doi.org/10.1108/COMPEL-04-2023-0157
Publisher
:Emerald Publishing Limited
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