Hardware Structures, Control Strategies, And Applications Of Electric Springs: A State-Of-The-Art Review

IET GENERATION TRANSMISSION & DISTRIBUTION(2020)

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摘要
The popularity of electric springs (ESs) has been grown in the last years mainly due to the boost in the growth of smart grids (SGs) and micro-grids (mu Gs), as well as the high penetration of renewable energy sources. In general, ESs have a hardware structure similar to other compensator devices such as distributed flexible AC transmission systems or active filters. ESs offer the exchange of active and reactive powers with the electrical grid and the demand-side load management. Their ability to simultaneously perform multiple tasks without the need of modifying their hardware structure classifies them as smart loads, distinguishing them from other types of compensators such as active filters, hybrid filters, dynamic voltage restorers, and distribution static VAR compensators, among others. In this work, an exhaustive review of ESs is carried out to cover their three main research trends, i.e. hardware structure evolution, different types of controllers, and applications in electric power distribution systems, SGs, and mu Gs. Moreover, their main advantages, disadvantages, and contributions in the power quality improvement are discussed. This review clarifies future research trends that have to be explored to advance the subject.
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关键词
distributed power generation, static VAr compensators, power supply quality, power distribution control, power generation control, power quality improvement, dynamic voltage restorers, hardware structures, control strategies, electric power distribution systems, hardware structure evolution, distribution static VAR compensators, hybrid filters, smart loads, demand-side load management, electrical grid, reactive powers, active filters, distributed flexible AC transmission systems, compensator devices, renewable energy sources, microgrids, smart grids, electric springs
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