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Titlebook: Second Harmonic Current Reduction Techniques for Single-Phase Power Electronics Converter Systems; Xinbo Ruan,Li Zhang,Shiqi Kan Book 2022

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發(fā)表于 2025-3-21 19:52:16 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Second Harmonic Current Reduction Techniques for Single-Phase Power Electronics Converter Systems
編輯Xinbo Ruan,Li Zhang,Shiqi Kan
視頻videohttp://file.papertrans.cn/864/863133/863133.mp4
概述Provides an insight into the generation, propagation, and mitigation of second harmonic current in the converters.Provides design, control, and stability analysis for the electrolytic capacitor-less s
叢書名稱CPSS Power Electronics Series
圖書封面Titlebook: Second Harmonic Current Reduction Techniques for Single-Phase Power Electronics Converter Systems;  Xinbo Ruan,Li Zhang,Shiqi Kan Book 2022
描述Two-stage single-phase converters, including two-stage single-phase dc-ac inverters and two-stage single-phase PFC converters, are interfacing power converters between dc and ac voltage/current sources, which have been widely applied for dc-ac and ac-dc power conversion. For the two-stage single-phase converter, the ac-side power pulsates at twice the ac voltage frequency, resulting in second harmonic current (SHC) which might flow into the dc-dc converter, the dc voltage source, and dc load. This book clarifies the generation, propagation, and side-effects of this SHC and proposes the SHC reduction control schemes for the dc-dc converter, with different topologies and/or different operating modes, in the single-phase converter. On this basis, the second harmonic current compensator (SHCC) is proposed to compensate the SHC, significantly reducing the dc bus capacitance. In doing so, the electrolytic capacitors, with short lifetimes, are removed from the two-stage single-phase converter, leading to extended system lifetime and enhanced system stability. For having flawless SHC compensation performance, the port-current control schemes are proposed for the SHCC. Additionally, the sta
出版日期Book 2022
關(guān)鍵詞Two-stage; Single-phase; DC-AC inverter; PFC converter; DC-DC converter; second harmonic current; output i
版次1
doihttps://doi.org/10.1007/978-981-19-1547-5
isbn_softcover978-981-19-1549-9
isbn_ebook978-981-19-1547-5Series ISSN 2520-8853 Series E-ISSN 2520-8861
issn_series 2520-8853
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Singapor
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Xinbo Ruan,Li Zhang,Xinze Huang,Fei Liu,Guoping Zhu,Shiqi Kan the data by geocasting from an observer node, but its overhead highly depends on location of the observer and the designated region. We propose a mobile agent approach. A mobile agent migrates from the observer node to a node in the designated region, retrieves data from there, and summarizes, filt
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Xinbo Ruan,Li Zhang,Xinze Huang,Fei Liu,Guoping Zhu,Shiqi Kannd justify their superior social position. First, from Aristotle through to the nineteenth century, the difference was understood in terms of polarities, such as men’s abstract versus women’s concrete thought. The idea of intelligence as we know it from IQ tests—as a single, general ability largely
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Xinbo Ruan,Li Zhang,Xinze Huang,Fei Liu,Guoping Zhu,Shiqi Kans related to marriage and longevity. However, one increasingly important aspect of modern life has not been examined vis-à-vis the role of intelligence: How does intelligence relate to resistance to misinformation and fake news? Misinformation in social media has become so common that most major out
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Xinbo Ruan,Li Zhang,Xinze Huang,Fei Liu,Guoping Zhu,Shiqi Kanrest in secure means of transferring sensitive information over ATM increases. Given potential application fields requiring Quality of Services (QoS) provided by ATM, as divers as transferring medical images, linking branch offices to company networks, or governmental networks transferring sensitive
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