Chaos Analysis and Chaotic EMI Suppression of DC-DC Converters Hardcove
暫譯: 直流-直流轉換器的混沌分析與混沌電磁干擾抑制

Bo Zhang, Xuemei Wang

  • 出版商: Wiley
  • 出版日期: 2014-12-15
  • 售價: $5,080
  • 貴賓價: 9.5$4,826
  • 語言: 英文
  • 頁數: 270
  • 裝訂: Hardcover
  • ISBN: 1118451007
  • ISBN-13: 9781118451007
  • 海外代購書籍(需單獨結帳)

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商品描述

Introduces chaos theory, its analytical methods and the means to apply chaos to the switching power supply design

DC-DC converters are typical switching systems which have plenty of nonlinear behaviors, such as bifurcation and chaos. The nonlinear behaviors of DC-DC converters have been studied heavily over the past 20 years, yet researchers are still unsure of the practical application of bifurcations and chaos in switching converters. The electromagnetic interference (EMI), which resulted from the high rates of changes of voltage and current, has become a major design criterion in DC-DC converters due to wide applications of various electronic devices in industry and daily life, and the question of how to reduce the annoying, harmful EMI has attracted much research interest. This book focuses on the analysis and application of chaos to reduce harmful EMI of DC-DC converters.   

After a review of the fundamentals of chaos behaviors of DC-DC converters, the authors present some recent findings such as Symbolic Entropy, Complexity and Chaos Point Process, to analyze the characters of chaotic DC-DC converters. Using these methods, the statistic characters of chaotic DC-DC converters are extracted and the foundations for the following researches of chaotic EMI suppression are reinforced. The focus then transfers to estimating the power spectral density of chaotic PWM converters behind an introduction of basic principles of spectrum analysis and chaotic PWM technique. Invariant Density, and Prony and Wavelet analysis methods are suggested for estimating the power spectral density of chaotic PWM converters.  Finally, some design-oriented applications provide a good example of applying chaos theory in engineering practice, and illustrate the effectiveness on suppressing EMI of the proposed chaotic PWM. 

  • Introduces chaos theory, its analytical methods and the means to apply chaos to the switching power supply design
  • Approaches the subject in a systematic manner from analyzing method, chaotic phenomenon and EMI characteristics, analytical methods for chaos, and applying chaos to reduce EMI (electromagnetic interference)
  • Highlights advanced research work in the fields of statistic characters of nonlinear behaviors and chaotic PWM technology to suppress EMI of switching converters
  • Bridges the gap between numerical theory and real-world applications, enabling power electronics designers to both analyze the effects of chaos and leverage these effects to reduce EMI

商品描述(中文翻譯)

介紹混沌理論、其分析方法以及如何將混沌應用於開關電源設計

直流-直流轉換器(DC-DC converters)是典型的開關系統,具有許多非線性行為,例如分岔和混沌。在過去20年中,直流-直流轉換器的非線性行為已受到廣泛研究,但研究人員仍不確定分岔和混沌在開關轉換器中的實際應用。由於各種電子設備在工業和日常生活中的廣泛應用,因電壓和電流的快速變化而產生的電磁干擾(EMI)已成為直流-直流轉換器設計中的主要標準,如何減少這種令人困擾且有害的EMI已引起了許多研究興趣。本書專注於混沌的分析和應用,以減少直流-直流轉換器的有害EMI。

在回顧直流-直流轉換器的混沌行為基礎後,作者提出了一些最近的研究成果,例如符號熵(Symbolic Entropy)、複雜性(Complexity)和混沌點過程(Chaos Point Process),以分析混沌直流-直流轉換器的特徵。利用這些方法,提取混沌直流-直流轉換器的統計特徵,並加強後續混沌EMI抑制研究的基礎。接著,重點轉向在介紹頻譜分析和混沌PWM技術的基本原則後,估算混沌PWM轉換器的功率譜密度。建議使用不變密度(Invariant Density)、Prony和小波分析方法來估算混沌PWM轉換器的功率譜密度。最後,一些以設計為導向的應用提供了在工程實踐中應用混沌理論的良好範例,並說明了所提出的混沌PWM在抑制EMI方面的有效性。

- 介紹混沌理論、其分析方法以及如何將混沌應用於開關電源設計
- 以系統化的方式探討主題,從分析方法、混沌現象和EMI特性、混沌的分析方法,以及應用混沌來減少EMI(電磁干擾)
- 突出在非線性行為的統計特徵和混沌PWM技術領域的先進研究工作,以抑制開關轉換器的EMI
- 橋接數值理論與現實應用之間的鴻溝,使電力電子設計師能夠分析混沌的影響並利用這些影響來減少EMI