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Seller: liu xing, Nanjing, JS, China
paperback. Condition: New. Ship out in 2 business day, And Fast shipping, Free Tracking number will be provided after the shipment.Paperback. Pub Date: 2012 08 Pages: 296 Language: Chinese Publisher: Tsinghua University Press National Engineering Master's Degree in Education Steering Committee recommended materials: high-voltage direct current transmission Principles and Applications describes the basic principles and engineering applications of HVDC content of 11 chapters. involving the basic concepts and principles of DC transmission. converter circuit works. converter station and the main equipment. the DC transmission lines. harmonic filter. control and protection of the DC system. DC system power loss and Reliability Assessment of UHV DC transmission and DC transmission technology. National Engineering Graduate Education Steering Committee recommended textbook: high voltage direct current transmission principle and application primarily for postgraduates of electrical engineering. engineering graduate. and electrical engineering and automation undergraduate teaching and research use. and can be for DC transmission engineering design and operation of reference. Contents: Chapter 1 Introduction 1.1 DC transmission early development history 1.1.1 1.1.2 HVDC technology development 1.1.3 HVDC power transmission technology review basic concepts 1.1.4 abroad HVDC project representative case 1.1 advantages and disadvantages of 1.3 .5 HVDC back-to-back bipolar line the way in the development of China's 1.2 HVDC basic wiring 1.2.1 unipolar line way 1.2.2 1.2.3 1.2.4 multiterminal way 1.3 DC transmission commutation .1 the advantages of DC transmission transmission of less than 1.3.3 DC power transmission applications Exercises 1 Chapter 2 1.3.2 DC converter circuit works 2.1 thyristor commutating phased commutation 2.1.1 thyristor characteristics 2.1.2 works 2.2.2 2.2.1 2.1.3 multi-bridge inverter circuit 2.2 rectifier works Ideally consider triggering delay angle 2.2.3. taking into account the trigger delay angle and commutation inductance 2.2.4 change The flow device power factor 2.3 inverter works 2.3.1 2.3.4 commutation failure trigger delay angle with DC voltage relationship 2.3.2 inverter running 2.3.3 commutation failure concept influencing factors 2.3. commutation failure prevention measures 2.4 HVDC run way its steady-state characteristics 2.4.1 DC transmission project RATINGS 2.4.2 HVDC run 2.4.3-steady-state conditions calculated 2.4.4 Inverters power characteristics 2.4.5 reactive power inverter features exercises 2 Chapter 3 converter station and its main equipment 3.1 Overview 3.1.1 of the main equipment and its functions 3.1.2 converter station layout 3.2 thyristor converter station 3.2.1 performance of the inverter of requirements 3.2.2 thyristor valve structure thyristor trigger 3.2.3 3.3 3.3.1 converter transformer converter transformer characteristics 3.3.2 the converter transformer choose 3.3.3 converter transformer election type scheme 3.4 square wave reactor 3.4.1 level of the structure and function of wave reactor 3.4.2 smoothing reactance is the choice of 3.5 reactive power compensation device 3.5.1 static reactive power compensation device 3.5.2 dynamic reactive power compensation device . Chapter 8 DC transmission system losses harmonic filter Chapter 6 of Chapter 4. Chapter 5. HVDC line HVDC system HVDC system control Chapter 7 protection of HVDC Chapter 9 HVDC Reliability Assessment Chapter 10 UHVDC Transmission Chapter 11 modern HVDC technology Appendix specialized vocabulary table ReferencesFour Satisfaction guaranteed,or money back. Seller Inventory # NE047031
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