This book is one of the \"Modern Tram Series\", and the book is divided into five chapters. Chapter 1 starts with the origin of trams and explains trams and their power supply modes; Chapter 2 discusses the modern tram power supply system in detail from the aspects of system composition, external power supply introduction, traction power supply system and contact network system; Chapter 3 makes an extended systematic discussion of new power supply technologies at home and abroad in recent years; Chapter 4 explains the engineering scheme in combination with the modern tram projects in Shenyang Hunnan New District and Suzhou High-tech Development Zone; Chapter 5 introduces the energy-saving application technology of modern trams. This book summarizes many modern tram construction cases in China, and has a certain guiding significance for the scientificity and standardization of the preliminary research on the construction of modern tram power supply systems. It can be used as a reference material for undergraduate and master students in tram power supply design, and can also be read by tram operation management personnel, and can also be used as a reference book for teachers and students of rail vehicle majors in colleges and universities. Preface Chapter 1 Overview 1.1 Development History of Power Supply System 1.2 Current Status of Industry Standards 1.3 Current Status of Tram Power Supply Development Chapter 2 Modern Tram Overhead Power Supply Technology 2.1 Composition of Tram Power Supply System 2.2 External Power Supply Mode 2.2.1 Centralized Power Supply Mode 2.2.2 Distributed Power Supply Mode 2.2.3 Hybrid Power Supply 2.2.4 Comparison of External Power Supply Modes 2.3 Main Substation or Power Switching Station 2.4 Traction Power Supply System 2.4.1 Traction Substation 2.4.2 Power Supply Standard 2.5 Power and Lighting Power Supply System 2.5.1 Load Classification 2.5.2 Step-down Substation 2.5.3 Medium Voltage Main Connection 2.5.4 Low Voltage Main Connection 2.5.5 Low Voltage Distribution Form 2.6 Stray Current Corrosion Protection System 2.7 Power Monitoring System 2.8 Overhead System 2.8.1 Overview of overhead contact network 2.8.2 Composition and structure of overhead contact network 2.8.3 Contact rail contact network 2.9 Energy-saving design of power supply 2.9.1 Overview of energy saving 2.9.2 Design and energy saving of power supply system 2.10 Analysis of differences between power supply systems of tram, subway and light rail Chapter 3 New power supply technology for modern tram 3.1 Power supply technology based on special third rail - APS power supply technology 3.1.1 Development history of APS power supply technology 3.1.2 Basic composition of APS system 3.1.3 Operation principle of APS system 3.1.4 Design and manufacturing technology of APS special third rail 3.1.5 DC switchgear and its control technology 3.1.6 Current collecting technology of power shoe 3.1.7 Regenerative braking method 3.2 Power supply technology based on special third rail - TramWave power supply Electric technology 3.2.1 Development history of TramWave power supply technology 3.2.2 TramWave system structure 3.2.3 System operation principle 3.2.4 Key technology analysis 3.2.5 Environmental adaptability 3.3 Electromagnetic induction power supply based on wireless power supply 3.3.1 Development of wireless power supply 3.3.2 Bombardier Primove system 3.3.3 Key technologies of wireless induction power supply 3.4 On-board energy storage power supply technology 3.4.1 Battery power supply 3.4.2 Supercapacitor power supply 3.4.3 Hybrid energy storage device power supply 3.4.4 Fast charging energy storage device power supply 3.5 Comprehensive comparison of non-contact network current collection technology Chapter 4 Domestic application cases 4.1 Phase I project of modern tram in Hunnan New District, Shenyang 4.1.1 Project overview 4.1.2 Design principles 4. 1.3 Implementation standards 4.1.4 Interface between power supply system and professional design 4.1.5 External power supply and system parameters 4.1.6 Medium voltage power supply network 4.1.7 Substation 4.1.8 Traction network 4.1.9 Power monitoring system 4.1.10 Stray current corrosion protection 4.1.11 Main line power lighting 4.1.12 System harmonic calculation and analysis 4.2 Suzhou High-tech Zone Modern Tram Project 4.2.1 Overview of power supply system 4.2.2 Implementation specifications and main design principles 4.2.3 Power supply scheme and power supply 4.2.4 Traction substation setting scheme 4.2.5 Traction network system 4.2.6 Relay protection and automatic device 4.2.7 System lightning protection and overvoltage protection 4.2.8 Backflow and stray current protection methods 4.2.9 Power monitoring system (SCADA) Chapter 5 Energy-saving technology of modern tram power supply system 5.1 Current status of energy-saving technology in rail transit 5.2 References on energy-saving technology of modern tram system
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