!! New Batch of Solar Power Plant Design & Electrical system Design will going starts from 21st December 2024
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Electric Vehicle Charging Station Design Online training Course

Advance Electrical Design and Engineering Institute is providing Certified Design training on Online Electric Vehicle (EV) Charging Station Design Training Online Electric Vehicle Design Training provides detailed guidance and recommendations on all aspects of the Designing of Electric Vehicle Charging Equipment from the origin of the electrical supply, through distribution and final circuits, installation of the charging equipment itself to the cable between the charging equipment and vehicle’s electrical inlet. Also included are related issues of site layout and planning and subsequent inspection, testing, certification and maintenance of installations.
Advance Electrical Design and engineering institute in Delhi support the mission of India for electric vehicle arena in India with help of training . To make availability of charging station with skilled engineers which accelerated the guidelines of Indian government. Advance Electrical Design and Engineering institute (aedei) Developing the skilled engineers by industrial training with help of skill Engineers availability of adequate Charging Infrastructure is one of the key requirement for accelerated adoption of electric vehicles in India. It is proposed to encourage this by laying down an enabling framework.



Who should attend:
solar design online course, Solar power plant design online course, solar power plant design training course, Solar plant design training, Solar installer online course, Solar design online training course Anybody who wants to gain valuable hands-on experience, especially electrical and mechanical engineers; electrical and general contractors, electrical designers, Electric Vehicle companies and Electric Vehicle industry professionals who want to further their knowledge of Electric Vehicle Charging Station design.

Prerequisites: Participants Participants should also have knowledge of Electrical.

What time:

  • Weekend Batch : Saturday and Sunday
  • Time : 2 Hours/per day (Flexible timming as required)

How to Register: We offer the following options to register for this class. Class size is limited, so we recommend that you register early to guarantee a seat.

1. Online - click on the Enroll Now button below and register using a credit card or check card. You will be redirected to our online payment page for a safe, secure transaction. You will receive an email confirmation when the transaction is complete.
2. By phone – simply call us at (+91) 8467024957,7531923094 and we'll process your registration over the phone.
3. By whatApp on (+91) 8467024957,7531923094
4. Skype Id : aedei01







Syllabus of Electric Vehicle Charging Station online Course
solar design training syllabus

Chapter 1 -Introduction: Electric Vehicle

  • History
  • Components of Electric Vehicle
  • Comparison with Internal combustion Engine : Technology
  • Comparison with Internal combustion Engine: Benefits and Challenges
  • EV classification and their electrification levels.
  • EV Terminology

Chapter - 2 Types of EV Chargers

  • Electric Vehicle Technology and Charging Equipment’s
  • Basic charging Block Diagram of Charger
  • Difference between Slow charger and fast charger
  • Slow charger design rating
  • Fast charger design rating
  • AC charging and DC charging
  • Inboard and off board charger specification
  • Type of Mode of charger Mode -2 , Mode-3 and Mode-4
  • EVSE associated charge times calculation

Chapter- 3 Selection and sizing of fast and slow charger (AC & DC)

  • AC Pile Charger
  • DC Pile Charger
  • EVSE Power Module selection and technical specification
  • Selection of EVSE Communication Protocol (PLC / Ethernet / Modbus/ CAN Module )
  • Communication gateway
  • Specification of open charge point protocol (OCCP 1.6/2.0)
  • Bharat DC001 & AC001 Charger specification)
  • Communication Interface between charger and CMS ( central management system)

Chapter- 4. Selection and sizing of Common types of connectors and applications

  • Selection of AC charger type-1 , type -2 and type -3
  • Communication between AC charger and EV
  • Selection of DC charger connector GB/T, CHAdeMO , CCS-1 and CSS-2
  • Communication methodology of DC fast chargers
  • IS/ IEC/ARAI/ standard of Charging topology ,Communication and connectors (IEC 61851-1, IEC 61851-24,62196-2 )
  • Selection sizing of Charger connector cable
  • Selection of EVA sheet , Bus bar and frame

Chapter 5 - Public Charging infrastructure / Electrical system design

  • Assessment of site Location for Public charging station
  • Selection and Sizing of Distribution transformer
  • Selection and sizing of HT Equipment ( VCB , CT , PT , Metering
  • Selection and Sizing HT Cables and LT cables
  • Selection and sizing of Distribution Board / feeders
  • Sizing calculation of LT and HT cable
  • Selection and of Compact Substation (CSS for EV CS)/ Power Sub station
  • Selection of relay and calculation
  • Preparation of EV Charger Single Line Diagram
  • Preparation of EV Charger Electric
  • Assessment of site Location for Public charging station
  • Selection and Sizing of Distribution transformer
  • Selection and sizing of HT Equipment ( VCB , CT , PT , Metering )
  • Selection and Sizing HT Cables and LT cables
  • Selection and sizing of Distribution Board / feeders
  • Selection and of Compact Substation (CSS for EV CS)/ Power Sub station)
  • Selection of relay and calculation
  • Preparation of EV Charger Single Line Diagram
  • Preparation of EV Charger Electric

Chapter 6 -EV Charger Integration with Solar Power Plant

  • Selection of PV module technology
  • Crystalline technology
  • Thin film technology
  • Bi-facial technology
  • Comparison between PV module technology
  • Comparison between solar power plant energy out put
  • Selection and Sizing inverter
  • Selecton and sizing of Cable and Earthing
  • ef. Std. IEC IEC 60068-2 (1,2,14,30),IEC 61683,IEC 60227,IEC 60502 IEC 60947 part I,II, III ,IEC 6121