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Online Battery Energy Storage System (BESS) Training

Online Battery Energy Storage System (BESS) Training

Online Battery Energy Storage System (BESS) Training Advance Mechanical & Civil Design Engineering Institute is providing best Battery Energy storage System which is a technology that enables power system operators and utilities to store energy for later use. A BESS is an electrochemical device that charges (or collects energy) from the grid or a power plant and then discharges that energy at a later time to provide electricity or other grid services when needed. Fundamentals of Battery Energy Storage System (BESS) training should be suitable for engineers, managers, supervisors as well as professional and technical personnel.


Process of Register for Online Battery Energy Storage System (BESS) Training

Who should attend:
Anybody who wants to gain valuable hands-on experience, especially Mechanical and Diploma in Mechanical engineers; Mechanical and general contractors, Mechanical designers .

Prerequisites: Participants should have a basic understanding of Mechanical Engineering ,Participants should also have Basic knowledge of Electrical.


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 and we'll process your registration over the phone.


Connect with Us :
  • Call Us: +91-8467024957,7531923094
  • whatsApp: +91-8467024957,7531923094
  • Skype: aedei01
  • Mail Us: info@advanceelectricaldesign@gmail.com

  • Syllabus Of Online Battery Energy Storage System (BESS) Training:

Module 1: Electrical system analysis

  • Engineering Planning of storage system
  • Identification type of load pattern (Continuous, intermitted or backup)
  • Identifications of existing electrical network and system information’s
  • Study of load pattern and load type to be served by BESS
  • Calculation of on grid / off grid load.
  • Calculation existing demand and future requirement
  • System study for BESS.
  • Electrical load and energy consumption calculation

Module 2:Scheme of Battery Energy Storage System

  • Solar-plus-storage system architectures
  • Advantage and disadvantage of AC Coupling
  • Advantage and disadvantage of DCC Coupling
  • Selection of AC coupling equipment’s .
  • Selection of DC coupling equipment’s
  • Comparison between AC coupling and DC coupling

Module 3: Battery sizing and selection

  • Type of battery and its selection (Li-ion, Ni-cd , lead acid etc.)
  • Selection of battery cell and types
  • Standardized sizes and shapes pertaining to both primary and secondary batteries
  • Selection of Key technical terms: end of life ,Depth of discharge (DOD),State of charge (SoC),Cycling rate (C-rate)
  • SStudy Battery critical parameters selection (voltage of cell , Specific energy, Charge (C-rate), dis-Charge (C-rate),Cycle life, current density , Thermal runaway and Applications
  • Battery series parallel connection and String size.
  • Battery mounting arrangement and installation methodology.
  • Battery backup hours

Module 4 : Selection & sizing of PCU and grid tied solar inverter

  • Selection & sizing of PCU and grid tied solar inverter
  • Working principle of bi-directional PCU
  • Selection & sizing AC rating of PCU.
  • Selection & sizing AC rating of grid tied solar inverter.
  • Selection critical parameter of inverter and PCU: input AC, AC output DC Input, DC output, Battery charger parameters, efficiency, protection, communication, Auxiliary power requirement
  • Energy Management System.
  • Batteries and battery management systems:

Module 5 : Selection & sizing of Balance of system for BESS .

  • Selection sizing of inverter duty transformer
  • Sizing of BESS container & ventilation arrangement
  • Selection of ACDB , DCDB and switchgear selection
  • Selection of DC cable between DC DB to PCU
  • Selection AC Cable between ACDB to transformer
  • Cable section for PCU and Inverter
  • Type of Earthing and calculation
  • Section of string inverter or central inverter
  • Protection scheme of HT side

Module 6 : Engineering drawings and Layouts.

  • Preparation of BESS single line diagram
  • Preparation of AC single line diagram
  • Preparation of DC single line diagram
  • Preparation of BESS container layout & location
  • Preparation of earthing layout.
  • Preparation of cable layouts.