CI SCALE & BESS PLants Design

01. CI Scale PV+BESS Plants Design And Simulation

image

Description

 

Chapter 1: Fundamentals of Solar Photovoltaic Systems

Introduction, Advantages, and Disadvantages of Solar PV Systems

PV System Types: Grid-Connected, Off-Grid, Hybrid, and Solar Pumping Systems

Power Quality Fundamentals in Grid-Connected PV Applications

Solar Fundamentals: Irradiance, PSH, Tilt, Azimuth, Effects of Angle on Irradiance, STC, and NOCT

DC and AC Electricity in PV Systems: Voltage, Current, and Power Relationships

Chapter 2: Key Components and Design Factors of PV Systems

Reference PV Plants for Design Parameters:

Grid-Connected: 3.3 MWp

BESS: 500 kWp

Solar Pumping: 125 HP

PV Modules: Principles, Types, Cell Layer Structure, Characteristics, PV Losses, Protection, and Temperature Coefficient

Mounting Structures: Requirements, Types of Installation, and Calculation Examples

DC Cable Sizing, Earthing, LPS, and Surge Arresters

Solar Inverters: AC/DC Specifications, Sizing, Ventilation, IP Types, Grid Connection, and String vs. Central Configuration

PV Systems: Inputs and Outputs

BESS Types and Operating Scenarios

Chapter 3: Design for Residential, Commercial & Energy Storage Systems

PV Project Phases: Design, Construction, and Commissioning

Design Software Workflow: PVSyst Simulation, SketchUp 3D Shading, AutoCAD Layouts, and SLDs

BESS: Purpose, AC-Coupled and DC-Coupled Systems, Losses, Degradation, Augmentation, BESS Sizing, and Practical Project Case Studies

Solar Pumping System Design:

Types of Pumps

CWR

Pump Selection

HP

PV and Inverter Sizing

Grid-Connected C&I Scale:

Contract Types

Consumption / Available Area

Design Workflow

Grid-Connected C&I Scale:

Site Survey Requirements

PR

AC/DC Ratio

Inverter Type

PV System

EDL

Grid-Connected C&I Scale:

Construction

FAT

SAT

Inverter Power-Up Steps

ROI, LCOE, and Financial Payback Analysis for C&I-Scale Projects

PV-Diesel Hybrid Systems:

Introduction

System Equipment

Design

SLD

Power Control

Wiring

Grid Settings

PV-Diesel Hybrid Systems:

Operation

Philosophy

Scenarios

BOQ

Financial Model

 

Outcomes

Chapter 1: Fundamentals of Solar Photovoltaic Systems

Introduction, Advantages, and Disadvantages of Solar PV Systems

PV System Types: Grid-Connected, Off-Grid, Hybrid, and Solar Pumping Systems

Power Quality Fundamentals in Grid-Connected PV Applications

Solar Fundamentals: Irradiance, PSH, Tilt, Azimuth, Effects of Angle on Irradiance, STC, and NOCT

DC and AC Electricity in PV Systems: Voltage, Current, and Power Relationships

Chapter 2: Key Components and Design Factors of PV Systems

Reference PV Plants for Design Parameters:

Grid-Connected: 3.3 MWp

BESS: 500 kWp

Solar Pumping: 125 HP

PV Modules: Principles, Types, Cell Layer Structure, Characteristics, PV Losses, Protection, and Temperature Coefficient

Mounting Structures: Requirements, Types of Installation, and Calculation Examples

DC Cable Sizing, Earthing, LPS, and Surge Arresters

Solar Inverters: AC/DC Specifications, Sizing, Ventilation, IP Types, Grid Connection, and String vs. Central Configuration

PV Systems: Inputs and Outputs

BESS Types and Operating Scenarios

Chapter 3: Design for Residential, Commercial & Energy Storage Systems

PV Project Phases: Design, Construction, and Commissioning

Design Software Workflow: PVSyst Simulation, SketchUp 3D Shading, AutoCAD Layouts, and SLDs

BESS: Purpose, AC-Coupled and DC-Coupled Systems, Losses, Degradation, Augmentation, BESS Sizing, and Practical Project Case Studies

Solar Pumping System Design:

Types of Pumps

CWR

Pump Selection

HP

PV and Inverter Sizing

Grid-Connected C&I Scale:

Contract Types

Consumption / Available Area

Design Workflow

Grid-Connected C&I Scale:

Site Survey Requirements

PR

AC/DC Ratio

Inverter Type

PV System

EDL

Grid-Connected C&I Scale:

Construction

FAT

SAT

Inverter Power-Up Steps

ROI, LCOE, and Financial Payback Analysis for C&I-Scale Projects

PV-Diesel Hybrid Systems:

Introduction

System Equipment

Design

SLD

Power Control

Wiring

Grid Settings

PV-Diesel Hybrid Systems:

Operation

Philosophy

Scenarios

BOQ

Financial Model

Meet Your Instructor

image

Amer Elwany

Eng. Amer
  • students 0
  • Sections 1
  • Lessons 1
  • Duration 18 h
  • Language Arabic
  • Certificate True

Course Syllabus

Chapter 1

Lessons

  • 1 - 01. CI Scale PV+BESS Plants Design And Simulation