1 Building a New Electric World How can your LV electrical installation be rapidly designed and optimized?

Slides:



Advertisements
Similar presentations
What about type tested assemblies?
Advertisements

Control Circuit Protection Supplementary Protectors vs
Fire Alarm Circuit Design and Fire Alarm Control Units
Square D Electrical Protection And Monitoring
Electrical Installation
RWD CONTROLLERS TECHNICAL
Motor Starter Coordination
NETWORK ANALYSIS IN GIS ENVIRONMENT Uday Deshmukh North Delhi Power Limited.
Properties of cast resin transformers
© ABB Ltd - ATLV /26/2015 Insert image here Fuses vs Fuseless Technology.
EE4503 Electrical Systems Design
© Emotron AB Protection against damage and downtime Emotron M20 Shaft Power Monitor.
1 PCA2 On-load Protection Condition Analyser. 2 PCA2 online testing concept Concept introduction: PCA2 is a new system test approach intended to save.
Chapter 8 Output Modules.
One solution, many application Integrated Electronic Solution PowerSupply Flex.
Dealer Certification Section 2: Building the Network Physical Planning & Documentation Power Sources & Distribution Voltage Drop Calculations Copyright.
Bonding, Grounding and the NEC  Presented by The National Association of Certified Home Inspectors
Safety Testers (plus more) from Dranetz and Gossen Metrawatt General Presentation.
SUBSTATION MODELING: PROTECTION AND AUTOMATION
1 EXPERIENCE AND RELIABILITY. 2 Short circuit loop measurements EN EN
A Research Institute of the University of Central Florida FSEC Photovoltaic System Certification Process Stephen Barkaszi, PE Eric Schneller.
Thévenin’s and Norton’s Theorems
Overvoltage protection (surge arrester)
EPR ‘Fundamentals of Calculation of Earth Potential Rise in the Underground Power Distribution Cable Network’ by Ashok K. Parsotam (1997) available free.
1 ENE 429 Antenna and Transmission lines Theory Lecture 4 Transmission lines.
Copyright © 2013 Rockwell Automation, Inc. All Rights Reserved.Rev 5058-CO900E PUBLIC INFORMATION L13 - Reducing Machinery Safety System Development Time.
Confidential / Property of Danfoss Drives A/S DKDD-SMC 1 Drives Division Danfoss presents - VLT ® 2800 Series.
Purpose of Voltage Regulators
Grounding, bonding, and ground fault currents
Module 5, Unit A Vocabulary Review Game. 2 pt 3 pt 4 pt 5pt 1 pt 2 pt 3 pt 4 pt 5 pt 1 pt 2pt 3 pt 4pt 5 pt 1pt 2pt 3 pt 4 pt 5 pt 1 pt 2 pt 3 pt 4pt.
Home Electrical Systems. Behavior Objectives  Define the basics of Electrical Systems  Explain the basic principles of Electricity.  Describe the different.
Regents Physics Chapters 17/18 Circuits  Series Circuits.
1.  Transmission lines or T-lines are used to guide propagation of EM waves at high frequencies.  Examples: › Transmitter and antenna › Connections.
PowerIT Air Insulated Cubicle Uniswitch
EPack relaunch. Schneider Electric 2 -Industrial – Eurotherm – 16/12/2015 ●1. Reduce your equipment costs.
Grid connection of distributed generation
CheckMeter 2.1 Portable Working Standard Page 1 March 2009.
ABOC/ATC days Electrical Network: Selectivity and Protection Plan José Carlos GASCON TS–EL Group 22 January 2007.
Electrical Installation II1 Assessment of General Characteristics (Note: All the mentioned tables in this course refer to, unless otherwise specified,
1 Pacini IT Barcelona May 2003 Improvement in the Distribution Assets Management by the Exploitation of the Innovative Component Technology.
Preventing Voltage Sags and Interruptions. # Equipment supplier awareness: # Customers level protection: # Utility level protection: - Sag magnitude and.
Bringing together leading research institutions to advance electric ship concepts. Power Interconnect Tool Angela Card Mississippi State.
Objective of Lecture State Thévenin’s and Norton Theorems. Chapter 4.5 and 4.6 Fundamentals of Electric Circuits Demonstrate how Thévenin’s and Norton.
Copyright © 2010 Rockwell Automation, Inc. All rights reserved. Machine Condition Monitoring on ControlNet RSLogix5000 support for XM ®
Exit REMOTE POWER SYSTEM ”Turning your copper into gold”
Development of CAD concept model of package transformer substation (PTS) Aleksandra Seledkova Perm National Research Polytechnic University.
FEBDOK Gjermund Hovde - NELFO. FEBDOK Launched in 1991 Electrical design software Developed by NELFO.
The Series Circuit Summary 1. The sum of the _____________or voltage equals the potential rise of the source. 2. The current is ______________ everywhere.
FSEC Photovoltaic System Certification Process
Introduction to Global AC Power
Graz University of Technology May 11th – 12th Maribor, Slovenia
Basic Fuse Selection.
Introduction to Global AC Power
PSCAD models.
Mastering Autodesk Revit MEP 2016 CHAPTER 14: Circuiting and Panels
Advanced Fuse-Saving Techniques
SMART GRID BASED FAULT IDENTIFICATION SYSTEM
De-Ice control devices
voltage profiles short circuit currents protection scheme
FSEC Photovoltaic System Certification Process
Review of Distribution Network Protection
Instructional presentation
Associate Professor, Dept. of Physics,
Author Team Supervisor A. Toral M. Mansouri S.L. Birch Y.K. Sin
The smart choice for demanding motor switching
Voltage Reflection Coefficient
Biosco: MV/LV prefabricated substations IEC Presentation of the standard Safety is a choice.
Presentation transcript:

1 Building a New Electric World How can your LV electrical installation be rapidly designed and optimized?

Corporate En2 Summary A tool to save time A reliable tool to comply with standards 6 steps to creating a complete design

Corporate En3 A tool to save time A reliable tool to comply with standards 6 steps to creating a complete design

Corporate En4 A tool to save time, Ecodial enables you to fully design a LV electrical installation Ecodial draws, calculates and dimensions equipment on a low-voltage network. You can easily achieve a single line diagram by dragging and dropping electrotechnical macro-componants from a library With one click, you can design the whole installation, including min./max. short-circuit currents, voltage drop values, cable dimensions plus automatic protective device optimization as well as trip-unit settings. Customized data entry enables you to change Ecodial’s selection. You can control the performance level of your protection system and view tripping curve coordinates, discrimination limits, effect of optimization by means of cascading. You can master the report, including cable, trip-unit settings, calculation formula sheets

Corporate En5 A tool to save time A reliable tool to comply with standards 6 steps to creating a complete design

Corporate En6 A reliable tool to comply with Standards An independent institute has certified Ecodial’s compliance A unique international standard (IEC909), which has been simplified in CENELEC guide R for LV calculation software: Ecodial calculates ALL short-circuit currents (min., max., ground fault, single-phase, three-phase), voltage drop, cable short-circuit resistance, etc.  Note: Simplification is acceptable, as product standards (IEC ) take these transient phenomena into consideration. UTE certification n° 15L-602 provides you with an assurance that Ecodial complies with calculation standards

Corporate En7 A reliable tool to comply with Standards (cont.) Ecodial is based on Schneider’s worldwide experience Installation standards address all the issues relative to safety:  overload protection, minimum cable sizes, protection against direct and indirect contact, short-circuit protection.  Generally speaking, these rules are all based on the same initial document: IEC Ecodial also complies fully with NEN1010, AS3008, NFC There are 15,000 users of Ecodial in 40 different countries around the world.

Corporate En8 A tool to save time A reliable tool to comply with standards 6 steps to creating a complete design

Corporate En9 6 steps to achieve a complete design Step 1 - General characteristics  Definition of the global parameters Step 2 - Drawing  Definition of the network layout Step 3 - Definition of circuit characteristics  Definition of the terminal load, the cable lengths, etc… Step 4 - Power sum  Calculation of the required power, and current in the distribution circuits Step 5 - Calculation  Sizing of cable, calculation of short-circuit currents, choice of equipment, etc… Step 6 - Results  Printout of the input/output used for the calculations