IEEE 485-2010
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
View Superseded by
IEEE Recommended Practice for Sizing Lead-Acid Batteries for Stationary Applications
English
15-04-2011
08-06-2020
1. Overview
2. Normative references
3. Definitions
4. Defining loads
5. Cell selection
6. Determining battery size
7. Cell voltage/time profile calculation
Annex A (informative) - Battery and cell sizing examples
Annex B (informative) - Converting constant power and
resistance loads to constant current
Annex C (informative) - Calculating cell voltage during
discharge
Annex D (informative) - Consideration of cell types
Annex E (informative) - Constant power sizing
Annex F (informative) - Development and use of battery
discharge curves
Annex G (informative) - Random loads
Annex H (informative) - Capacity variation during life
Annex I (informative) - Full-size worksheet
Annex J (informative) - Bibliography
Covers methods for defining the dc load and for sizing a lead-acid battery to supply that load for stationary battery applications in full float operations are described.
| Committee |
Energy Storage & Stationary Battery Committee
|
| DevelopmentNote |
Supersedes IEEE DRAFT 485. (11/1999)
|
| DocumentType |
Standard
|
| Pages |
90
|
| PublisherName |
Institute of Electrical & Electronics Engineers
|
| Status |
Superseded
|
| SupersededBy | |
| Supersedes |
| I.S. EN 62270:2004 | HYDROELECTRIC POWER PLANT AUTOMATION - GUIDE FOR COMPUTER-BASED CONTROL |
| IEEE 1660-2008 | IEEE Guide for Application and Management of Stationary Batteries Used in Cycling Service |
| IEEE DRAFT 1013 : D7 NOV 99 | DRAFT RECOMMENDED PRACTICE FOR SIZING LEAD-ACID BATTERIES FOR PHOTOVOLTAIC (PV) SYSTEMS |
| API 14FZ : 2013 | RECOMMENDED PRACTICE FOR DESIGN, INSTALLATION, AND MAINTENANCE OF ELECTRICAL SYSTEMS FOR FIXED AND FLOATING OFFSHORE PETROLEUM FACILITIES FOR UNCLASSIFIED AND CLASS 1, ZONE 0, ZONE 1, AND ZONE 2 LOCATIONS |
| IEEE DRAFT 1147 : D8 2005 | GUIDE FOR THE REHABILITATION OF HYDROELECTRIC POWER PLANTS |
| UFC 3-520-01 : 2015 | UNIFIED FACILITIES CRITERIA - INTERIOR ELECTRICAL SYSTEMS |
| IEEE 946-2004 | IEEE Recommended Practice for the Design of DC Auxiliary Power Systems for Generating Systems |
| IEEE 1187-2013 REDLINE | IEEE Recommended Practice for Installation Design and Installation of Valve-Regulated Lead-Acid Batteries for Stationary Applications |
| 12/30260040 DC : 0 | BS EN 62270 - GUIDE FOR COMPUTER-BASED CONTROL FOR HYDROELECTRIC POWER PLANT AUTOMATION |
| IEEE 484-2002 | IEEE Recommended Practice for Installation Design and Installation of Vented Lead-Acid Batteries for Stationary Applications |
| IEEE 1657-2009 | IEEE Recommended Practice for Personnel Qualifications for Installation and Maintenance of Stationary Batteries |
| IEEE 535-2013 | IEEE Standard for Qualification of Class 1E Vented Lead Acid Storage Batteries for Nuclear Power Generating Stations |
| IEEE 1013-2007 | IEEE Recommended Practice for Sizing Lead-Acid Batteries for Stand-Alone Photovoltaic (PV) Systems |
| 01/706551 DC : DRAFT APR 2001 | BS EN 62270 ED.1 - IEEE GUIDE FOR COMPUTER-BASED CONTROL FOR HYDROELECTRIC POWER PLANT AUTOMATION |
| EN 62270:2004 | Hydroelectric power plant automation - Guide for computer-based control |
| API 14F : 2008 : R2013 | DESIGN, INSTALLATION, AND MAINTENANCE OF ELECTRICAL SYSTEMS FOR FIXED AND FLOATING OFFSHORE PETROLEUM FACILITIES FOR UNCLASSIFIED AND CLASS 1, DIVISION 1 AND DIVISION 2 LOCATIONS |
| NFPA 70 : 2017 | NATIONAL ELECTRICAL CODE |
| IEC 62270:2013 | Guide for computer-based control for hydroelectric power plant automation |
| IEEE DRAFT 1184 : D21 2006 | GUIDE FOR BATTERIES FOR UNINTERRUPTIBLE POWER SUPPLY SYSTEMS |
| IEEE 1818-2017 | IEEE Guide for the Design of Low-Voltage Auxiliary Systems for Electric Power Substations |
| IEEE 3001.2:2017 | IEEE Recommended Practice for Evaluating the Electrical Service Requirements of Industrial and Commercial Power Systems |
| IEEE DRAFT 484 : APR 95 | RECOMMENDED PRACTICE FOR INSTALLATION DESIGN AND INSTALLATION OF VENTED LEAD ACID BATTERIES FOR STATIONARY APPLICATIONS |
| CEI EN 62270 : 2005 | HYDROELECTRIC POWER PLANT AUTOMATION - GUIDE FOR COMPUTER-BASED CONTROL |
| IEEE 1526-2003 | IEEE Recommended Practice for Testing the Performance of Stand-Alone Photovoltaic Systems |
| IEEE 1184-2006 | IEEE Guide for Batteries for Uninterruptible Power Supply Systems |
| API RP 14F:2008 | DESIGN, INSTALLATION, AND MAINTENANCE OF ELECTRICAL SYSTEMS FOR FIXED AND FLOATING OFFSHORE PETROLEUM FACILITIES FOR UNCLASSIFIED AND CLASS 1, DIVISION 1 AND DIVISION 2 LOCATIONS |
| IEEE 1147-2005 | IEEE Guide for the Rehabilitation of Hydroelectric Power Plants |
| IEEE 308-2012 REDLINE | IEEE Standard Criteria for Class 1E Power Systems for Nuclear Power Generating Stations |
| BS EN 62270:2004 | Hydroelectric power plant automation. Guide for computer-based control |
| IEEE DRAFT 1187 : D1 OCT 94 | RECOMMENDED PRACTICE FOR INSTALLATION DESIGN AND INSTALLATION OF VALVE-REGULATED LEAD-ACID STORAGE BATTERIES FOR STATIONARY APPLICATIONS |
| IEEE 1679-2010 | IEEE Recommended Practice for the Characterization and Evaluation of Emerging Energy Storage Technologies in Stationary Applications |
| IEEE/IEC 1249-2013 | IEC/IEEE Guide for Computer-based Control for Hydroelectric Power Plant Automation |
| IEEE 450-2010 REDLINE | IEEE Recommended Practice for Maintenance, Testing, and Replacement of Vented Lead-Acid Batteries for Stationary Applications |
| IEEE DRAFT 1188 : D9 2005 | RECOMMENDED PRACTICE FOR MAINTENANCE, TESTING AND REPLACEMENT OF VALVE REGULATED LEAD ACID BATTERIES FOR STATIONARY APPLICATIONS |
| API 14F REDLINE : 2008 | DESIGN, INSTALLATION, AND MAINTENANCE OF ELECTRICAL SYSTEMS FOR FIXED AND FLOATING OFFSHORE PETROLEUM FACILITIES FOR UNCLASSIFIED AND CLASS 1, DIVISION 1 AND DIVISION 2 LOCATIONS |
| PIP ELSAP11 : 2016 | DESIGN AND FABRICATION OF FLOODED-CELL LEAD-ACID BATTERIES |
| PIP ELSAP12 : 2014 | DESIGN AND FABRICATION OF VALVE-REGULATED LEAD-ACID BATTERIES |
| IEEE 308-2020 REDLINE | IEEE Standard Criteria for Class 1E Power Systems for Nuclear Power Generating Stations |
| IEEE 387-2017 | IEEE Standard for Criteria for Diesel Generator Units Applied as Standby Power Supplies for Nuclear Power Generating Stations |
| IEEE 1578-2007 | IEEE Recommended Practice for Stationary Battery Electrolyte Spill Containment and Management |
| IEEE 1187-2013 REDLINE | IEEE Recommended Practice for Installation Design and Installation of Valve-Regulated Lead-Acid Batteries for Stationary Applications |
| IEEE 1187-2002 | IEEE Recommended Practice for Installation Design and Installation of Valve-Regulated Lead-Acid Batteries for Stationary Applications |
| IEEE 535-2013 | IEEE Standard for Qualification of Class 1E Vented Lead Acid Storage Batteries for Nuclear Power Generating Stations |
| IEEE 484-2002 | IEEE Recommended Practice for Installation Design and Installation of Vented Lead-Acid Batteries for Stationary Applications |
| IEEE 1188-2005 REDLINE | IEEE Recommended Practice for Maintenance, Testing, and Replacement of Valve-Regulated Lead-Acid (VRLA) Batteries for Stationary Applications |
| IEEE 450-2002 | IEEE Recommended Practice for Maintenance, Testing , and Replacement of Vented Lead-Acid Batteries for Stationary Applications |
| IEEE 323-2003 | IEEE Standard for Qualifying Class 1E Equipment for Nuclear Power Generating Stations |
| IEEE 450-2010 REDLINE | IEEE Recommended Practice for Maintenance, Testing, and Replacement of Vented Lead-Acid Batteries for Stationary Applications |
| IEEE 1184-2006 | IEEE Guide for Batteries for Uninterruptible Power Supply Systems |
| IEEE 627-2010 | IEEE Standard for Qualification of Equipment Used in Nuclear Facilities |
| IEEE 946-2004 | IEEE Recommended Practice for the Design of DC Auxiliary Power Systems for Generating Systems |
Access your standards online with a subscription
-
Simple online access to standards, technical information and regulations.
-
Critical updates of standards and customisable alerts and notifications.
-
Multi-user online standards collection: secure, flexible and cost effective.