IEEE Recommended Practice for Conducting Load-Flow Studies and Analysis of Industrial and Commercial Power Systems
IEEE Std 3002.2-2018
Year: 2018
Abstract: Activities related to load flow analysis, including design considerations for new systems, analytical studies for existing systems, as well as operational and model validation considerations for industrial and commercial power systems are addressed. Load flow analysis includes steadystate power flow and voltage analysis along with considerations for optimal power flow calculations. The use of computer-aided analysis software, with a list of desirable capabilities recommended to conduct a modern load-flow study, is emphasized. Examples of system data requirements and result analysis techniques are presented.
Subject: cable ampacity
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IEEE Recommended Practice for Conducting Load-Flow Studies and Analysis of Industrial and Commercial Power Systems
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| contributor author | IEEE - The Institute of Electrical and Electronics Engineers, Inc. | |
| date accessioned | 2019-07-24T09:05:40Z | |
| date available | 2019-07-24T09:05:40Z | |
| date issued | 2018 | |
| identifier isbn | 978-1-5044-5240 | |
| identifier other | 08529292.pdf | |
| identifier uri | https://yse.yabesh.ir/std/handle/yse/273563 | |
| description abstract | Activities related to load flow analysis, including design considerations for new systems, analytical studies for existing systems, as well as operational and model validation considerations for industrial and commercial power systems are addressed. Load flow analysis includes steadystate power flow and voltage analysis along with considerations for optimal power flow calculations. The use of computer-aided analysis software, with a list of desirable capabilities recommended to conduct a modern load-flow study, is emphasized. Examples of system data requirements and result analysis techniques are presented. | |
| language | English | |
| title | IEEE Recommended Practice for Conducting Load-Flow Studies and Analysis of Industrial and Commercial Power Systems | en |
| title | IEEE Std 3002.2-2018 | num |
| type | Standard | |
| page | 73 | |
| tree | IEEE - The Institute of Electrical and Electronics Engineers, Inc.:;2018 | |
| contenttype | Fulltext | |
| subject keywords | cable ampacity | |
| subject keywords | compensation | |
| subject keywords | convergence | |
| subject keywords | demand factor | |
| subject keywords | electrical losses | |
| subject keywords | Gauss-Seidel | |
| subject keywords | generation | |
| subject keywords | IEEE 3002.2 | |
| subject keywords | impedance | |
| subject keywords | industrial loads | |
| subject keywords | industrial power system | |
| subject keywords | load flow analysis | |
| subject keywords | load-flow studies | |
| subject keywords | Newton-Raphson | |
| subject keywords | overload | |
| subject keywords | over voltage | |
| subject keywords | power demand | |
| subject keywords | power factor correction | |
| subject keywords | power flow | |
| subject keywords | system validation | |
| subject keywords | under voltage | |
| subject keywords | voltage drop | |
| subject keywords | voltage profile | |
| subject keywords | voltage rise | |
| subject keywords | IEEE Standards | |
| subject keywords | Industrial power systems | |
| subject keywords | Load flow analysis | |
| subject keywords | Power cables | |
| subject keywords | Voltage control | |
| subject keywords | Power system demand | |
| subject keywords | Voltage sag | |
| subject keywords | Power generation | |
| subject keywords | Ampicity | |
| subject keywords | Load compensation | |
| identifier DOI | 10.1109/IEEESTD.2018.8529292 |

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