Template:Menu Power Factor Correction: Difference between revisions

From Electrical Installation Guide
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{| cellpadding="1" style="float: {{{side|right}}}; border: 1px solid #8888aa; background: #f7f8ff; padding: 5px; font-size: 95%; margin: 0 15px 0 15px; width:250px;"
| style="background: #ccf; text-align: center;" | [[Scope and content of Wiki EIG|Scope and content of Wiki EIG]]
| style="background: #ccf; text-align: center;" | [[General rules of electrical installation design]]
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| style="background: #ccf; text-align: center;" | [[General rules of electrical installation design|General rules of electrical installation design]]
| style="background: #ccf; text-align: center;" | [[Connection to the MV utility distribution network]]
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| style="background: #ccf; text-align: center;" | [[Connection to the MV utility distribution network|Connection to the MV utility distribution network]]
| style="background: #ccf; text-align: center;" | [[Connection to the LV utility distribution network]]
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| style="background: #ccf; text-align: center;" | [[Connection to the LV utility distribution network|Connection to the LV utility distribution network]]
| style="background: #ccf; text-align: center;" | [[MV and LV architecture selection guide]]
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| style="background: #ccf; text-align: center;" | [[MV & LV architecture selection guide|MV &amp; LV architecture selection guide]]
| style="background: #ccf; text-align: center;" | [[LV Distribution]]
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| style="background: #ccf; text-align: center;" | [[LV Distribution|LV Distribution]]
| style="background: #ccf; text-align: center;" | [[Protection against electric shocks]]
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| style="background: #ccf; text-align: center;" | [[Protection against electric shocks|Protection against electric shocks]]
| style="background: #ccf; text-align: center;" | [[Sizing and protection of conductors]]
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| style="background: #ccf; text-align: center;" | [[Sizing and protection of conductors|Sizing and protection of conductors]]
| style="background: #ccf; text-align: center;" | [[LV switchgear: functions and selection]]
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| style="background: #ccf; text-align: center;" | [[LV switchgear: functions & selection|LV switchgear: functions &amp; selection]]
| style="background: #ccf; text-align: center;" | [[Overvoltage protection]]
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| style="background: #ccf; text-align: center;" | [[Protection against voltage surges in LV|Protection against voltage surges in LV]]
| style="background: #ccf; text-align: center;" | [[Energy Efficiency in electrical distribution]]
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| style="background: #ccf; text-align: center;" | [[Energy Efficiency in electrical distribution|Energy Efficiency in electrical distribution]]
| style="background: #ccf; text-align: center;" id="chapter"| [[Power Factor Correction]]
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| style="background: #ccf; text-align: center;" id="chapter" | [[Power factor correction and harmonic filtering|Power factor correction and harmonic filtering]]
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* [[Reactive energy and power factor]]
* [[Power factor and Reactive power]]
**[[The nature of reactive energy|The nature of reactive energy]]
** [[Definition of Power Factor]]
**[[Equipment and appliances requiring reactive energy|Equipment and appliances requiring reactive energy]]
** [[Definition of reactive power]]
**[[The power factor|The power factor]]  
** [[The nature of reactive power]]
**[[Practical values of power factor|Practical values of power factor]]  
** [[Reactive power of capacitors]]
* [[Why to improve the power factor?|Why to improve the power factor?]]
** [[Equipment and appliances requiring reactive energy]]
** [[Practical values of power factor]]
* [[Why to improve the power factor?]]
* [[How to improve the power factor?]]
* [[How to improve the power factor?]]
**[[Theoretical principles to improve power factor|Theoretical principles to improve power factor]]
** [[Theoretical principles to improve power factor]]
**[[Equipment to improve power factor|Equipment to improve power factor]]
** [[Equipment to improve power factor]]
**[[The choice between a fixed or automatically-regulated bank of capacitors|The choice between a fixed or automatically-regulated bank of capacitors]]
** [[The choice between a fixed or automatically-regulated bank of capacitors]]
* [[Where to install power factor correction capacitors?|Where to install power factor correction capacitors?]]
* [[Where to install power factor correction capacitors?]]
* [[How to decide the optimum level of compensation?|How to decide the optimum level of compensation?]]
* [[How to determine the optimum level of compensation?]]
* [[Compensation at the terminals of a transformer]]
* [[Compensation at the terminals of a transformer]]
**[[Compensation to increase the available active power output|Compensation to increase the available active power output]]
** [[Compensation to increase the available active power output]]
**[[Compensation of reactive energy absorbed by the transformer|Compensation of reactive energy absorbed by the transformer]]
** [[Compensation of reactive energy absorbed by the transformer]]
* [[Power factor correction of induction motors|Power factor correction of induction motors]]
* [[Power factor correction of induction motors]]
* [[Example of an installation before and after power-factor correction|Example of an installation before and after power-factor correction]]
* [[Example of an installation before and after power-factor correction]]
* [[The effects of harmonics|The effects of harmonics]]
* [[The effects of harmonics]]
**[[Problems arising from power-system harmonics|Problems arising from power-system harmonics]]
** [[Problems arising from power-system harmonics]]
**[[Possible solutions for power-system harmonic|Possible solutions for power-system harmonic]]
** [[Risk of resonance due to power-system harmonics]]
**[[Choosing the optimum solution for power-system harmonics|Choosing the optimum solution for power-system harmonics]]
** [[Possible solutions for power-system harmonics]]
* [[Implementation of capacitor banks|Implementation of capacitor banks]]
* [[Implementation of capacitor banks]]
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| style="background: #ccf; text-align: center;" | [[Power harmonics management|Power harmonics management]]
| style="background: #ccf; text-align: center;" | [[Power harmonics management]]
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| style="background: #ccf; text-align: center;" | [[Characteristics of particular sources and loads|Characteristics of particular sources and loads]]
| style="background: #ccf; text-align: center;" | [[Characteristics of particular sources and loads]]
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| style="background: #ccf; text-align: center;" | [[PhotoVoltaic (PV) installation|PhotoVoltaic (PV) installation]]
| style="background: #ccf; text-align: center;" | [[PhotoVoltaic (PV) installation]]
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| style="background: #ccf; text-align: center;" | [[Residential and other special locations]]
| style="background: #ccf; text-align: center;" | [[Residential and other special locations]]
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| style="background: #ccf; text-align: center;" | [[ElectroMagnetic Compatibility (EMC)|ElectroMagnetic Compatibility (EMC)]]
| style="background: #ccf; text-align: center;" | [[ElectroMagnetic Compatibility (EMC)]]
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Revision as of 14:42, 23 August 2013

General rules of electrical installation design
Connection to the MV utility distribution network
Connection to the LV utility distribution network
MV and LV architecture selection guide
LV Distribution
Protection against electric shocks
Sizing and protection of conductors
LV switchgear: functions and selection
Overvoltage protection
Energy Efficiency in electrical distribution
Power Factor Correction
Power harmonics management
Characteristics of particular sources and loads
PhotoVoltaic (PV) installation
Residential and other special locations
ElectroMagnetic Compatibility (EMC)