Smart Panels: Difference between revisions

From Electrical Installation Guide
m (cleaned up source: table format, etc ...)
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<br>[[Image:Fig K22.jpg|left]] <br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br>'''''Fig. K20:''' Monitoring architecture for a small site which only supports sub-metering''  
[[File:Fig K22.jpg|none]]
'''''Fig. K20:''' Monitoring architecture for a small site which only supports sub-metering''  


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<br>[[Image:Fig K23.jpg|left|800x421px]] <br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br>'''''Fig. K21: '''Monitoring and control architecture for a company with several small sites''  
[[File:Fig K23.jpg|none|800x421px]]
'''''Fig. K21: '''Monitoring and control architecture for a company with several small sites''  


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<br>[[Image:Fig K24.jpg|left|777x450px]] <br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br>'''''Fig. K22:&nbsp;'''''<i>Architecture for large multiple-site arrangements</i>  
[[File:Fig K24.jpg|none|777x450px]]
'''''Fig. K22:&nbsp;'''''<i>Architecture for large multiple-site arrangements</i>  


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<br>[[Image:Fig K25.jpg|left|683x822px]] <br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br>
[[File:Fig K25.jpg|none|683x822px]]
 
'''''Fig. K23:''' Monitoring and control architecture for a large, sensitive industrial site''  
'''''Fig. K23:''' Monitoring and control architecture for a large, sensitive industrial site''  


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<br>[[Image:Fig K26.jpg|left|696x844px]]&nbsp;<br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br>
[[File:Fig K26.jpg|none|696x844px]]
 
'''''Fig. K24:'''''&nbsp;''Architecture for a large service-industry site''  
'''''Fig. K24:'''''&nbsp;''Architecture for a large service-industry site''  


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{| style="width: 787px; height: 143px" cellspacing="1" cellpadding="1" width="787" border="1"
{| class="wikitable" style="width: 787px; height: 143px" width="787"
|-
|-
| &nbsp;  
| &nbsp;  
| bgcolor="#0099cc" | '''Energy savings'''
! Energy savings  
| bgcolor="#0099cc" | '''Cost optimisation'''
! Cost optimisation  
| bgcolor="#0099cc" | '''Availability and reliability'''
! Availability and reliability
|-
|-
| '''Variable speed drives'''  
| '''Variable speed drives'''  
| valign="top" align="center" | &nbsp;<math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>&nbsp;  
| align="center" | &nbsp;{{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}&nbsp;  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
|-
|-
| '''High-performance motors and transformers'''  
| '''High-performance motors and transformers'''  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}
| &nbsp;  
| &nbsp;  
| &nbsp;
| &nbsp;
|-
|-
| '''Supply for MV motors'''  
| '''Supply for MV motors'''  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}
| &nbsp;  
| &nbsp;  
| &nbsp;
| &nbsp;
|-
|-
| '''Power factor correction'''  
| '''Power factor correction'''  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}
| &nbsp;
| &nbsp;
|-
|-
| '''Harmonics management'''  
| '''Harmonics management'''  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
|-
|-
| '''Circuit configuration'''  
| '''Circuit configuration'''  
| &nbsp;  
| &nbsp;  
| &nbsp;  
| &nbsp;  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}
|-
|-
| '''Auxiliary generators'''  
| '''Auxiliary generators'''  
| &nbsp;  
| &nbsp;  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}
|-
|-
| '''Outage-free supply devices&nbsp;'''  
| '''Outage-free supply devices&nbsp;'''  
| &nbsp;  
| &nbsp;  
| &nbsp;  
| &nbsp;  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}
|-
|-
| '''Smooth starting'''  
| '''Smooth starting'''  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}
|-
|-
| '''iMCC'''  
| '''iMCC'''  
| &nbsp;  
| &nbsp;  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet }}
|-
|-
| '''Architecture based on intelligent equipment Level 1'''  
| '''Architecture based on intelligent equipment Level 1'''  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
| &nbsp;
| &nbsp;
|-
|-
| '''Specialised, centralised architecture for electricians Level 2'''  
| '''Specialised, centralised architecture for electricians Level 2'''  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
|-
|-
| '''General/conventional, centralised architecture Level 3'''  
| '''General/conventional, centralised architecture Level 3'''  
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet }}
| valign="top" align="center" | <math>\color{RoyalBlue}\bullet\ \bullet\ \bullet</math>
| align="center" | {{#tag:math|{{FormulaTableCell}}\color{RoyalBlue}\bullet\ \bullet\ \bullet }}
|}
|}



Revision as of 13:10, 15 November 2013

In reality, systems for monitoring and energy control are physically very similar and overlap with the electrical distribution architecture whose layout they often replicate.The arrangements shown in Figure K20 to Figure K24 represent possible examples and reflect the requirements typically associated with the distribution involved (in terms of feeder numbers, the amount and quality of energy required, digital networks, management mode, etc.). They help to visualise and explain all the various services which can be used to promote energy efficiency.


Fig K22.jpg

Fig. K20: Monitoring architecture for a small site which only supports sub-metering


Fig K23.jpg

Fig. K21: Monitoring and control architecture for a company with several small sites


Fig K24.jpg

Fig. K22: Architecture for large multiple-site arrangements


Fig K25.jpg

Fig. K23: Monitoring and control architecture for a large, sensitive industrial site


Fig K26.jpg

Fig. K24: Architecture for a large service-industry site


In addition, these diagrams make it clear that the choice of components is determined by the choice of architecture (for example, the sensors must be right for the digital bus). The reverse also applies, however, since the initial choice of architecture may be affected by a technological/economic assessment of component installation and the results sought. In fact, the cost (in terms of purchase and installation) of these components, which sometimes have the same name but different characteristics, may vary widely and produce very variable results:

  • A measuring device can measure one or more parameters with or without using calculations (energy, power, cos ϕ).
  • Replacing a standard circuit breaker with a circuit breaker containing an electronic control unit can provide a great deal of information on a digital bus (effective and instantaneous measurements of currents, phase-to-neutral and phase-to-phase voltages, imbalances of phase currents and phase-to-phase voltages, frequency, total or phase-specific active and reactive power, etc.).

When designing these systems, therefore, it is very important to define objectives for energy efficiency and be familiar with all the technological solutions, including their respective advantages, disadvantages and any restrictions affecting their application (see Fig. K27).
To cover all the various scenarios, it may be necessary to search through various hardware catalogues or simply consult a manufacturer offering a wide range of electrical distribution equipment and information systems. Certain manufacturers, including Schneider Electric, offer advisory and research services to assist those looking to select and implement all these various pieces of equipment.



  Energy savings Cost optimisation Availability and reliability
Variable speed drives  [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math]  [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math]
High-performance motors and transformers [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math]    
Supply for MV motors [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math]    
Power factor correction [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math]  
Harmonics management [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math]
Circuit configuration     [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math]
Auxiliary generators   [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math]
Outage-free supply devices      [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math]
Smooth starting [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math]
iMCC   [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet }[/math]
Architecture based on intelligent equipment Level 1 [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math]  
Specialised, centralised architecture for electricians Level 2 [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math]
General/conventional, centralised architecture Level 3 [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet }[/math] [math]\displaystyle{ \definecolor{bggrey}{RGB}{234,234,234}\pagecolor{bggrey}\color{RoyalBlue}\bullet\ \bullet\ \bullet }[/math]

Fig. K27: Solutions chart

zh:节能解决方案 - 设计信息和监控系统

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