Difference between revisions of "PV source and charge controller sizing and selection overview"

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[[Category:PV source and charge controller sizing and selection]]
 
[[Category:PV source and charge controller sizing and selection]]
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[[File:PVandCCprocess.png|thumb|A flowchart depicting the primary inputs and outputs of the PV source and charge controller sizing and selection process. The arrow returning from the ''verify configuration'' boxes means that the configuration must be reconsidered if it fails the verification process.]]
 
[[File:PVandCCprocess.png|thumb|A flowchart depicting the primary inputs and outputs of the PV source and charge controller sizing and selection process. The arrow returning from the ''verify configuration'' boxes means that the configuration must be reconsidered if it fails the verification process.]]
The most complicated part of the design process involves sizing and configuring the [[PV module|PV source]] as it must be done in conjunction with the sizing and selection of the [[Charge controller|charge controller]]. This process may need to be performed various times until the ideal design is found for the project, but going through this process will becomes simpler with each subsquent design. There are many different design parameters in this process for which conservative values and appropriate values from component specifications sheets should be used.
 
  
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The most complicated part of the design process involves sizing and configuring the [[Special:MyLanguage/PV module|PV source]] as it must be done in conjunction with the sizing and selection of the [[Special:MyLanguage/Charge controller|charge controller]]. This process may need to be performed various times until the ideal design is found for the project, but going through this process will becomes simpler with each subsquent design. There are many different design parameters in this process for which conservative values and appropriate values from component specifications sheets should be used.
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The main inputs to this process are:
 
The main inputs to this process are:
#'''[[Load and solar resource comparison|DC load evaluation]]''' - included in average daily Watt-hours required for the design month and used to size the PV source.
 
#'''[[Load and solar resource comparison|AC load evaluation]]''' - included in average daily Watt-hours required for the design month and used to size the PV source.
 
#'''[[System voltage parameter]]''' - used to determine potential PV module and charge controller configurations.
 
#'''[[Load and solar resource comparison|Solar resource]]''' - used to determine required PV source size to meet daily energy needs.
 
  
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#'''[[Special:MyLanguage/Load and solar resource comparison|DC load evaluation]]''' - included in average daily Watt-hours required for the design month and used to size the PV source.
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#'''[[Special:MyLanguage/Load and solar resource comparison|AC load evaluation]]''' - included in average daily Watt-hours required for the design month and used to size the PV source.
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#'''[[Special:MyLanguage/DC system voltage|DC system voltage]]''' - used to determine potential PV module and charge controller configurations.
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#'''[[Special:MyLanguage/Load and solar resource comparison|Solar resource]]''' - used to determine required PV source size to meet daily energy needs.
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The primary steps in the process are:
 
The primary steps in the process are:
#Determine [[Minimum PV source size|minimum PV source size]]
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#Choose a charge controller type: [[MPPT charge controller sizing and selection]] or [[PWM charge controller sizing and selection]]
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#Choose a module size.
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#Determine [[Special:MyLanguage/Minimum PV source size|minimum PV source size]]
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#Choose a charge controller type: [[Special:MyLanguage/MPPT charge controller sizing and selection|MPPT charge controller sizing and selection process]] or [[Special:MyLanguage/PWM charge controller sizing and selection|PWM charge controller sizing and selection process]].
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#Choose a PV module size.
 
#Create a charge controller and PV source (series and parallel) configuration.
 
#Create a charge controller and PV source (series and parallel) configuration.
 
#Verify that the charge controller and PV source combination will function well.
 
#Verify that the charge controller and PV source combination will function well.
#If the charge controller and and PV module configuration is not a good design, then restart with a different combination.
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#If the charge controller and PV module configuration is not a good design, then restart with a different combination.
#Determine a final charge controller and PV module configuration that is the best balance between performance and cost.
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#Determine a final charge controller and PV source configuration that is the best balance between performance and cost.
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==Notes/references== <!--T:7-->
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Latest revision as of 17:28, 1 April 2021

Other languages:
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A flowchart depicting the primary inputs and outputs of the PV source and charge controller sizing and selection process. The arrow returning from the verify configuration boxes means that the configuration must be reconsidered if it fails the verification process.

The most complicated part of the design process involves sizing and configuring the PV source as it must be done in conjunction with the sizing and selection of the charge controller. This process may need to be performed various times until the ideal design is found for the project, but going through this process will becomes simpler with each subsquent design. There are many different design parameters in this process for which conservative values and appropriate values from component specifications sheets should be used.

The main inputs to this process are:

  1. DC load evaluation - included in average daily Watt-hours required for the design month and used to size the PV source.
  2. AC load evaluation - included in average daily Watt-hours required for the design month and used to size the PV source.
  3. DC system voltage - used to determine potential PV module and charge controller configurations.
  4. Solar resource - used to determine required PV source size to meet daily energy needs.

The primary steps in the process are:

  1. Determine minimum PV source size
  2. Choose a charge controller type: MPPT charge controller sizing and selection process or PWM charge controller sizing and selection process.
  3. Choose a PV module size.
  4. Create a charge controller and PV source (series and parallel) configuration.
  5. Verify that the charge controller and PV source combination will function well.
  6. If the charge controller and PV module configuration is not a good design, then restart with a different combination.
  7. Determine a final charge controller and PV source configuration that is the best balance between performance and cost.

Notes/references