Difference between revisions of "Component: Simulated Control Load (DSP Operators)"

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==Component Source Code==
 
==Component Source Code==
  
Please click here for the component source code: [https://www.flowcode.co.uk/wikicopy/componentsource/FC_Comp_Source_DSP_SimLoad.fcfx FC_Comp_Source_DSP_SimLoad.fcfx]
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Please click here to download the component source project: [https://www.flowcode.co.uk/wiki/componentsource/FC_Comp_Source_DSP_SimLoad.fcfx FC_Comp_Source_DSP_SimLoad.fcfx]
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Please click here to view the component source code (Beta): [https://www.flowcode.co.uk/FlowchartView/?wfile=componentsource/FC_Comp_Source_DSP_SimLoad.fcfx FC_Comp_Source_DSP_SimLoad.fcfx]
  
 
==Detailed description==
 
==Detailed description==
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==Examples==
 
==Examples==
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==Downloadable macro reference==
 
  
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==Macro reference==
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===SimulateLoad===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
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| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SimulateLoadArray'''
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| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SimulateLoad'''
 
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| colspan="2" | Passes an entire buffer into the delay buffer and spits out a delayed version of the buffer at the other end 
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| colspan="2" | Simulates a load change with a new control value being applied and a new feedback signal gathered from the output. 
 
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===SimulateLoadArray===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
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| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SimulateLoad'''
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| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SimulateLoadArray'''
 
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| colspan="2" | Simulates a load change with a new control value being applied and a new feedback signal gathered from the output. 
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| colspan="2" | Passes an entire buffer into the delay buffer and spits out a delayed version of the buffer at the other end 
 
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| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
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Latest revision as of 10:26, 20 October 2023

Author Matrix Ltd
Version 1.2
Category DSP Operators


Simulated Control Load component

Allows a simulated load to be connected to the DSP network allowing you to model external factors such as Motor Speed, Motor Position, Temperature, Humidity, Pressure, Flow etc. Useful when used with a feedback based control system.

Component Source Code

Please click here to download the component source project: FC_Comp_Source_DSP_SimLoad.fcfx

Please click here to view the component source code (Beta): FC_Comp_Source_DSP_SimLoad.fcfx

Detailed description

No detailed description exists yet for this component

Examples

No additional examples









Macro reference

SimulateLoad

Fc9-comp-macro.png SimulateLoad
Simulates a load change with a new control value being applied and a new feedback signal gathered from the output. 
Fc9-void-icon.png - VOID Return


SimulateLoadArray

Fc9-comp-macro.png SimulateLoadArray
Passes an entire buffer into the delay buffer and spits out a delayed version of the buffer at the other end 
Fc9-void-icon.png - VOID Return


Property reference

Fc9-prop-icon.png Properties
Fc9-type-16-icon.png Connect To
DSP component with output buffer to collect our data from. 
Fc9-type-21-icon.png Buffer Size
Number of individual elements the buffer can store, default 1. 
Fc9-type-16-icon.png Buffer Type
Sets the buffer data type. 
Fc9-type-16-icon.png Direction
Sets the data direction flow of the component 
Fc9-conn-icon.png Load
Fc9-type-16-icon.png Model Type
 
Fc9-type-16-icon.png Model Order
The order of a differential equation is the highest degree of derivative present in that equation. A system whose input-output equation is a second order differential equation is called Second Order System. 
Fc9-type-8-icon.png 1st Order
Determines to the response of the syecific order within the system. Output = (OldOutput * (1 - Order)) + (NewInput * Order) 
Fc9-type-8-icon.png 2nd Order
Determines to the response of the syecific order within the system. Output = (OldOutput * (1 - Order)) + (NewInput * Order) 
Fc9-type-8-icon.png Initial Output