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Simulink Simscape by Dr. Amin Danial Asham
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References MATLAB Help
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Simscape Simscape™ provides an environment for modeling and simulating physical systems spanning mechanical, electrical, hydraulic, and other physical domains. It provides fundamental building blocks from these domains that you can assemble into models of physical components, such as electric motors, inverting op-amps, hydraulic valves, and ratchet mechanisms
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Simscape-Electrical Library
Electrical Elements
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Simscape-Electrical Library
Electrical Sensors The Current Sensor block represents an ideal current sensor, that is, a device that converts current measured in any electrical branch into a physical signal proportional to the current. The Voltage Sensor block represents an ideal voltage sensor, that is, a device that converts voltage measured between two points of an electrical circuit into a physical signal proportional to the voltage.
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Simscape-Electrical Library
Electrical Sources
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Utilities The PS-Simulink Converter block converts a physical signal into a Simulink® output signal. Use this block to connect outputs of a Physical Network diagram to Simulink scopes or other Simulink blocks. The Simulink-PS Converter block converts the input Simulink® signal into a physical signal. Use this block to connect Simulink sources or other Simulink blocks to the inputs of a Physical Network diagram.
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Simscape-Electrical Library
Utilities Each physical network represented by a connected Simscape™ block diagram requires solver settings information for simulation. The Solver Configuration block specifies the solver parameters that your model needs before you can begin simulation. Each topologically distinct Simscape block diagram requires exactly one Solver Configuration block to be connected to it. The block has one conserving port. You can add this block anywhere on a physical network circuit by creating a branching point and connecting it to the only port of the Solver Configuration block.
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Simscape-Electrical Library
Example 1
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Simscape-Electrical Library
This is a single network that has its distinct Solver Configuration Block Example 2 This is a separate network that must have a distinct Solver Configuration Block
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Simscape-Electrical Library
Example 3
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Example 3-Continue
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Example 4 𝑉 𝑐 = 10/𝐿𝐶 𝑠( 𝑠 𝐿𝐶 ) = 10 𝑠 − 10𝑠 𝑠 𝐿𝐶
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Example 4-Continue
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Example 5
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Example 5-Continue
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