Open Loop Control of Boost Converter

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open loop control of boost converter Output Voltage is greater than input voltage. This is achieved by fast switching of a semiconductor device. The increase in output voltage depends on the frequency of switching (i.e.) depends on pulse given to the device. While switch is off the output voltage almost same as input. While switch is ON MOSFET is assumed as short hence current flow in a shortest path so inductor gets energized, and in continues flow we get output voltage greater than input.

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Description

Introduction to Open Loop Control of Boost Converter

A chopper is a converter which converts variable DC to required DC. Chopper is a high speed switching semiconductor. It connects the source to load and vice versa at a fast speed to increase or decrease the input voltage.

In this open loop control of boost converter Output Voltage is greater than input voltage. This is achieved by fast switching of a semiconductor device. The increase in output voltage depends on the frequency of switching (i.e.) depends on pulse given to the device. While switch is off the output voltage almost same as input. While switch is ON MOSFET is assumed as short hence current flow in a shortest path so inductor gets energized, and in continues flow we get output voltage greater than input.

Demonstration Video

Matlab Simulink Block Diagram for Open Loop Control of Boost Converter

Matlab Simulink Block Diagram for Open Loop Control of Boost Converter

The above Matlab image explains the open loop control of boost converter. The inductor, MOSFET, diode and capacitor forms the boost converter circuit.

Parameter of DC Input voltage Open Loop Control of Boost Converter

Parameter of DC Input voltage Open Loop Control of Boost Converter

Output waveform of Open Loop Control of Boost Converter

Output waveform of Open Loop Control of Boost Converter

Output waveform of Open Loop Control of Boost Converter

Additional information

Weight0.100000 kg

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