For the rectifier circuit shown in the figure, the expression for the average value of output voltage = __________, provided 'α' is the firing angle.

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MPPGCL JE Electrical 28 April 2023 Shift 1 Official Paper
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  1. \(V_{0}=\frac{v_{m}}{4 \pi} \cos \alpha\)
  2. \(V_{0}=\frac{2 v_{m}}{\pi} \cos \alpha\)
  3. \(\mathrm{V}_{0}=\frac{2 v_{m}}{3 \pi} \cos \alpha\)
  4. \(\mathrm{V}_{0}=\frac{v_{m}}{2 \pi} \cos \alpha\)

Answer (Detailed Solution Below)

Option 2 : \(V_{0}=\frac{2 v_{m}}{\pi} \cos \alpha\)
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Detailed Solution

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Single phase full wave rectifier

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Case 1: From α < ωt < π + α

T1 and T2 conduct. 

So, Vo = Vs

Case 2: From π + α < ωt < 2π + α 

T3 and T4 conduct.

So, Vo = -Vs

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\(V_{o(avg)}={1\over \pi}\int_{\alpha}^{\pi+\alpha}V_m \space sin\omega t \space d\omega t\)

\(V_{o(avg)}={V_m\over \pi}(\mathrm{cos\space \omega t})_{\pi +\alpha}^{\alpha}\)

\(V_{o(avg)}={V_m\over \pi}(\mathrm{cos \alpha-cos(\pi+\alpha)})\)

\(V_{o(avg)}=\frac{2 v_{m}}{\pi} \cos \alpha\)

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