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BDA30703 Assignment1 Sem 2 2013/2014 Dateline: 3 rd April 2014 17:00pm (FSKTM Building Floor 4 Room 24) hanani Page 1 Q1. Find the transfer function of the system shown below by using block diagram reduction Figure Q1: Block diagram Q2 i. Consider the signal flow graph below and identify the following Figure Q2: Signal Flow Graph a) Input node. b) Output node. c) Forward paths. d) Feedback paths (loops). e) Determine the loop gains of the feedback loops. f) Determine the path gains of the forward paths. g) Non-touching loops

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  • BDA30703 Assignment1 Sem 2 2013/2014

    Dateline: 3rd April 2014 17:00pm(FSKTM Building Floor 4 Room 24)hanani Page 1

    Q1. Find the transfer function of the system shown below by using block diagram reduction

    Figure Q1: Block diagramQ2i. Consider the signal flow graph below and identify the following

    Figure Q2: Signal Flow Grapha) Input node.b) Output node.c) Forward paths.d) Feedback paths (loops).e) Determine the loop gains of the feedback loops.f) Determine the path gains of the forward paths.g) Non-touching loops

  • BDA30703 Assignment1 Sem 2 2013/2014

    Dateline: 3rd April 2014 17:00pm(FSKTM Building Floor 4 Room 24)hanani Page 2

    ii. Apply Masons Rule to calculate the transfer function of the system

    kkpsR sC )( )(

    Q3i. Convert the block diagram to signal flow graph

    .Figure Q3: Block Diagram

    ii. Apply Masons Rule to calculate the transfer function of the system