Develop the receiving end performance chart

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Reference no: EM132715186

1. (i) State briefly how the equivalent circuit of a generator is similar to that of a short transmission line.

(ii) On what assumptions is the representation of the following simple load supply system (FIGURE 1) based?

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FIG. 1

(iii) In what way does it differ from the radial supply system shown in FIGURE 2?

156_figure1.jpg

FIG. 2

(iv) In FIGURE 1, the first transformer steps up the voltage and the second steps down the voltage. State the reason or reasons why you think this is done.

2. For the following distribution feeder systems shown in FIGURES 3(i), (ii) and (iii) determine the load voltage levels.

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FIG. 3

3. (a) A short 3-phase 11 kV line delivers a load of 4.1 MW, 2.6 MVAr lag. If the series impedance of the line is (7.2 + j12.1) fl/ph, calculate the sending end voltage and load angle.
(b) Develop the receiving end performance chart for the above line and load to a 3-phase power scale. (Use a scale of 10 mm = 1000 V and 30 mm = 4.1 MW.)

4. Using the chart you produced in Question 3, determine:
(a) the real and reactive power when
(i) the transmission angle remains unaltered and the sending end voltage is increased by 28%
(ii) the original sending-end voltage is reduced by 15% and the transmission angle increased by 9°. (Use the same scale as that for Question 3 (b))
(b) the real power limit for the sending voltage in (ii) above (i.e. when reduced by 15%).

5. The following phase schematic diagram (FIGURE 4) shows an 11 kV, 50 Hz, 3-phase, short line feeding a load. By calculation or constructing the phasor diagram (use a scale of 1 mm = 2 A) for the load current with VR as reference, determine the capacitive current and
n calculate the capacitive reactance/ph such that the load power factor is increased to 0.98 lag
• calculate the percentage reduction in line current with this value of capacitive reactance in circuit.

284_figure3.jpg

6. Compare FIGURES 2 and 4 from lesson ESD - 2 - 2 (reproduced here) with those of FIGURES 1 and 8 from lesson ESD - 3 - 2 (also reprodued) and state briefly why they are similar.

1087_figure4.jpg

FIG. 2 from ESD -- 2 -- 2 (reproduced)

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Reference no: EM132715186

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