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3.1 State the functions of the following meters: 3.1.1 Power-factor meter 3.1.2 Kilowatt-hour meter 3.2 Discuss the process of three-phase AC generation from the supplier to the consumer, in three stages - NSC Electrical Technology Power Systems - Question 3 - 2019 - Paper 1

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3.1-State-the-functions-of-the-following-meters:--3.1.1-Power-factor-meter-3.1.2-Kilowatt-hour-meter--3.2-Discuss-the-process-of-three-phase-AC-generation-from-the-supplier-to-the-consumer,-in-three-stages-NSC Electrical Technology Power Systems-Question 3-2019-Paper 1.png

3.1 State the functions of the following meters: 3.1.1 Power-factor meter 3.1.2 Kilowatt-hour meter 3.2 Discuss the process of three-phase AC generation from the s... show full transcript

Worked Solution & Example Answer:3.1 State the functions of the following meters: 3.1.1 Power-factor meter 3.1.2 Kilowatt-hour meter 3.2 Discuss the process of three-phase AC generation from the supplier to the consumer, in three stages - NSC Electrical Technology Power Systems - Question 3 - 2019 - Paper 1

Step 1

3.1.1 Power-factor meter

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Answer

The power-factor meter is used to measure the power factor, which indicates the efficiency of the electrical system in converting electrical power into useful work.

Step 2

3.1.2 Kilowatt-hour meter

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Answer

The kilowatt-hour meter measures the amount of electrical power consumed by the load over a certain period of time, typically used by utility companies to bill customers.

Step 3

3.2 Discuss the process of three-phase AC generation from the supplier to the consumer, in three stages.

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Generation

Electricity is generated in power stations, which convert energy from sources such as fossil fuels, natural gas, nuclear energy, and water into electrical energy. The turbines drive generators that produce AC electricity.

Transmission

The generated electricity is stepped up to a high voltage for transmission over long distances. This reduces energy losses due to resistance in the wires. Once at the destination, it is fed into a national grid.

Distribution

From the national grid, electricity is distributed to various substations and then stepped down to lower voltages required for commercial, residential, and other types of consumers.

Step 4

3.3 Draw a voltage phasor diagram of a three-phase AC system.

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Answer

The voltage phasor diagram consists of three vectors representing the line voltages VL1V_{L1}, VL2V_{L2}, and VL3V_{L3}, which are 120exto120^ ext{o} apart in phase. All vectors are drawn to scale with equal length, indicating equal voltage magnitude in each phase with the overall representation showing the direction of rotation.

Step 5

3.4 Describe the effect of a low power factor on a system.

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A low power factor indicates that the system is drawing excessive reactive power, resulting in higher losses in the form of heat. This can lead to reduced system efficiency and may require larger capacity equipment to handle the increased current, ultimately raising operational costs.

Step 6

3.5.1 Current in each phase of the load.

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Answer

To find the current in each phase, we use the formula:

Iph=VLR=380470=0.81AI_{ph} = \frac{V_L}{R} = \frac{380}{470} = 0.81 A

So, the current in each phase is approximately 0.81 A.

Step 7

3.5.2 Line current.

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Answer

The line current can be calculated using:

IL=3×Iph=3×0.811.40AI_L = \sqrt{3} \times I_{ph} = \sqrt{3} \times 0.81 \approx 1.40 A

Step 8

3.5.3 Total power consumed by the load.

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To find the total power consumed by the load, we sum the power of each meter:

PT=P1+P2=500.65+421=921.65WP_{T} = P_1 + P_2 = 500.65 + 421 = 921.65 W

Step 9

3.6 State ONE advantage of a single-phase system with reference to safety and economy.

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Answer

One advantage of a single-phase system is that it is generally cheaper and simpler to install than a three-phase system. Additionally, single-phase voltage is less than three-phase voltage, which makes it safer in many residential applications.

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