《ELEC352sim2》.docx

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《ELEC352sim2》.docx

PAGE \* MERGEFORMAT8 ELEC 352 - Instrumentation and Measuring II Simulation 2 Matlab/Simulink Measuring Meter Three-Phase System VONG HON IEONG DA927499 TAM CHOU LAP DA928005 Introduction Objective To use the Matlab Simulink as the virtual instrument to build the power meter which included Active Power Meter, b) Reactive Power Meter, c) Apparent Power Meter, d) Distortion Power Meter etc. . . Simulate the three phase system property. Procedure: Use Simulink to build the subsystem of power meter circuit. Use the meter to measure the three phase system in different situation. Under the balance case: three-phase sinusoidal voltage. Under the unbalance case: sinusoidal voltage and sinusoidal current for an unbalanced inductive loads Under the unbalance case: sinusoidal voltage and non-sinusoidal current, [Repeat the above case ii), but with a diode in series with all loads. ] Measure the power parameters of those situation. Discuss the difference. Result Analysis: First, to build the circuit of Power Meter as the following diagram. Fig1. Subsystem of power meter circuit Then set it as a Power Meter subsystem for the power parameter measurement. Build the three phase system and connect the component to the meter. Use the meter to measure circuit, connect as the following figure with the measured data. Fig2. Three phase system A with meter Under the balance case: three-phase sinusoidal voltage (380 v, 50 Hz) and sinusoidal current with a balanced inductive load ( R = 5 ohms, L = 100m H) a b c The result is shown in the right hand side. Since in the balance case the different loop act as a single phase. So the result should be the same to each other. In a single phase: Active power P = 713.4W Reactive power Q = 4483 VAR Apparent power S = 4539 VA Distortion power D = 29.11VA So in the three phase balance situation it the three time of the single phase. Active power P = 2140.2W Reactive power Q = 13449 VAR Apparent power S = 13617 VA Distortion power D = 87.

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