Principle of Tan Delta Test
A pure insulator when is connected across line and earth, it behaves as a capacitor. In an ideal insulator, as the insulating material which acts as dielectric too, is 100 % pure, the ELECTRIC CURRENT passing through the insulator, only have capacitive component. There is no resistive component of the current, flowing from line to earth through insulator as in ideal insulating material, there is zero percent impurity.
In pure capacitor, the capacitive electric current leads the applied voltage by 90°.
In practice, the insulator cannot be made 100% pure. Also due to the ageing of insulator the impurities like dirt and moisture enter into it. These impurities provide the conductive path to the current. Consequently, leakage electric current flowing from line earth through insulator has also resistive component.
Hence, it is needless to say that, for good insulator, this resistive component of leakage electric current is quite low. In other way the healthiness of an electrical insulator can be determined by ratio of resistive component to capacitive component. For good insulator this ratio would be quite low. This ratio is commonly known as tanδ or tan delta. Sometimes it is also referred as dissipation factor.
In the vector diagram above, the system voltage is drawn along x-axis. Conductive electric current i.e. resistive component of leakage current, IR will also be along x-axis.
As the capacitive component of leakage electric current IC leads system voltage by 90°, it will be drawn along y-axis.
Now, total leakage electric current IL(Ic + IR) makes an angle δ (say) with y-axis.
Now, from the diagram above, it is cleared, the ratio, IR to IC is nothing but tanδ or tan delta.
Method of Tan Delta Testing
The cable, winding, CT, PT ,transformer bushing, on which tan delta test or dissipation factor test to be conducted, is first isolated from the system. A very low frequency test voltage is applied across the equipment whose insulation to be tested. First the normal voltage is applied. If the value of tan delta appears good enough, the applied voltage is raised to 1.5 to 2 times of normal voltage, of the equipment. The tan delta controller unit takes measurement of tan delta values. A loss angle analyser is connected with tan delta measuring unit to compare the tan delta values at normal voltage and higher voltages, and analyse the results.
During test it is essential to apply test voltage at very low frequency.
That means, dissipation factor tanδ ∝ 1 / f.
Hence, at low frequency, the tan delta number is high, the measurement becomes easier.
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