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Exact(27)
The fault conditions include fault type, location, and resistance and inception angle.
Proposed method is tested with varying fault location, inception angle, fault type and fault resistance.
So it is important that the designed scheme should work for the entire fault inception angle variation.
This shows that the positive sequence current based method is immune to the influence of PFSC, fault inception angle and higher SIR value.
However, the proposed method correctly sees the fault direction as the value of θ is consistently negative (in Table 2) for different fault inception angle and fault location.
The response time, the variation of the line parameters, the fault inception angle, the presence of erroneous samples and the mutual coupling are considered in the study.
Similar(33)
Some of the test results were shown in Table 7 for several inception angles of fault cases that substantiate the aptness of this current method for varied fault inception angles.
The sensitivity of the proposed method is checked for different fault inception angles like 0°, 45°, 90° and 180°.
Extensive simulation studies were performed with various types of faults at different fault distances, fault inception angles and fault resistance.
Effect of variation in different fault parameter like fault types, locations, inception angles, resistances were also exemplified here.
However, the proposed scheme provides more accurate estimations, irrespective of the fault types, fault inception angles and fault impedances.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com