GPS shunting phase-shifting test method and system for grounding device

A grounding device and testing system technology, applied in the measurement device, the phase angle between voltage and current, and the measurement of electrical variables, etc., can solve the problems affecting the workload of field testers, the impact of wireless communication technology, and limiting the effective distance of transmission. , to achieve the effect of simple and convenient on-site test use, strong anti-electromagnetic interference ability, and small workload

Active Publication Date: 2016-08-24
RED PHASE INC
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AI Technical Summary

Problems solved by technology

Although this method can measure the shunt phase shift, the effective distance of its transmission is limited because the wireless communication technology is easily affected by the field test environment, especially in the case of field obstacles.
In addition, this method generally requires additional corresponding wireless transmission units and special frequency-selective communication equipment, which will also affect the workload of on-site testers to a certain extent.

Method used

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  • GPS shunting phase-shifting test method and system for grounding device
  • GPS shunting phase-shifting test method and system for grounding device
  • GPS shunting phase-shifting test method and system for grounding device

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Embodiment Construction

[0035] The specific embodiments of the present invention will be described below with reference to the drawings.

[0036] Such as figure 1 As shown, a GPS shunt phase shift test method for a grounding device is based on a grounding device test parameter measurement system including an inter-frequency signal output unit and an adjustable frequency multimeter, and specifically includes the following steps:

[0037] Step S1, the grounding device characteristic parameter measurement system continuously and stably injects an inter-frequency current signal into the previously arranged measurement loop;

[0038] Step S2, the inter-frequency signal output unit in the grounding device characteristic parameter measurement system and the GPS module on the adjustable frequency multimeter are kept synchronized by receiving the PPS second pulse signal provided by the GPS artificial earth satellite;

[0039] Step S3, collect and calculate the phase difference between the injected inter-frequency curr...

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Abstract

The invention discloses a GPS shunting phase-shifting test method for a grounding device. PPS second pulse synchronization signals are provided through a GPS artificial earth satellite. The method includes calculating the phase difference between injecting different frequency current signals, generating different frequency voltage drop and incoming and outgoing line configuration shunting and GPS second pulse signal rising edges, taking the different frequency voltage drop as reference, and realizing accurate measurement of shunting phase-shift of the grounding device. The invention discloses a GPS shunting phase-shifting test system for a grounding device. No extra referential voltage lead is needed, and the method and system are not limited and isolated by on-site test environmental conditions. The method and system have the advantages of strong anti-electromagnetic interference capability, long transmission distance, no signal delay and low workload, and are convenient to use in on-site tests.

Description

Technical field [0001] The invention belongs to the field of grounding device state detection and evaluation, and specifically relates to a GPS shunt phase shift test method for grounding devices. Background technique [0002] There are various incoming and outgoing wire structures in power plants and substations. The shunting effect of these incoming and outgoing wire structures makes it impossible to accurately obtain the ground impedance value of the grounding device during field testing. The traditional domestic and foreign measurement methods for the shunt of grounding devices are mainly to determine the shunt coefficient by measuring the shunt size on site, that is, to measure the shunt modulus of various outgoing wires such as overhead ground wires and cable outer sheaths through a clamp ammeter. Simple algebraic addition and subtraction, and then compared with the test injection current modulus to determine the size of the shunt coefficient. This method ignores the effec...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01R25/04G01R35/00
CPCG01R25/04G01R35/005
Inventor 郭翔林阳坡陈耀高柯炳双
Owner RED PHASE INC
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