Differential D-dot voltage sensor

A voltage sensor, differential technology, applied in the field of differential D-dot voltage sensor, can solve the problems of miniaturization and conflict of dielectric strength transformer, achieve the effect of reducing the volume of insulation structure, uniform electric field distribution, and improving sensitivity
CN103235170AActive Publication Date: 2013-08-07CHONGQING UNIV

Patent Information

Authority / Receiving Office
CN ยท China
Patent Type
Applications(China)
Current Assignee / Owner
CHONGQING UNIV
Publication Date
2013-08-07

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Abstract

The invention discloses a differential D-dot voltage sensor, which comprises a measuring module, an electrode plate, a signal modulation module and a collection transmission module, wherein the measuring module is provided with a first input end and a second input end, the electrode plate is provided with a first electrode and a second electrode, the measuring module is a differential amplification module, the differential amplification module is used for measuring the differential voltage between conducting layers, the sensor is not in grounding contact and is also not in direct contact with a tested conductor, and the output is floating potential difference, so the sensor can reduce the size of an insulation structure. Because the differential structure carries out non-contact measurement on the same potential, no direct energy transmission exists between the tested conductor and the sensor, and the influence cannot be generated on the input side when the sensor generates fault such as insulation breakthrough or output short circuit. The differential D-dot voltage sensor can solve the non-contact electrodeless voltage measurement problem of an intelligent electric network and can be used for 10kV to 35kV voltage measurement.
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Description

technical field

[0001] The invention belongs to the field of voltage sensors and relates to a differential D-dot voltage sensor made of a PCB board. Background technique

[0002] Potential transformers are widely used in power systems, and their accuracy and speed play a very important role in energy measurement and relay protection, system monitoring and diagnosis, and power system fault analysis. Currently, electromagnetic voltage transformers (Potential Transformer, PT) and capacitive voltage transformers (Capacitive Voltage Transformer, CVT) are mainly used in power systems. The traditional electromagnetic voltage transformer has the problems of large volume and insulation difficulty increasing with the increase of voltage level. At the same time, due to the iron core, ferromagnetic resonance overvoltage may occur and the dynamic range caused by ferromagnetic saturation may occur. Disadvantages such as becoming smaller have become less and less suitable for the current ...

Claims

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