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Extra-high voltage reference capacitor

A standard capacitor and ultra-high voltage technology, applied in capacitors, instruments, electrical components, etc., can solve problems such as easy displacement, increased voltage coefficient, uneven distribution of local electric field, etc., and achieve the effect of improving electrical performance

Active Publication Date: 2009-09-02
WUHAN NARI LIABILITY OF STATE GRID ELECTRIC POWER RES INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

As the voltage level increases, the insulation distance between electrodes increases, and the height of low-voltage electrodes increases, resulting in extremely uneven local electric field distribution
At the same time, the torque of the low-voltage electrode of the cantilever beam structure increases, and the concentricity and coaxiality between the high-voltage electrode and the low-voltage electrode tend to shift, making the voltage coefficient of the standard capacitor (that is, the difference between the capacitance and the applied voltage amplitude The linear relationship) becomes worse and worse, leading to the expansion of the uncertainty of the precision measurement of the capacitance and dielectric loss of the test product
At present, the highest nominal voltage level of commercialized inverted structure standard capacitors in the world is 1200kV, but the actual working voltage under normal conditions should not exceed 800kV, otherwise many conditions need to be added, such as strict relative humidity of the environment, and extremely slow applied voltage , the harmonic content of the power supply is strictly controlled, etc.
In addition, the low-voltage electrode of an inverted standard capacitor is a cantilever beam structure. The shock generated by equipment transportation and on-site installation will easily lead to creep and bending of the cantilever support rod and tube, making it easy to shift between the low-voltage electrode and the high-voltage electrode, resulting in voltage coefficient further increase
With the increase of the voltage level and the increase of the size of the equipment, the difficulty of processing, installation, detection, adjustment and control of the concentricity and coaxiality between the electrodes of the inverted standard capacitor is also greatly increased.

Method used

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Examples

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Embodiment Construction

[0015] figure 1 It is a structural diagram of a gas chamber of the present invention. The present invention is a UHV standard capacitor with an upright structure in which both the high-voltage electrode and the low-voltage electrode are fixed in the bottom SF6 gas-insulated pressure vessel tank with insulating supports. body 1, high voltage bushing 2, high voltage equalizing ring 3 and ground potential equalizing ring 4, the inside of the tank is filled with SF 6 Gas insulation, the high-voltage bushing 2 is above the tank body 1, the high-voltage equalizing ring 3 and the ground potential equalizing ring 4 are at both ends of the high-voltage bushing 2; the high-voltage bushing 2 is composed of a composite insulating bushing 5 and an intermediate potential shield 6 , the ground potential shielding cover 7 and the high voltage electrode tube 8 are combined, and the lower end of the high voltage electrode tube 8 is fixed on the center of the base in the tank body 1 through an i...

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Abstract

The present invention provides a super-high-pressure standard capacitor, which is a right vertical structure; both a high pressure electrode and a low pressure electrode are fixed on a pressure container tank body at the bottom through an insulating support. The present invention solves the problems that the increase of the voltage grade for a standard capacitor affects the increase of a voltage coefficient. As to using the structure in a field test, the present invention divides the standard capacitor into three independent and sealed air rooms; so the difficulty that the large-scale test equipment is not convenient to be transformed is solved; the field test and detecting are facilitated. The insulating level of the present invention is extremely high when being used in a super-high-pressure standard capacitor. Short-time work frequency voltage enduring ability can exceed 1600 kV; long-time rated work voltage can exceed 1200 kV; voltage coefficient is better than 2*10<-6>. The present invention also can be used for producing the standard capacitor whose voltage grade of the rated work voltage is smaller than 1600 kV.

Description

technical field [0001] The invention belongs to high-voltage measuring equipment, and relates to an ultra-high voltage standard capacitor with a voltage level of 800kV to 1600kV, which is suitable for measuring the value of an ultra-high voltage standard capacitor, measuring the dielectric loss of an ultra-high voltage electrical equipment, calibrating the voltage division ratio of an ultra-high voltage divider, and Ultra-high voltage measurement fields such as voltage coefficient measurement of high-voltage standard voltage transformers. Background technique [0002] With the acceleration of my country's UHV power grid technology research and construction, the original high-voltage measurement equipment can no longer meet the needs. The precise measurement of capacitance and dielectric loss of UHV equipment, and the measurement of characteristic parameters of UHV metering equipment such as AC UHV standard voltage transformers all require standard capacitors with higher volt...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01R15/00G01R27/26G01R35/02H01G2/00
Inventor 王晓琪王均梅吴春风潘滨叶国雄余春雨吴士普汪本进鄢来君毛安澜李璿
Owner WUHAN NARI LIABILITY OF STATE GRID ELECTRIC POWER RES INST
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