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A Multi-serial Port Parallel Communication Transformer

A technology of transformers and multi-serial ports, used in inductors, transformer/inductor cooling, instruments, etc., can solve the problems of small dynamic range, narrow frequency band, damage of transformers, etc., to reduce energy consumption, improve operation and The effect of convenient transmission and installation

Active Publication Date: 2020-04-28
JIANGYIN SPARK ELECTRONICS TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, with the continuous increase of power transmission capacity, the continuous improvement of grid voltage level and the continuous improvement of protection requirements, the general iron core current transformer structure has gradually exposed its incompatible weaknesses. Weaknesses such as saturation, ferromagnetic resonance, small dynamic range, and narrow frequency band are difficult to meet the development needs of the new generation of power system automation and power digital network.
In the existing technology, either manual real-time attention to the temperature displayed on the interface of the transformer expander is required, or it is directly transmitted after being collected by a wireless temperature sensor. The operator can pay attention to the temperature on the host computer at any time. Once the temperature is abnormal, an alarm can be issued in time , to avoid damage to the transformer due to insufficient attention to the temperature, but manual operation is still required, and the transformer needs to be turned off when the temperature is abnormal to avoid damage

Method used

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  • A Multi-serial Port Parallel Communication Transformer
  • A Multi-serial Port Parallel Communication Transformer
  • A Multi-serial Port Parallel Communication Transformer

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] like figure 1 As shown, the present invention is a multi-serial parallel communication transformer, including a device communication platform 1 and several transformers 3 connected in parallel with the device communication platform 1 through the M-BUS bus 2; wherein, the device communication platform 1 and each transformer Communication between 3 is carried out through an independent communication protocol, and the communication between multiple transformers 3 adopts polling mode to transmit data. The transformer 3 is a digital transformer 3 .

Embodiment 2

[0028] The difference from Embodiment 1 is that, as Figure 2 to Figure 8 shown (for ease of illustration, figure 2 The cooling medium inlet pipe, cooling medium outlet pipe, driving pump and storage tank are not shown; image 3 The heat sink is not shown), the transformer 3 is an oil-immersed current transformer 3, and the oil-immersed current transformer 3 includes an oil tank 4, and the upper end of the oil tank 4 is fixedly connected with the lower end of the porcelain sleeve 7, and the upper end of the porcelain sleeve 7 It is fixedly connected with the expander 8. The expander 8 includes a casing 13 and a corrugated expander body 14 arranged in the casing 13. The middle part of the corrugated expander body 14 is fixedly arranged on the casing 13, and the corrugated expander body 14 is arranged in the casing 13. Insulating oil, the outer casing 13 of the corrugated expander body 14 is also provided with a number of vertical heat dissipation pipes 33, each heat dissipati...

Embodiment 3

[0030] The difference from the second embodiment is that, as Figure 9 As shown, the outer casing 13 of the corrugated expander body 14 is also provided with a number of vertical heat dissipation grooves 25, the casing 13 is vertically disposed, the heat dissipation grooves 25 are disposed vertically, and the bottom walls of all the heat dissipation grooves 25 are arranged vertically. Both are located at the bottom of the corrugated expander body 14 , the bottom end of the piston rod 26 is fixedly provided with a rubber piston 27 , and the top end of the piston rod 26 is fixedly connected to the inner top wall of the housing 13 .

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Abstract

The invention discloses a multi-serial-port parallel communication transformer, which comprises an equipment communication platform and a plurality of transformers connected in series with the equipment communication platform through an M-BUS bus, wherein the equipment communication platform is communicated with each transformer through an independent communication protocol; and data transmissionamong multiple transformers is carried out by means of polling. The transformer is an oil-immersed current transformer. The oil-immersed current transformer comprises an oil tank. The upper end of theoil tank is fixedly connected with the lower end of a porcelain sleeve; and the upper end of the porcelain sleeve is fixedly connected with an expander. The expander comprises a housing and a rippleexpander body arranged in the housing. The expander is provided with a cooling coil and piston rods, and self heat radiation is realized by utilizing expansion kinetic energy of the expander. The multi-serial-port parallel communication transformer can realize self heat radiation and can reduce use of the cooling water; a main device is designed to control multiple serial port digital transformers; and the transformer can reduce wiring distance, is convenient to install, and is safer in serial port communication and does not lose data.

Description

technical field [0001] The invention relates to a multi-serial parallel communication transformer. Background technique [0002] The traditional principle of current transformer is electromagnetic induction. The primary winding is connected in series in the power line, and the external circuit of the secondary winding is connected with measuring instruments or relay protection and automatic control devices. The electromagnetic coupling between the high and low voltage windings is used to transfer information from Primary side to secondary side. This structure requires an insulating layer with sufficient compressive strength between the iron core and the windings and between the primary and secondary windings to ensure that all low-voltage equipment is isolated from high-voltage. With the increase of the power capacity transmitted by the power system, the voltage level is getting higher and higher, so the insulation structure of the transformer becomes more and more complex,...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G08C17/02H01F27/14H01F38/20H04L12/40
Inventor 杨友振
Owner JIANGYIN SPARK ELECTRONICS TECH
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