CN103683412B - 500kVA multi-mode modular UPS system - Google Patents

500kVA multi-mode modular UPS system Download PDF

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Publication number
CN103683412B
CN103683412B CN201310652926.4A CN201310652926A CN103683412B CN 103683412 B CN103683412 B CN 103683412B CN 201310652926 A CN201310652926 A CN 201310652926A CN 103683412 B CN103683412 B CN 103683412B
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battery
switch
rly
rack
insurance
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CN201310652926.4A
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CN103683412A (en
Inventor
刘建英
杨阳
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Guangdong Zhicheng Champion Group Co Ltd
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Guangdong Zhicheng Champion Group Co Ltd
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  • Battery Mounting, Suspending (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

The open a kind of 500kVA multi-mode modular UPS system of the present invention, comprise rack, series of cells is set in rack, sensor, rly., rack arranges battery switch, output switch, rectifier switch and bypass switch, battery insurance is set between series of cells and sensor, series of cells and battery insurance, battery insurance and sensor, sensor and output switch, between output switch and rly., rly. all connects by being connected copper row with bypass switch and between battery insurance and rectifier switch, adjacent two connection copper at least arrange an insulating barrier between arranging. by connection copper row being adopted between each element in rack to connect, owing to connecting copper row's rapid heat dissipation, conductivity is good and profile is attractive in appearance, making the line neat appearance in whole rack, rack also can obtain good heat radiation in working process, decreases the loss on circuit. insulating barrier is set between arranging at adjacent connection copper, can effectively prevent short circuit.

Description

500kVA multi-mode modular UPS system
Technical field
The present invention relates to UPS and manufacture field, particularly relate to a kind of 500kVA multi-mode modular UPS system.
Background technology
Electric elements in existing ups system and the connection between electric elements adopt wire to connect mostly, wire is all adopted to be connected such as, between battery with insurance, between sensor and switch, between rly. and switch etc., such mode of connection makes the casing inside conductor of ups system disorderly and unsystematic, affect attractive in appearance, and also it is unfavorable for the maintenance of electric elements.
In addition, existing ups system adopts multiple cell parallel mostly, and then utilizes a wire unified connection insurance, is connected with insurance by battery by wire on the one hand, not only wastes material, also increases heat radiation burden, and it is also cumbersome to change battery; On the other hand, by means of only an insurance multiple battery of control, if one of them or several batteries break down when needing maintenance, insurance will all disconnect, and just can reuse after battery to be replaced, makes UPS use so very inconvenient.
Summary of the invention
It is an object of the invention to propose a kind of 500kVA multi-mode modular UPS system, its structure is simple, inner electrical equipment element arrangements neat appearance, rapid heat dissipation during work, working efficiency height.
Another object of the present invention is to propose a kind of 500kVA multi-mode modular UPS system, every block battery can be carried out real-time control by it, assurance device energy normal operation, and the replacing of battery is also fairly simple, changes wherein one piece or can not affect the work of other battery during several pieces of batteries.
For reaching this object, the present invention by the following technical solutions:
A kind of 500kVA multi-mode modular UPS system, comprise rack, in described rack, series of cells is set, sensor, rly., described rack arranges battery switch, output switch, rectifier switch and bypass switch, battery insurance is set between described series of cells and described sensor, between described series of cells and described battery insure, between the insurance of described battery and described sensor, between described sensor and described output switch, between described output switch and described rly., all connect by being connected copper row between described rly. with described bypass switch and between the insurance of described battery and described rectifier switch, adjacent two described connection copper at least arrange one for preventing the insulating barrier of described connection copper row's contact between arranging.
By connection copper row being adopted between each electric elements in rack to connect, owing to connecting the advantage that copper row has rapid heat dissipation, conductivity is good and profile is attractive in appearance, make the line neat appearance in whole rack, rack also can obtain good heat radiation in working process, and the loss on the circuit decreased between electric elements and electric elements, save the energy.
Insulating barrier is set between arranging at adjacent connection copper, effectively avoids the connection between adjacent connection copper row, prevent the situation of short circuit from occurring.
As a kind of preferred version, described series of cells is made up of the battery of multiple parallel connection, battery plate is set in described rack, the side of described battery plate arranges multiple jack for battery described in grafting from top to bottom, conduction part for being electrically connected with described battery is set in described jack, the corresponding battery described in each in another side of described battery plate is provided with a described battery insurance, and described conduction part and described battery are connected copper row's connection by described between insuring.
By being provided with the battery plate of jack in rack, can install or battery is being dismounted by maintenance process rapidly from battery plate, save assembling procedure, reduce assembling difficulty, and all adopt a battery insurance to control on each battery, even if in use occurring that battery damages, also can not affect the normal operation of other batteries, namely can not affect the normal operation of whole rack.
As a kind of preferred version, arranging controller on described rack, battery insurance described in each is all connected with described controller.
By battery insurance is connected with controller, when battery goes wrong, it is possible to remind operator to change battery by the display equipment on controller.
As a kind of preferred version, the insurance of described battery is connected with described sensor and described rectifier switch respectively by described connection copper row.
As a kind of preferred version, described rack also arranging service switch, described service switch is connected with described bypass switch and the insurance of described battery respectively by described connection copper row.
As a kind of preferred version, bypass insurance is set between described rly. and described bypass switch.
As a kind of preferred version, two described rly.s are set in described rack, it is respectively the first rly. and the 2nd rly., the input terminus of described first rly. is connected with described output switch, the output terminal of described first rly. is connected with the input terminus of described 2nd rly., and the output terminal of described 2nd rly. is connected with described bypass switch.
As a kind of preferred version, described sensor is hall sensing device.
As a kind of preferred version, multiple inversion module is also set in described rack.
Contrast prior art, the useful effect of the present invention is: 500kVA its structure of multi-mode modular UPS system of the present invention is simple, line and easy to maintenance, and the line arrangement in rack is neat, rapid heat dissipation in working process, and energy consumption is low, it may also be useful to security height.
Accompanying drawing explanation
Fig. 1 is the structural representation of the 500kVA multi-mode modular UPS system described in embodiment;
Fig. 2 is the A-A cross-sectional schematic of Fig. 1;
Fig. 3 is the B-B cross-sectional schematic of Fig. 1.
In Fig. 1 to 3:
1, rack; 2, series of cells; 21, battery; 22, battery plate; 221, jack; 3, sensor; 4, battery switch; 5, output switch; 6, rectifier switch; 7, bypass switch; 8, battery insurance; 9, copper row is connected; 10, insulating barrier; 11, controller; 12, service switch; 13, bypass insurance; 14, the first rly.; 15, the 2nd rly.; 16, inversion module.
Embodiment
Below in conjunction with accompanying drawing and the technical scheme of the present invention is described further by embodiment.
As shown in Figures 1 to 3, in the present embodiment, the 500kVA multi-mode modular UPS system of the present invention, comprise rack 1, series of cells 2 is set in rack 1, sensor 3, rly., rack 1 arranges battery switch 4, output switch 5, rectifier switch 6 and bypass switch 7, battery insurance 8 is set between series of cells 2 and sensor 3, between series of cells 2 and battery insurance 8, between battery insurance 8 and sensor 3, between sensor 8 and output switch 5, between output switch 5 and rly., all connect by being connected copper row 9 between rly. with bypass switch 7 and between battery insurance 8 and rectifier switch 6, by connection copper row 9 being adopted between each electric elements in rack 1 to connect, owing to connecting copper row 9, there is rapid heat dissipation, the advantage that conductivity is good and profile is attractive in appearance, make the line neat appearance in whole rack 1, rack 1 also can obtain good heat radiation in working process, and the loss on the circuit decreased between electric elements and electric elements, save the energy.
Adjacent two connect the insulating barrier 10 at least arranging between copper row 9 for preventing connection copper row 9 from contacting, between arranging 9 at adjacent connection copper, insulating barrier 10 is set, effectively avoid the connection between adjacent connection copper row 9, prevent the situation of short circuit from occurring.
Series of cells 2 is made up of the battery 21 of multiple parallel connection, battery plate 22 is set in rack 1, the side of battery plate 22 arranges multiple jack 221 for grafting battery 21 from top to bottom, conduction part for being electrically connected with battery 21 is set in jack 221, another side of battery plate 22 each battery 21 corresponding is provided with a battery insurance 8, by being connected copper row 9 connection between conduction part with battery insurance 8.
By being provided with the battery plate 22 of jack 221 in rack 1, can install or battery 21 is being dismounted by maintenance process rapidly from battery plate 22, save assembling procedure, reduce assembling difficulty, and all adopt a battery insurance 8 to control on each battery 21, even if in use occurring that battery 21 damages, also can not affect the normal operation of other batteries 21, namely can not affect the normal operation of whole rack 1.
Arranging controller 11 on rack 1, each battery insurance 8 is all connected with controller 11. It is connected with controller 11 by battery is insured 8, when battery 21 goes wrong, it is possible to remind operator to change battery 21 by the display equipment on controller 11.
By connecting, copper row 9 is connected with sensor 3 and rectifier switch 6 respectively in battery insurance 8. In the present embodiment, sensor 3 is hall sensing device.
Also arranging service switch 12 on rack 1, by connecting, copper row 9 is connected service switch 12 respectively with bypass switch 7 and battery insurance 8.
Bypass insurance 13 is set between rly. and bypass switch 7.
Two rly.s are set in rack 1, it is respectively the first rly. 14 and the 2nd rly. 15, the input terminus of the first rly. 14 is connected with output switch 5, and the output terminal of the first rly. 14 is connected with the input terminus of the 2nd rly. 15, and the output terminal of the 2nd rly. 15 is connected with bypass switch 7.
Multiple inversion module 16 is also set in rack 1.
" first ", " the 2nd " of the present invention etc., only for being distinguished on describing, not special implication.
Below the know-why of the present invention is described in conjunction with specific embodiments. These descriptions are the principle in order to explain the present invention, and can not be interpreted as limiting the scope of the invention by any way. Based on explanation herein, the technician of this area does not need to pay other embodiment that creative work can associate the present invention, and these modes all will fall within protection scope of the present invention.

Claims (7)

1. a 500kVA multi-mode modular UPS system, it is characterized in that, comprise rack, in described rack, series of cells is set, sensor, rly., described rack arranges battery switch, output switch, rectifier switch and bypass switch, battery insurance is set between described series of cells and described sensor, between described series of cells and described battery insure, between the insurance of described battery and described sensor, between described sensor and described output switch, between described output switch and described rly., all connect by being connected copper row between described rly. with described bypass switch and between the insurance of described battery and described rectifier switch, adjacent two described connection copper at least arrange one for preventing the insulating barrier of described connection copper row's contact between arranging,
Described series of cells is made up of the battery of multiple parallel connection, battery plate is set in described rack, the side of described battery plate arranges multiple jack for battery described in grafting from top to bottom, conduction part for being electrically connected with described battery is set in described jack, the corresponding battery described in each in another side of described battery plate is provided with a described battery insurance, and described conduction part and described battery are connected copper row's connection by described between insuring;
Two described rly.s are set in described rack, it is respectively the first rly. and the 2nd rly., the input terminus of described first rly. is connected with described output switch, the output terminal of described first rly. is connected with the input terminus of described 2nd rly., and the output terminal of described 2nd rly. is connected with described bypass switch.
2. 500kVA multi-mode modular UPS system according to claim 1, it is characterised in that, described rack arranges controller, battery insurance described in each is all connected with described controller.
3. 500kVA multi-mode modular UPS system according to claim 2, it is characterised in that, the insurance of described battery is connected with described sensor and described rectifier switch respectively by described connection copper row.
4. 500kVA multi-mode modular UPS system according to the arbitrary item of claims 1 to 3, it is characterized in that, also arranging service switch on described rack, described service switch is connected with described bypass switch and the insurance of described battery respectively by described connection copper row.
5. 500kVA multi-mode modular UPS system according to the arbitrary item of claims 1 to 3, it is characterised in that, bypass insurance is set between described rly. and described bypass switch.
6. 500kVA multi-mode modular UPS system according to the arbitrary item of claims 1 to 3, it is characterised in that, described sensor is hall sensing device.
7. 500kVA multi-mode modular UPS system according to the arbitrary item of claims 1 to 3, it is characterised in that, multiple inversion module is also set in described rack.
CN201310652926.4A 2013-12-06 2013-12-06 500kVA multi-mode modular UPS system Active CN103683412B (en)

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CN201310652926.4A CN103683412B (en) 2013-12-06 2013-12-06 500kVA multi-mode modular UPS system

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CN103683412B true CN103683412B (en) 2016-06-01

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JP6333922B2 (en) * 2016-11-09 2018-05-30 ファナック株式会社 Motor drive device

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CN202084984U (en) * 2011-03-28 2011-12-21 广州地铁设计研究院有限公司 Light current integration UPS system applied to urban railway system
CN202042803U (en) * 2011-03-29 2011-11-16 力博特公司 Uninterrupted power supply (UPS) system customer wiring device
CN203596645U (en) * 2013-12-06 2014-05-14 广东志成冠军集团有限公司 500 kVA multi-standard modularized UPS system

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