CN205319769U - Green energy emergency power source system - Google Patents
Green energy emergency power source system Download PDFInfo
- Publication number
- CN205319769U CN205319769U CN201620088521.1U CN201620088521U CN205319769U CN 205319769 U CN205319769 U CN 205319769U CN 201620088521 U CN201620088521 U CN 201620088521U CN 205319769 U CN205319769 U CN 205319769U
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- Prior art keywords
- unit
- cabinet
- slot
- battery
- plug
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- Charge And Discharge Circuits For Batteries Or The Like (AREA)
Abstract
The utility model discloses a green energy emergency power source system, system are equipped with a plurality of independent cell, every cell inserts at the cabinet internally for the drawer structure, the vertical direction in the internal edge of cabinet is equipped with the multilayer slot, every layer the slot in be equipped with the track with drawer structure matched with, the cabinet internally vertically be equipped with that the direct current is female to be arranged, the drawer structure is equipped with and is used for the plug of centre gripping on the female row of direct current, cell's positive negative pole is connected respectively to the plug, power supply handle unit input is connected to the direct current module, the power consumption socket is connected to power supply handle unit output. The utility model has the advantages of with cell laminate arrangement, be convenient for change the cell who damages, reduce cost of maintenance to convenient to use is reliable for the power cabinet, and can the remote monitoring power cabinet operating mode, fault rate when reducing the power cabinet and using.
Description
Technical field
This utility model relates to the power cabinet of mobile power supply.
Background technology
Current emergency power supply mostly form is single, and battery is as a whole, when power supply, it is also difficult to ensure reliable, it is impossible to meet the need for electricity under case of emergency.
Utility model content
Technical problem to be solved in the utility model is to realize a kind of being easy to maintenance, power cabinet esy to use, safe and reliable.
To achieve these goals, the technical solution adopted in the utility model is: green energy resource emergency power system, system is provided with multiple independent battery unit, each described battery unit is that drawer structure is inserted in cabinet, multilamellar slot vertically it is provided with in described cabinet, the track matched with drawer structure it is provided with in slot every layer described, DC master row vertically it is provided with in described cabinet, described drawer structure is provided with the plug for being clamped on DC master row, described plug connects the both positive and negative polarity of battery unit respectively, described DC Module connects power supply processing unit input, described power supply processing unit outfan connection electrical outlet.
Described slot is the structure that ecto-entad tilts gradually downward, described cabinet both sides are equipped with the slot interval of slot and both sides and arrange, described drawer structure and the close contact of slot side, between the drawer structure back side and cabinet inwall, there is ventilation gap, also there is between every layer of drawer structure ventilation gap, described cabinet top is provided with the cooling fan of downward air blast, described bottom of cabinet bulk is provided with air outlet, described DC master row is positioned at the medium position of slot both sides, and described plug is positioned at the medium position of drawer structure both sides.
Each described battery unit is equipped with sub-battery management unit, main battery administrative unit it is provided with in cabinet, the medium position of every layer of described slot-side is provided with the communication jack connecting communication bus, described sub-battery management unit is provided with the communication joint being connected with communication jack, and communication plug is positioned at the medium position of drawer structure side, described sub-battery management unit is communicated with main battery administrative unit by communication bus.
Described drawer unit is " convex " font, and described plug is U-shaped spring leaf, and the openings of plug is towards the drawer unit back side.
Described power supply processing unit includes inverter and transformator, it is provided with main circuit breaker between described power supply processing unit input and flow busbar, described main battery administrative unit controls main circuit breaker break-make, being provided with sub-chopper between each described battery unit and plug, corresponding sub-battery management unit controls sub-chopper break-make.
Described main battery administrative unit is connected to push-button unit, display unit and communication unit, described communication unit and remote server radio communication, described push-button unit, display unit and be positioned at cabinet front by electrical outlet.
System is provided with the charged switch unit of photovoltaic charged unit and AC charging unit, described photovoltaic charged unit and AC charging unit and connects DC master row.
Described main battery administrative unit outputs control signals to charging switch unit, is provided with AC circuit breaker between described AC charging unit and mains connection, and described main battery administrative unit controls AC circuit breaker break-make.
The utility model has the advantage of battery unit layered arrangement, it is simple to change the battery unit damaged, reduce maintenance cost, and power cabinet is easy to use and reliable, and can remotely monitor power cabinet operating mode, reduce fault rate when power cabinet uses.
Accompanying drawing explanation
Labelling in the content below every width accompanying drawing in this utility model description expressed and figure is briefly described:
Fig. 1 is power cabinet schematic diagram;
Fig. 2 is power cabinet cut-away view;
Fig. 3 is battery unit drawer structure schematic diagram;
Labelling in above-mentioned figure is: 1, battery unit; 2, sub-battery management unit; 3, sub-chopper; 4, main circuit breaker; 5, power supply processing unit; 6, by electrical outlet; 7, main battery administrative unit; 8, push-button unit; 9, display unit; 10, communication unit; 11, photovoltaic charged unit; 12, AC charging unit; 13, AC circuit breaker; 14, charging switch unit; 15, cooling fan.
Detailed description of the invention
The battery unit 1 preferred lithium battery of green energy resource emergency power system, arrange multiple and relatively independent, each battery unit 1 is fabricated to drawer structure, and it is provided with a sub-battery management unit 2 for monitoring battery unit 1 operating mode in each battery unit 1, sub-battery management unit 2 monitors the temperature of respective battery unit 1, output voltage, output electric current and dump energy, it is ensured that the work of battery-efficient.
Green energy resource emergency power system is fabricated to clothes closet shape, cabinet rear portion is vertically provided with multilamellar slot, the track matched with drawer structure it is provided with in every layer of slot, drawer structure be used for being inserted in corresponding slot, cabinet front portion is for operation and controls end face, application is arranged power supply processing unit 5, is used electrical outlet 6, main battery administrative unit 7, and anterior panel can also arrange push-button unit 8 and display unit 9, is used for inputting control signal and display power cabinet parameter. Such arrangement had both saved space, was also convenient for user operation.
For guaranteeing battery radiating effect, as shown in Figure 2, slot is the structure that ecto-entad tilts gradually downward, cabinet both sides are equipped with the slot interval of slot and both sides and arrange, drawer structure and the close contact of slot side, ensure not leak out in slot both sides, between the drawer structure back side (drawer inner end plate) and cabinet inwall, there is ventilation gap, also there is between every layer of drawer structure ventilation gap, cabinet top is provided with the cooling fan 15 of downward air blast, bottom of cabinet bulk is provided with air outlet, such cooling air can from the drawer unit of the superiors, the heat of the upper and lower surface of drawer unit is taken away, there is fabulous radiating effect, solve the heat dissipation problem of drawer type power cabinet.
Owing to drawer unit both sides need and slot close contact, guarantee not leak out, also to ensure that electrical connection is reliable simultaneously, it is also required to consider the versatility (needing not distinguish between left and right) of every layer of battery unit 1, as shown in Figure 3, drawer unit is " convex " font, drawer structure both sides are provided with the plug for being clamped on DC master row, plug is positioned at the medium position of drawer structure both sides, plug is U-shaped spring leaf, and the openings of plug is towards the drawer unit back side, plug connects the both positive and negative polarity of battery unit 1 respectively, DC master row vertically it is provided with (two in cabinet, positive pole and cathode bus bar), DC master row is positioned at the medium position of slot both sides, coordinate the position of plug.In addition, sub-battery management unit 2 is provided with the communication joint being connected with communication jack, the medium position of every layer of slot-side is provided with the communication jack connecting communication bus, i.e. DC master row side, communication plug is positioned at the medium position of drawer structure side, sub-battery management unit 2 is communicated with main battery administrative unit 7 by communication bus, constitutes communication network. The slot tilted ensure that the reliability patched.
As it is shown in figure 1, DC Module connects power supply processing unit 5 input, power supply processing unit 5 outfan connects by electrical outlet 6, can arrange the socket of multiple different model by electrical outlet 6, and be manipulated by push-button unit 8, it is possible to control out-put supply.
Power supply processing unit 5 includes inverter and transformator, for unidirectional current is become alternating current, and regulate the voltage of out-put supply, main circuit breaker 4 it is provided with between power supply processing unit 5 input and flow busbar, main battery administrative unit 7 controls main circuit breaker 4 break-make, when occurring that situation is can drop output. Being provided with sub-chopper 3 between each battery unit 1 and plug, corresponding sub-battery management unit 2 controls sub-chopper 3 break-make, when certain battery unit 1 breaks down, it is possible to the output of certain battery unit 1 of drop.
Main battery administrative unit 7 is connected to push-button unit 8, display unit 9 and communication unit 10, communication unit 10 and remote server radio communication, it is possible to remotely controls and monitoring power cabinet, improves the reliability of power cabinet work.
System is provided with photovoltaic charged unit 11 and AC charging unit 12, for charging for battery unit 1, photovoltaic charged unit 11 and the charged switch unit 14 of AC charging unit 12 connect DC master row, photovoltaic charged unit 11 can be selected to power for charging switch unit 14 or AC charging unit 12 is powered, main battery administrative unit 7 outputs control signals to charging switch unit 14, power supply opportunity can be controlled, AC circuit breaker 13 it is provided with between AC charging unit 12 and mains connection, main battery administrative unit 7 controls AC circuit breaker 13 break-make, can when AC charging unit 12 breaks down, actively power-off.
Above in conjunction with accompanying drawing, this utility model is exemplarily described; obvious this utility model implements and is not subject to the restrictions described above; as long as have employed the improvement of the various unsubstantialities that method of the present utility model design carries out with technical scheme; or not improved design of the present utility model and technical scheme are directly applied to other occasion, all within protection domain of the present utility model.
Claims (8)
1. a green energy resource emergency power system, it is characterized in that: system is provided with multiple independent battery unit, each described battery unit is that drawer structure is inserted in cabinet, multilamellar slot vertically it is provided with in described cabinet, the track matched with drawer structure it is provided with in slot every layer described, DC master row vertically it is provided with in described cabinet, described drawer structure is provided with the plug for being clamped on DC master row, described plug connects the both positive and negative polarity of battery unit respectively, described DC Module connects power supply processing unit input, described power supply processing unit outfan connection electrical outlet.
2. green energy resource emergency power system according to claim 1, it is characterized in that: described slot is the structure that ecto-entad tilts gradually downward, described cabinet both sides are equipped with the slot interval of slot and both sides and arrange, described drawer structure and the close contact of slot side, between the drawer structure back side and cabinet inwall, there is ventilation gap, also there is between every layer of drawer structure ventilation gap, described cabinet top is provided with the cooling fan of downward air blast, described bottom of cabinet bulk is provided with air outlet, described DC master row is positioned at the medium position of slot both sides, described plug is positioned at the medium position of drawer structure both sides.
3. green energy resource emergency power system according to claim 2, it is characterized in that: each described battery unit is equipped with sub-battery management unit, main battery administrative unit it is provided with in cabinet, the medium position of every layer of described slot-side is provided with the communication jack connecting communication bus, described sub-battery management unit is provided with the communication joint being connected with communication jack, and communication plug is positioned at the medium position of drawer structure side, described sub-battery management unit is communicated with main battery administrative unit by communication bus.
4. green energy resource emergency power system according to claim 3, it is characterised in that: described drawer unit is " convex " font, and described plug is U-shaped spring leaf, and the openings of plug is towards the drawer unit back side.
5. the green energy resource emergency power system according to claim 1,2,3 or 4, it is characterized in that: described power supply processing unit includes inverter and transformator, it is provided with main circuit breaker between described power supply processing unit input and flow busbar, described main battery administrative unit controls main circuit breaker break-make, being provided with sub-chopper between each described battery unit and plug, corresponding sub-battery management unit controls sub-chopper break-make.
6. green energy resource emergency power system according to claim 5, it is characterized in that: described main battery administrative unit is connected to push-button unit, display unit and communication unit, described communication unit and remote server radio communication, described push-button unit, display unit and be positioned at cabinet front by electrical outlet.
7. green energy resource emergency power system according to claim 6, it is characterised in that: system is provided with the charged switch unit of photovoltaic charged unit and AC charging unit, described photovoltaic charged unit and AC charging unit and connects DC master row.
8. green energy resource emergency power system according to claim 7, it is characterized in that: described main battery administrative unit outputs control signals to charging switch unit, being provided with AC circuit breaker between described AC charging unit and mains connection, described main battery administrative unit controls AC circuit breaker break-make.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620088521.1U CN205319769U (en) | 2016-01-27 | 2016-01-27 | Green energy emergency power source system |
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CN201620088521.1U CN205319769U (en) | 2016-01-27 | 2016-01-27 | Green energy emergency power source system |
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CN205319769U true CN205319769U (en) | 2016-06-15 |
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CN201620088521.1U Expired - Fee Related CN205319769U (en) | 2016-01-27 | 2016-01-27 | Green energy emergency power source system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105515122A (en) * | 2016-01-27 | 2016-04-20 | 国网安徽省电力公司芜湖县供电公司 | Green energy emergency power system |
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2016
- 2016-01-27 CN CN201620088521.1U patent/CN205319769U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105515122A (en) * | 2016-01-27 | 2016-04-20 | 国网安徽省电力公司芜湖县供电公司 | Green energy emergency power system |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160615 Termination date: 20220127 |