Integrated cabinet
By installing backup power equipment and air conditioning systems in the integrated cabinets of the data center, the problem of abnormal data center operation caused by abnormal mains power and UPS power supply was solved, and the reliability of power supply and cooling and space utilization were improved.
Patent Information
- Application Number
- CN202410458490.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-16
- Publication Date
- 2025-10-24
AI Technical Summary
When both the mains power supply and the UPS power supply are abnormal in existing data centers, it will cause abnormal operation and cause great losses.
An integrated cabinet is provided, in which a first power device and a first air conditioner are installed in a first cabinet, and a second power device and a second air conditioner are installed in a second cabinet, so that the first power device and the second power device are backups for each other, and the first air conditioner and the second air conditioner are also backups for each other, ensuring that in the event of a power supply or cooling system failure, the other system can continue to supply power or provide cooling.
It improves the reliability of power supply and cooling in data centers, ensuring that equipment can still operate normally in the event of a power failure, reducing equipment losses, and improving space utilization and economic benefits.
Smart Images

Figure CN120835484A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of integrated cabinet, and particularly relates to an integrated cabinet. BACKGROUND
[0002] A data center is generally equipped with an uninterruptible power supply (UPS) to ensure the stability of power supply through the UPS. Specifically, the UPS can not only eliminate power pollution on the mains, such as power surges, instantaneous high voltage, instantaneous low voltage and wire noise, and improve power quality, but also can supply power through built-in battery packs, inverters and other components when the mains power supply is abnormal, to realize uninterrupted power supply of the data center.
[0003] At present, the data center is generally connected to one UPS for power supply due to the limitation of accommodation space. In this way, when the mains power supply and the UPS power supply are both abnormal, the data center will work abnormally, causing great loss. SUMMARY
[0004] The present application provides an integrated cabinet to solve the problem that the existing data center will work abnormally when the mains power supply and the UPS power supply are both abnormal.
[0005] To solve the above problems, the present application provides the following technical solutions:
[0006] The present application provides an integrated cabinet, comprising:
[0007] A first cabinet body, a first power equipment, a first equipment installation area and a first air conditioner are arranged in the first cabinet body, the first power equipment is connected to a first power supply source, and the first power equipment is used to connect the first air conditioner and a first equipment installed in the first equipment installation area to supply power for the first air conditioner and the first equipment;
[0008] A second cabinet body, a second power equipment, a second equipment installation area and a second air conditioner are arranged in the second cabinet body, the second power equipment is connected to a second power supply source, and the second power equipment is used to connect the second air conditioner and a second equipment installed in the second equipment installation area to supply power for the second air conditioner and the second equipment;
[0009] The first power equipment is also connected to the second equipment, and the first power equipment is used to supply power for the second equipment when the second power equipment fails to supply power, the second power equipment is also connected to the first equipment, and the second power equipment is used to supply power for the first equipment when the first power equipment fails to supply power.
[0010] In some possible design, the first air conditioner and the second air conditioner are arranged at the bottom of the first cabinet and the second cabinet.
[0011] In some possible design, the first power device and the second power device are arranged at the top of the first cabinet and the second cabinet.
[0012] In some possible design, the first cabinet is provided with a first channel for accommodating a first line connecting the second power device and the first device; the second cabinet is provided with a second channel adjacent to the first channel, the second channel being used for accommodating a second line connecting the first power device and the second device.
[0013] In some possible design, the first channel and the second channel extend along the height direction of the first cabinet to separate the first cabinet and the second cabinet.
[0014] In some possible design, the first cabinet is provided with a third channel opposite to the first channel, the third channel being used for accommodating a third line connecting the first power device, the first device and the first air conditioner; the second cabinet is provided with a fourth channel opposite to the second channel, the fourth channel being used for accommodating a fourth line connecting the second power device, the second device and the second air conditioner.
[0015] In some possible design, the first cabinet and the second cabinet are each provided with two parallel partitions, the first cabinet is divided into a first installation area, a first device installation area and a second installation area arranged in a top-bottom relationship by the partitions, and the second cabinet is divided into a third installation area, a second device installation area and a fourth installation area arranged in a top-bottom relationship by the partitions.
[0016] In some possible design, the height of the second installation area and the fourth installation area is less than or equal to 600 mm.
[0017] In some possible design, further comprising a collection module and a display control module, the collection module is used to acquire the operating parameters of the first power device, the second power device, the first air conditioner and the second air conditioner, and transmit the operating parameters to the display control module, the display control module is used to display the operating parameters, and adjust the operating state of the first power device, the second power device, the first air conditioner and the second air conditioner according to the operating parameters.
[0018] In some possible design, the collection module is further configured to acquire a remaining space value in the first device mounting area and the second device mounting area, and transmit the remaining space value to the display control module, so that the display control module displays the remaining space value.
[0019] In some possible design, the display control module comprises a first display controller and a second display controller, both of which are connected with the collection module, the first display controller is installed on the first cabinet body, the second display controller is installed on the second cabinet body, both of the first display controller and the second display controller are connected with the first power device and the second power device, so as to be powered by any one of the first power device and the second power device, and when one of the first power device and the second power device fails, the first display controller and the second display controller switch to the other one for power supply.
[0020] The operation parameters comprise first operation parameters of the first power device and the first air conditioner, and second operation parameters of the second power device and the second air conditioner, the first display controller is configured to display the first operation parameters and control the operation state of the first power device and the first air conditioner according to the first operation parameters, and the second display controller is configured to display the second operation parameters and control the operation state of the second power device and the second air conditioner according to the second operation parameters.
[0021] The first display controller and the second display controller are further connected through signal interaction, so as to perform corresponding functions by the other one when one of the first display controller and the second display controller fails.
[0022] The application provides an integrated cabinet, which comprises a first cabinet body, a second cabinet body, a first power device, a first device mounting area, a first air conditioner, a second power device, a second device mounting area and a second air conditioner. The first power device, the first device mounting area and the first air conditioner are arranged in the first cabinet body, and the second power device, the second device mounting area and the second air conditioner are arranged in the second cabinet body. The first power device and the second power device are connected with a first power supply and a second power supply respectively. On the one hand, the first power device in the first cabinet body and the second power device in the second cabinet body are backup for each other. When one of the first power supply and the second power supply fails, the other one can supply power to the devices in the first cabinet body and the second cabinet body. When one of the first power device and the second power device fails, the other one can also supply power to the devices in the first cabinet body and the second cabinet body, so as to effectively improve the reliability of power supply. On the other hand, the first air conditioner in the first cabinet body and the second air conditioner in the second cabinet body are backup for each other. When one of the first air conditioner and the second air conditioner fails, the other one can be used for cooling, so as to effectively improve the stability of the operation of the devices. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.
[0024] Figure 1 A schematic diagram of the internal structure of an integrated cabinet provided in an embodiment of the present application;
[0025] Figure 2 for Figure 1 Schematic diagram of the air flow direction of the integrated cabinet in the figure;
[0026] Figure 3 This is a three-dimensional diagram of an existing standard cabinet;
[0027] Figure 4 for Figure 3 The front view of the standard cabinet in;
[0028] Figure 5 for Figure 3 Side view of a standard cabinet in ;
[0029] Figure 6 for Figure 1 Schematic diagram of the cabinet structure of the integrated cabinet;
[0030] Figure 7 for Figure 1 A front view of the integrated cabinet in FIG;
[0031] Figure 8 for Figure 1 A side view of the integrated cabinet in FIG.
[0032] Figure 9 This is a schematic diagram of the layout of the existing data center;
[0033] Figure 10 This is a schematic diagram of the layout of a data center after using the integrated cabinet according to an embodiment of the present application.
[0034] Reference numerals:
[0035] 110-Main computer room; 120-Auxiliary area; 130-Standard cabinet;
[0036] 200-integrated cabinet;
[0037] 300 - first cabinet; 310 - first power equipment; 311 - UPS host; 312 - UPS battery; 320 - first equipment installation area; 330 - first air conditioner; 340 - first trough; 350 - third trough; 360 - first installation area; 370 - second installation area; 380 - partition; 390 - first display controller;
[0038] 400 - second cabinet body; 410 - second power equipment; 420 - second equipment installation area; 430 - second air conditioner; 431 - air conditioner pipeline; 440 - second channel; 450 - fourth channel; 460 - second display controller;
[0039] 500 - first equipment;
[0040] 600 - second equipment;
[0041] 700 - first power supply;
[0042] 800 - second power supply.
[0043] The specific embodiments of the present application have been shown by the above-described drawings, and will be described in more detail hereinafter. These drawings and the written description are not intended to restrict the scope of the concept of the present application by any means, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION
[0044] The exemplary embodiments will be described in detail herein with reference to the accompanying drawings. In the following description, the same numbers refer to the same elements throughout the drawings, unless otherwise represented. The embodiments described in the following exemplary embodiments do not represent all the embodiments consistent with the present application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of the present application, as detailed in the appended claims.
[0045] An Internet Data Center (IDC) requires space, power, and refrigeration to be matched with each other, and has a high requirement for reliability of power and refrigeration.
[0046] At present, in order to meet the requirements of data centers for power and refrigeration, a data center is generally divided into a plurality of main machine rooms and auxiliary areas, and auxiliary equipment such as power and air conditioners is generally installed in the auxiliary areas to serve the main machine rooms. Such an arrangement has at least the following problems:
[0047] 1. When the accommodation space of a data center is fixed, the auxiliary area for installing auxiliary equipment such as power and air conditioners may occupy nearly 50% of the accommodation space, so that the number of cabinets in the main machine room is limited, i.e., the data center can accommodate fewer devices;
[0048] 2. The auxiliary area for installing auxiliary equipment such as power and air conditioners is arranged separately from the main machine room, and when installing, the connection route needs to be increased, resulting in a corresponding increase in the cost of the data center;
[0049] 3. Auxiliary equipment such as power and air conditioners is arranged in a centralized manner, which often serves multiple main machine rooms, and has poor management clarity.
[0050] 4. Each air conditioner and power equipment serves multiple cabinets, and once the air conditioner or power equipment fails, the equipment in the corresponding cabinet cannot work normally, causing great loss;
[0051] 5. The power equipment is mainly powered by one power supply, and when the power supply fails, the power equipment needs to be powered by a backup power supply, and the equipment served by the power equipment is high in demand for the backup power supply.
[0052] In order to avoid the above problems, the application provides an integrated cabinet, so that the first power equipment in the first cabinet body is connected to the first power supply, the second power equipment in the second cabinet body is connected to the second power supply, and the first power equipment and the second power equipment are backed up for each other, so that the first power supply and the second power supply are complementary, and the first power equipment and the second power equipment are complementary, effectively improving the reliability of power supply of the data center, and the first air conditioner in the first cabinet body and the second air conditioner in the second cabinet body are backed up for each other, when one of the first air conditioner and the second air conditioner fails, the other can still cool the equipment in the first cabinet body and the second cabinet body, thereby improving the reliability of cooling of the data center.
[0053] The technical solutions of the application and how the technical solutions of the application solve the above technical problems will be described in detail below with specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of the application will be described below with reference to the drawings.
[0054] Please refer to Figure 1 The embodiment provides an integrated cabinet 200, which includes a first cabinet body 300 and a second cabinet body 400.
[0055] The first cabinet body 300 is provided with a first power equipment 310, a first equipment mounting area 320 and a first air conditioner 330, the first power equipment 310 is connected to the first power supply 700, and the first power equipment 310 is used to connect the first air conditioner 330 and the first equipment 500 installed in the first equipment mounting area 320 to supply power for the first air conditioner 330 and the first equipment 500. The second cabinet body 400 is provided with a second power equipment 410, a second equipment mounting area 420 and a second air conditioner 430, the second power equipment 410 is connected to the second power supply 800, and the second power equipment 410 is used to connect the second air conditioner 430 and the second equipment 600 installed in the second equipment mounting area 420 to supply power for the second air conditioner 430 and the second equipment 600.
[0056] The first device 500 and the second device 600 can be conventional computing, storage, communication, and the like server devices, and the number of the first devices 500 arranged in the first cabinet 300 and the number of the second devices 600 arranged in the second cabinet 400 are determined according to the capacity of the first cabinet 300 and the second cabinet 400.
[0057] The first power device 310 and the second power device 410 can be uninterruptible power supply (UPS) devices to further improve the reliability of power supply. Of course, the first power device 310 and the second power device 410 can also be other conventional power supply devices as long as they can effectively supply power, and the embodiment is not limited thereto.
[0058] It can be understood that the UPS device is a power protection device containing an energy storage device and mainly composed of an inverter, which can output stable voltage and frequency. The UPS device mainly includes a UPS host 311 and a UPS battery 312. The UPS host 311 is mainly composed of a rectifier, an inverter, and a static switch. The rectifier can convert alternating current into direct current, which is filtered and supplied to the load or the inverter, and can charge the UPS battery 312. The inverter can convert direct current into alternating current. The static switch is a non-contact switch composed of two controllable silicon reverse parallel circuits. The UPS battery 312 is composed of a plurality of batteries connected in series. When the power supply connected to the UPS device is normal, the UPS battery 312 converts electrical energy into chemical energy and stores it in the battery. When the power supply is abnormal, the UPS battery 312 can convert chemical energy into electrical energy to supply the inverter or the load.
[0059] The first power supply and the second power supply can be two different power supplies, that is, the first power device 310 is connected to a power supply route of one power supply, and the second power device 410 is connected to a power supply route of another power supply. Thus, the first power device 310 and the second power device 410 are powered by different power supplies, so that when one power supply fails, the other power supply can still supply power, improving the reliability of power supply.
[0060] In addition, the first power device 310 is also connected to the second device 600, and the first power device 310 is used to supply power to the second device 600 when the second power device 410 fails to supply power. The second power device 410 is also connected to the first device 500, and the second power device 410 is used to supply power to the first device 500 when the first power device 310 fails to supply power.
[0061] Specifically, the first PDU patch panel and the second PDU patch panel can be arranged in the first cabinet 300, the first PDU patch panel is connected with the first power equipment 310 and is powered by the first power equipment 310, the first air conditioner 330 and the first equipment 500 are both plugged into the first PDU patch panel to obtain power from the first PDU patch panel, and the second PDU patch panel is connected with the second power equipment 410 and is powered by the second power equipment 410, the first equipment 500 is also plugged into the second PDU patch panel to obtain power from the second PDU patch panel. When the power supply of the first PDU patch panel is abnormal, the second PDU patch panel can be used for power supply. The third PDU patch panel and the fourth PDU patch panel can be arranged in the second cabinet 400, the third PDU patch panel is connected with the second power equipment 410 and is powered by the second power equipment 410, the second equipment 600 and the second air conditioner 430 are plugged into the third PDU patch panel to obtain power from the third PDU patch panel, and the fourth PDU patch panel is connected with the first power equipment 310 and is powered by the first power equipment 310, the second equipment 600 is also plugged into the fourth PDU patch panel to obtain power from the fourth PDU patch panel. When the power supply of the second PDU patch panel is abnormal, the fourth PDU patch panel can be used for power supply.
[0062] The PDU patch panel (Power Distribution Unit) is a socket device commonly used by those skilled in the art, and the present embodiment does not elaborate on it.
[0063] After arranging the PDU patch panel, the wiring in the first cabinet 300 and the second cabinet 400 can be simplified, and the convenience of installing the first equipment 500, the first air conditioner 330, the second air conditioner 430, and the second equipment 600 can be improved.
[0064] It can be understood that the data center can be provided with one or more integrated cabinets 200 of the present embodiment, as long as the storage requirements of the data center are met.
[0065] The first cabinet 300 and the second cabinet 400 are generally arranged adjacent to each other, and the shapes and sizes of the two can be completely the same, or the shapes and sizes of the first cabinet 300 and the second cabinet 400 can be changed according to the actual situation of the data center, and the present embodiment does not limit them.
[0066] The integrated cabinet 200 of the embodiment is powered by the first power supply device 310 when working normally, and the first device 500 and the first air conditioner 330 are powered by the first power supply device 310, and the second device 600 and the second air conditioner 430 are powered by the second power supply device 410. When the first power supply source 700 fails, the first air conditioner 330 stops working, and the first device 500 is connected to the second power supply device 410, so that the first device 500 is also powered by the second power supply device 410. When the second power supply source 800 fails, the second air conditioner 430 stops working, and the second device 600 is connected to the first power supply device 310, so that the second device 600 is also powered by the first power supply device 310. When any one of the first power supply source 700 and the second power supply source 800 fails, the first device 500 and the second device 600 can normally work. The first cabinet 300 and the second cabinet 400 are arranged adjacent to each other. When any one of the first power supply source 700 and the second power supply source 800 fails, one of the first air conditioner 330 and the second air conditioner 430 can work normally, and the first cabinet 300 and the second cabinet 400 can still be cooled. When one of the first air conditioner 330 and the second air conditioner 430 fails, the other one can continue to cool, so that the temperature of the data center does not become too high.
[0067] In some possible embodiments, referring to Figure 2 As shown, the first air conditioner 330 and the second air conditioner 430 are arranged at the bottom of the first cabinet 300 and the second cabinet 400.
[0068] The first air conditioner 330 and the second air conditioner 430 can be a fluorine system or a water system, that is, the indoor unit of the first air conditioner 330 and the second air conditioner 430 is arranged at the bottom of the first cabinet 300 and the second cabinet 400. For the fluorine system, the outdoor unit can be connected through the air conditioner pipeline 431. For the water system, the chilled water can be transported through the air conditioner pipeline 431. The embodiment does not limit the pipeline. The air conditioner pipeline 431 can be a copper or stainless steel pipeline, and the embodiment does not limit the pipeline.
[0069] Such an arrangement allows the liquid to be located at the bottom of the first cabinet 300 and the second cabinet 400, so as to avoid affecting the power supply device, the first device 500 and the second device 600, thereby effectively improving the safety of the integrated cabinet 200.
[0070] The first air conditioner 330 and the second air conditioner 430 can also be arranged at other positions, but are arranged at the bottom of the first cabinet 300 and the second cabinet 400, so as to facilitate arrangement of the air conditioner pipeline 431 and avoid influence of liquid on other equipment. Meanwhile, the arrangement positions of the first power equipment 310 and the second power equipment 410 can be selected at will, and the embodiment does not limit the arrangement positions.
[0071] For example, the first power equipment 310 is arranged between the first air conditioner 330 and the first equipment mounting area 320, and the second power equipment 410 is arranged between the second air conditioner 430 and the second equipment mounting area 420.
[0072] Specifically, as shown in Figure 3 , Figure 4 and Figure 5 , the height of a common standard cabinet 130 is generally about 2200 mm, the width is about 600 mm, and the thickness is about 1200 mm, and the vertical space utilization effect of the data center is poor. At present, many data centers have a problem of space shortage, and generally have strict requirements on the volume rate. For the data center that has strict requirements on the volume rate but no clear requirements on the building height, the integrated cabinet 200 of the embodiment can be used.
[0073] In the embodiment, the power equipment, the equipment mounting area and the air conditioner are arranged in an up-down relationship in the cabinet, and as long as the height of the first cabinet 300 and the second cabinet 400 is slightly increased, the first cabinet 300 and the second cabinet 400 can have the same accommodation space as the existing cabinet, so that the vertical space of the data center can be effectively utilized.
[0074] For example, the first power equipment 310 is arranged at the top of the first cabinet 300, the second power equipment 410 is arranged at the top of the second cabinet 400, the first equipment mounting area 320 is located between the first power equipment 310 and the first air conditioner 330, and the second equipment mounting area 420 is located between the second power equipment 410 and the second air conditioner 430, so as to facilitate dismounting and mounting of the first equipment 500 and the second equipment 600.
[0075] Specifically, such an arrangement can make the first equipment mounting area 320 and the second equipment mounting area 420 be located at a height convenient for user operation, so as to facilitate increase or maintenance of the first equipment 500 in the first equipment mounting area 320 and the second equipment 600 in the second equipment mounting area 420.
[0076] In actual application, as shown in Figure 6As shown, the first cabinet body 300 and the second cabinet body 400 can be two cabinet bodies of the same structure and arranged side by side, that is, the first cabinet body 300 and the second cabinet body 400 are both rectangular cabinet bodies, and the front thereof is provided with a cabinet door, so that the user can open the cabinet door to maintain the equipment installed inside.
[0077] In the first cabinet body 300 and the second cabinet body 400, two mutually parallel partitions 380 are arranged, and the first cabinet body 300 is divided into a first installation area 360, a first equipment installation area 320 and a second installation area 370 arranged in an up-down relationship by the partitions 380, and the second cabinet body 400 is divided into a third installation area, a second equipment installation area 420 and a fourth installation area arranged in an up-down relationship by the partitions 380, the first power equipment 310 is installed in the first installation area 360, the first air conditioner 330 is installed in the second installation area 370, the second power equipment 410 is installed in the third installation area, and the second air conditioner 430 is installed in the fourth installation area, so that the partitions 380 are used to separate and install the equipment.
[0078] Further, as shown in Figure 7 and Figure 8 In order to facilitate the user to operate, the height of the second installation area 370 and the fourth installation area can be less than or equal to 600mm.
[0079] Specifically, the height of the second installation area 370 and the fourth installation area is less than or equal to 600mm, and the height of the first equipment installation area 320 and the second equipment installation area 420 is generally about 2200mm, so that the first equipment installation area 320 and the second equipment installation area 420 are still at a height convenient for the user to operate.
[0080] In addition, the thickness of the general cabinet is generally 1200mm, and the width is 600mm, in order to adapt to the existing data center, the thickness d of the first cabinet body 300 and the second cabinet body 400 in the embodiment can be set to 1200mm, and the width can be set to 600mm.
[0081] The height of the first cabinet body 300 and the second cabinet body 400 can be slightly higher when the height is not strictly limited.
[0082] Exemplarily, the height b of the first installation area 360 and the third installation area is 1100 mm, the UPS host 311 and the UPS battery 312 of the first power equipment 310 are arranged in the first installation area 360 in a top-bottom relationship, the UPS host 311 and the UPS battery 312 of the second power equipment 410 are arranged in the third installation area in a top-bottom relationship, at this time, the thickness of the first power equipment 310 and the second power equipment 410 is not greater than 1200 mm, the height is not greater than 1000 mm, and the width is not greater than 500 mm, which is preferable. The height a of the first equipment installation area 320 and the second equipment installation area 420 is 2200 mm, which is consistent with the size of a conventional cabinet. The height c of the second installation area 370 and the fourth installation area is 500 mm, at this time, the thickness of the first air conditioner 330 and the second air conditioner 430 is not greater than 1000 mm, the width is not greater than 500 mm, and the height is not greater than 500 mm, which is appropriate.
[0083] As shown in Figure 9 The existing data center needs to set up a host room 110 and an auxiliary area 120, the host room 110 installs a cabinet, the auxiliary area 120 installs power, air conditioning and other auxiliary equipment, and the auxiliary area 120 needs to occupy a large space.
[0084] The height of the equipment installation area in the embodiment is 2200 mm, and the power equipment and the air conditioner are arranged on the upper and lower sides of the equipment installation area, so that the accommodation capacity of the equipment installation area can be maintained unchanged, the vertical space can be fully utilized, the area of the horizontal space can be reduced, the same area of the data center can be arranged more cabinets, and the overall benefit can be improved, that is, as shown in Figure 10 The integrated cabinet 200 of the embodiment can reduce the proportion of the use space of the auxiliary area 120 of the data center, increase the area of the host room 110, in some cases, the number of cabinets that can be set in the data center can even be increased by 80%, and the economic benefit can be effectively improved.
[0085] In some possible embodiments, the first cabinet 300 is provided with a first channel 340 for accommodating a first line connected between the second power equipment 410 and the first equipment 500; the second cabinet 400 is provided with a second channel 440 adjacent to the first channel 340, the second channel 440 is used for accommodating a second line connected between the first power equipment 310 and the second equipment 600, and the first channel 340 and the second channel 440 both extend along the height direction of the first cabinet 300, so as to standardize the arrangement of the first line through the first channel 340 and the arrangement of the second line through the second channel 440.
[0086] Among them, in order to facilitate operation, the first cabinet 300 and the second cabinet 400 are arranged side by side in the same direction, that is, the cabinet doors of the two are facing the same side, and the first groove 340 and the second groove 440 are correspondingly arranged in the thickness direction of the first cabinet 300 and the second cabinet 400, and the width of the first groove 340 and the second groove 440 can be set to 1000 mm, and the height can be adapted to the height of the first cabinet 300 and the second cabinet 400, so that the first groove 340 and the second groove 440 can separate the first power equipment 310 and the second power equipment 410, separate the first equipment installation area 320 and the second equipment installation area 420, and separate the first air conditioner 330 and the second air conditioner 430, to achieve physical isolation and improve the reliability of the operation of each equipment in the first cabinet 300 and the second cabinet 400.
[0087] Furthermore, a third groove 350 is provided on the side of the first cabinet 300 opposite to the first groove 340, and the third groove 350 is used to accommodate the third line connecting the first power equipment 310, the first equipment 500 and the first air conditioner 330; a fourth groove 450 is provided on the side of the second cabinet 400 opposite to the second groove 440, and the fourth groove 450 is used to accommodate the fourth line connecting the second power equipment 410, the second equipment 600 and the second air conditioner 430, so that the layout of the third line is standardized by the third groove 350, and the layout of the fourth line is standardized by the fourth groove 450.
[0088] It is understandable that the width of the third groove 350 and the fourth groove 450 can also be set to 1000 mm, and the height is adapted to the height of the first cabinet 300 and the second cabinet 400.
[0089] In addition, the first PDU power strip can be set in the third groove 350, the second PDU power strip can be set in the first groove 340, the third PDU power strip can be set in the fourth groove 450, and the fourth PDU power strip can be set in the second groove 440.
[0090] Of course, if Figure 2 As shown, ventilation holes can be opened on the two side walls of the first cabinet 300 where the first groove 340 and the third groove 350 are not set, and the ventilation holes can be opened at positions corresponding to the second installation area 370 and the first equipment installation area 320. Ventilation holes can be opened on the two side walls of the second cabinet 400 where the second groove 440 and the fourth groove 450 are not set, and the ventilation holes can be opened at positions corresponding to the fourth installation area and the second equipment installation area 420, so that the first air conditioner 330 and the second air conditioner 430 can achieve cooling of the equipment in the first cabinet 300 and the second cabinet 400 through the ventilation holes.
[0091] It can be understood that when the first channel 340, the second channel 440, the third channel 350 and the fourth channel 450 are not arranged, the air vents can be arranged at any position of the first cabinet 300 and the second cabinet 400 as long as the first air conditioner 330 and the second air conditioner 430 can effectively cool the equipment in the first cabinet 300 and the second cabinet 400.
[0092] In order to further improve the use effect of the integrated cabinet 200, the integrated cabinet 200 of the embodiment further comprises a collection module and a display control module. The collection module is used to obtain the operating parameters of the first power equipment 310, the second power equipment 410, the first air conditioner 330 and the second air conditioner 430, and transmit the operating parameters to the display control module. The display control module is used to display the operating parameters and adjust the operating state of the first power equipment 310, the second power equipment 410, the first air conditioner 330 and the second air conditioner 430 according to the operating parameters, so that the operating state of the first power equipment 310, the second power equipment 410, the first air conditioner 330 and the second air conditioner 430 is adapted to the first equipment 500, the second equipment 600 and the external environment, which can not only provide a reliable operating environment for the first equipment 500 and the second equipment 600, but also help to reduce energy waste.
[0093] Meanwhile, the operating parameters can be displayed through the display control module, so that the user can confirm the condition of the data center according to the operating parameters.
[0094] It can be understood that the collection module can be a detection device provided by each equipment or an additional detection device. The collected operating parameters can include the load rate, the charging state, the battery capacity and other parameters of the first power equipment 310 and the second power equipment 410, and the operating power and the refrigerating capacity and other parameters of the first air conditioner 330 and the second air conditioner 430, as long as they can assist in adjusting the operating state of the first power equipment 310, the second power equipment 410, the first air conditioner 330 and the second air conditioner 430. The embodiment does not limit them here.
[0095] Exemplarily, for the first air conditioner 330 and the second air conditioner 430, the collection module can obtain the outlet air temperature and the inlet air temperature of the air conditioner, and preset a first preset difference and a second preset difference. The first preset difference is smaller than the second preset difference. It is judged whether the difference between the outlet air temperature and the inlet air temperature is smaller than the first preset difference. If yes, the air conditioner refrigerating capacity is reduced, so as to avoid energy waste. If the difference is greater than or equal to the first preset difference and smaller than or equal to the second preset difference, it indicates that the air conditioner refrigerating capacity is appropriate and does not need to be adjusted. If the difference is greater than the second preset difference, the air conditioner refrigerating capacity is increased to improve the refrigerating capacity of the air conditioner, so as to avoid affecting the operation of the equipment in the first cabinet 300 and the second cabinet 400, thereby meeting the refrigerating demand and avoiding energy waste, and achieving a good energy-saving effect.
[0096] Illustratively, for the first power device 310 and the second power device 410, the power load condition can be acquired by the acquisition module, and the power output of the first power device 310 and the second power device 410 is adjusted in real time to adapt to the actual power supply demand, thereby effectively reducing energy waste and achieving good energy-saving effect.
[0097] It can be understood that the above is only illustrative, and other methods of adjusting operating parameters that can optimize energy saving or improve device operating effect can be used, and the present embodiment does not limit them here.
[0098] In addition, the acquisition module can also be used to acquire the remaining space value in the first device installation area 320 and the second device installation area 420, and transmit the remaining space value to the display control module, so that the display control module directly displays the remaining space value of the first device installation area 320 and the second device installation area 420, so that the user can quickly determine the number of installable first devices 500 and second devices 600, and improve the convenience of use.
[0099] It can be understood that the acquisition of the remaining space value can use common detection methods, such as RFID technology or infrared technology to detect the remaining space value in the first device installation area 320 and the second device installation area 420, as long as the corresponding detection device is added to the acquisition module. The present embodiment does not limit them here.
[0100] Further, the display control module includes a first display controller 390 and a second display controller 460, both of which are connected with the acquisition module. The first display controller 390 is installed on the first cabinet 300, and the second display controller 460 is installed on the second cabinet 400. The first display controller 390 and the second display controller 460 can be installed at any position of the first cabinet 300 and the second cabinet 400, respectively, and the present embodiment does not limit them here.
[0101] Illustratively, the first display controller 390 and the second display controller 460 are arranged on the cabinet doors of the first cabinet 300 and the second cabinet 400, respectively, for the user to observe.
[0102] The first display controller 390 and the second display controller 460 are both connected with the first power device 310 and the second power device 410, so that any one of the first power device 310 and the second power device 410 can supply power, and when one of the first power device 310 and the second power device 410 fails, the first display controller 390 and the second display controller 460 switch to the other one for power supply.
[0103] Exemplarily, when the first power device 310 and the second power device 410 can normally supply power, the first display controller 390 can be powered by the first power device 310, and the second display controller 460 can be powered by the second power device 410; when the first power device 310 fails to supply power, the first display controller 390 is automatically switched to the second power device 410 for power supply; when the second power device 410 fails to supply power, the second display controller 460 is automatically switched to the first power device 310 for power supply, thereby improving the reliability of the first display controller 390 and the second display controller 460.
[0104] The first display controller 390 and the second display controller 460 are connected to the first power device 310 and the second power device 410 through an ATS automatic transfer switch, so that the first display controller 390 and the second display controller 460 can be automatically switched to be powered by the first power device 310 or the second power device 410. Of course, other connection modes can also be used as long as the first display controller 390 and the second display controller 460 can be automatically switched to be powered in use, which is not limited in the embodiment.
[0105] Of course, the first device and the first power device and the second power device, and the second device and the first power device and the second power device can also be switched through similar modes, which is not described in detail in the embodiment.
[0106] In addition, the operating parameters include first operating parameters of the first power device 310 and the first air conditioner 330, and second operating parameters of the second power device 410 and the second air conditioner 430; the first display controller 390 is configured to display the first operating parameters and control the operating states of the first power device 310 and the first air conditioner 330 according to the first operating parameters; and the second display controller 460 is configured to display the second operating parameters and control the operating states of the second power device 410 and the second air conditioner 430 according to the second operating parameters. The first display controller 390 and the second display controller 460 are further connected through signal interaction, so that when one of the first display controller 390 and the second display controller 460 fails, the other one can perform corresponding functions.
[0107] It can be understood that the first display controller 390 and the second display controller 460 can be connected through the heartbeat line, so as to monitor the running state of each other through the heartbeat line, and once the other party fails, the other party takes over the work, and realizes the functions that the other party needs to perform. The first display controller 390 and the second display controller 460 can also be connected through other ways, as long as the running state of the other party can be effectively monitored and timely reflected. The present embodiment does not limit them here.
[0108] Exemplarily, when the first display controller 390 fails, the second display controller 460 simultaneously receives the first running parameter and the second running parameter, and displays the first running parameter and the second running parameter synchronously. Meanwhile, the second display controller 460 controls the running state of the first power equipment 310 and the first air conditioner 330 according to the first running parameter, and controls the running state of the second power equipment 410 and the second air conditioner 430 according to the second running parameter, so that the first display controller 390 and the second display controller 460 back up each other. When any one of the first display controller 390 and the second display controller 460 fails, the other one can still realize the original function, and effectively improve the use effect of the integrated cabinet 200.
[0109] It can be understood that the first display controller 390 and the second display controller 460 in the present embodiment can be a combination of a controller and a display screen, that is, the controller can be correspondingly installed in the first cabinet body 300 and the second cabinet body 400, and the display screen can be correspondingly installed on the cabinet door of the first cabinet body 300 and the second cabinet body 400. The two are in communication connection. The controller receives the running parameters collected by the collection module, and converts them into display analog signals and control signals, so as to control the content displayed on the display screen. In addition, the controller can also control the running state of the power equipment and the air conditioner according to the running parameters.
[0110] Other embodiments of the application will be apparent to those skilled in the art from consideration of the specification and practice of the application disclosed herein. It is intended that the specification and examples be considered as exemplary only, with the true scope and spirit of the application being indicated by the following claims.
[0111] It should be understood that the application is not limited to the precise construction that has been described above and shown in the accompanying drawings and that various modifications and changes can be made by those skilled in the art without departing from the scope of the application. The scope of the application is indicated only by the appended claims.
Claims
1. An integrated cabinet, characterized by, The utility model relates to a cabinet, which comprises: a first cabinet body, a first power device, a first device mounting area and a first air conditioner are arranged in the first cabinet body, the first power device is connected with a first power supply, the first power device is used for connecting the first air conditioner, the first device mounted in the first device mounting area to supply power for the first air conditioner and the first device; a second cabinet body, a second power device, a second device mounting area and a second air conditioner are arranged in the second cabinet body, the second power device is connected with a second power supply, the second power device is used for connecting the second air conditioner, the second device mounted in the second device mounting area to supply power for the second air conditioner and the second device; wherein the first power device is also connected with the second device, the first power device is used for supplying power for the second device when the second power device fails to supply power, the second power device is also connected with the first device, the second power device is used for supplying power for the first device when the first power device fails to supply power.
2. The integrated cabinet of claim 1, wherein, The first air conditioner and the second air conditioner are correspondingly arranged at the bottom of the first cabinet body and the second cabinet body.
3. The integrated cabinet of claim 2, wherein, The first power device and the second power device are correspondingly arranged at the top of the first cabinet body and the second cabinet body.
4. The integrated cabinet of claim 3, wherein, A first channel is arranged on the first cabinet body, the first channel is used for accommodating a first line connected with the second power device and the first device; a second channel adjacent to the first channel is arranged on the second cabinet body, the second channel is used for accommodating a second line connected with the first power device and the second device; wherein the first channel and the second channel both extend along the height direction of the first cabinet body to separate the first cabinet body and the second cabinet body.
5. The integrated cabinet of claim 4, wherein, A third channel is arranged on the side of the first cabinet body opposite to the first channel, the third channel is used for accommodating a third line connected with the first power device, the first device and the first air conditioner; a fourth channel is arranged on the side of the second cabinet body opposite to the second channel, the fourth channel is used for accommodating a fourth line connected with the second power device, the second device and the second air conditioner.
6. The integrated cabinet of any of claims 3 to 5, wherein, Two mutually parallel partitions are arranged in the first cabinet body and the second cabinet body respectively, the first cabinet body is divided into a first mounting area, the first device mounting area and a second mounting area arranged in an up-down relationship by the partitions, the second cabinet body is divided into a third mounting area, the second device mounting area and a fourth mounting area arranged in an up-down relationship by the partitions.
7. The integrated cabinet of claim 6, wherein, The height of the second mounting area and the fourth mounting area is less than or equal to 600 mm.
8. The integrated cabinet of claim 6, wherein, The utility model further comprises a collection module and a display control module, the collection module is used for acquiring the running parameters of the first power device, the second power device, the first air conditioner and the second air conditioner, and transmitting the running parameters to the display control module, the display control module is used for displaying the running parameters, and adjusting the running state of the first power device, the second power device, the first air conditioner and the second air conditioner according to the running parameters.
9. The integrated cabinet of claim 8, wherein, The collection module is further configured to acquire a remaining space value in the first and second equipment installation areas, and transmit the remaining space value to the display control module to display the remaining space value by the display control module.
10. The integrated cabinet of claim 9, wherein, The display control module comprises a first display controller and a second display controller, both of which are connected with the collection module, the first display controller is installed on the first cabinet, the second display controller is installed on the second cabinet, and both of the first and second display controllers are connected with the first and second power equipment to be powered by any of the first and second power equipment, and when one of the first and second power equipment fails to supply power, the first and second display controllers switch to the other to supply power. The operating parameters comprise first operating parameters of the first power equipment and the first air conditioner, and second operating parameters of the second power equipment and the second air conditioner, the first display controller is configured to display the first operating parameters and control operating states of the first power equipment and the first air conditioner according to the first operating parameters, and the second display controller is configured to display the second operating parameters and control operating states of the second power equipment and the second air conditioner according to the second operating parameters. The first and second display controllers are further connected by signal interaction to perform corresponding functions by the other when one of the first and second display controllers fails.