Container prefabricated power module integrated equipment

By designing prefabricated containerized power module integrated equipment, power equipment is laid out at intervals along the horizontal direction and cables are laid through strong elevator racks, which solves the problems of large footprint, difficult deployment and complex maintenance in existing technologies, and achieves efficient space utilization and rapid deployment.

CN224318967UActive Publication Date: 2026-06-02GUANGDONG XINHUI CIMC SPECIAL TRANSPORT EQUIPS +2

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG XINHUI CIMC SPECIAL TRANSPORT EQUIPS
Filing Date
2025-06-06
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing power module power supply and distribution systems occupy a large area, are difficult to deploy and maintain, and have a long construction period.

Method used

The containerized prefabricated power module integrated equipment is adopted. The power equipment is arranged horizontally on both sides of the container to form a maintenance channel. The cables are laid through a strong elevator frame. The power equipment and cables are arranged in a reasonable manner to form a maintenance channel to improve space utilization and heat dissipation efficiency. After pre-installation, it is transported to the target location for deployment.

Benefits of technology

It improves the space utilization and deployment efficiency of the power supply and distribution system, simplifies the maintenance process, and shortens the construction cycle.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of container prefabricated power module integrated equipment, including box, power supply system, first heavy power lifting frame and second heavy power lifting frame.Power supply system includes at least two power equipment, at least two power equipment is set in box, at least two power equipment is spaced apart along first horizontal direction and is laid in the both sides of box, to form maintenance passage in the structure of box, maintenance passage extends along the second horizontal direction perpendicular to first horizontal direction.First heavy power lifting frame is set in box and is laid in the upper portion of box along the height direction of box, for laying cable connected power equipment.Second heavy power lifting frame is set in box and is laid in the lower portion of box along the height direction, for laying cable of output power.According to the container prefabricated power module integrated equipment of the utility model, deployment efficiency is high, maintenance is simple, and construction cycle is short.
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Description

Technical Field

[0001] This utility model relates generally to the technical field of power supply and distribution for data center power modules, and more specifically to a containerized prefabricated power module integrated equipment. Background Technology

[0002] With the rapid development of power distribution equipment technology in my country, market demand is increasingly inclined towards prefabrication, standardization, and modularization. However, existing modular power supply and distribution systems occupy a large area, are difficult to deploy and maintain, and have long construction cycles. Utility Model Content

[0003] The utility model description section introduces a series of simplified concepts, which will be further explained in detail in the detailed description section. This utility model description section is not intended to limit the key features and essential technical features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.

[0004] To at least partially solve the above problems, this utility model provides a containerized prefabricated power module integration equipment, the containerized prefabricated power module integration equipment comprising:

[0005] Box;

[0006] A power supply and distribution system, the power supply and distribution system including at least two power devices, the at least two power devices being installed in the enclosure, the at least two power devices being spaced apart along a first horizontal direction and arranged on both sides of the enclosure, thereby forming a maintenance channel in the enclosure, the maintenance channel extending along a second horizontal direction perpendicular to the first horizontal direction;

[0007] A first strong elevator frame, disposed within the enclosure and arranged along the height of the enclosure on its upper part, is used to lay cables connecting the electrical equipment; and

[0008] The second strong elevator frame is installed inside the box and laid along the height direction at the lower part of the box for laying power output cables.

[0009] According to the containerized prefabricated power module integrated equipment of this utility model, each power device of the power supply and distribution system is respectively arranged in the installation positions spaced apart along the first horizontal direction inside the container, which can improve the space utilization rate of the power supply and distribution system inside the container. The maintenance channel formed by the arrangement of the installation positions inside the container facilitates the opening and maintenance of each power device, and the setting of the maintenance channel also helps the heat dissipation of the power supply and distribution system. In addition, the cables between the power devices are laid through the first strong elevator frame located at the top of the container, while the power output cables of the power devices are laid through the second strong elevator frame. The arrangement is reasonable, further improving the space utilization rate of the power supply and distribution system inside the container and reducing the footprint of the containerized prefabricated power module integrated equipment. The containerized prefabricated power module integrated equipment can be pre-installed and then transported to the target location, where the power is output from the bottom of the container. The deployment efficiency is high, the maintenance is simple, and the construction period is short.

[0010] Optionally, the first horizontal direction is parallel to the width direction of the box, and the second horizontal direction is parallel to the length direction of the box.

[0011] Optionally, the containerized prefabricated power module integrated equipment also includes two air conditioners, which are arranged at both ends of the maintenance passage along the second horizontal direction.

[0012] Optionally, the containerized prefabricated power module integrated equipment also includes an air conditioning unit, which is installed outside the container and located at one end of the container near the air conditioner or on the top of the container.

[0013] Optionally, the power equipment includes low-voltage power distribution equipment and an uninterruptible power supply (UPS). The low-voltage power distribution equipment is used to connect to the mains power supply, and the UPS is connected to the low-voltage power distribution equipment via the cable. The UPS is also used to connect to external terminal equipment via a cable.

[0014] Optionally, the low-voltage power distribution equipment arranged on the same side of the maintenance passage along the first horizontal direction is connected together by busbars; and / or

[0015] The low-voltage power distribution equipment located on different sides of the maintenance passage along the first horizontal direction is connected together by a dense busbar or the cable.

[0016] Optionally, the containerized prefabricated power module integration equipment also includes a monitoring system installed inside the container. The monitoring system includes a temperature and humidity sensor, a water leakage sensor, and an environmental monitoring host. The temperature and humidity sensor and the water leakage sensor are both connected to the environmental monitoring host. The environmental monitoring host is used to remotely transmit the sensing signals of the temperature and humidity sensor and the water leakage sensor to the operation and maintenance terminal through a communication interface.

[0017] Optionally, the containerized prefabricated power module integrated equipment also includes a fire protection system installed inside the container. The fire protection system includes an alarm host and a gas fire extinguishing cabinet. The alarm host is connected to the monitoring system and the gas fire extinguishing cabinet respectively. The alarm host is configured to control the gas fire extinguishing cabinet to start and send an alarm signal to the operation and maintenance terminal according to the sensing signal of the monitoring system.

[0018] Optionally, the enclosure includes a security monitoring system, which includes cameras installed inside and / or outside the enclosure. The cameras are connected to the environmental monitoring host, which is configured to remotely transmit the monitoring information collected by the cameras to the operation and maintenance terminal.

[0019] Optionally, the enclosure is equipped with a fire door, and the security monitoring system further includes an access control device for the fire door. Attached Figure Description

[0020] The following drawings, which illustrate embodiments of the present invention, are incorporated herein as part of the present invention for understanding the invention. The drawings show embodiments of the present invention and their descriptions, serving to explain the principles of the present invention. In the drawings,

[0021] Figure 1 This is a top-view schematic diagram of the internal distribution of a containerized prefabricated power module integration equipment according to a preferred embodiment of the present invention.

[0022] Figure 2 This is a schematic diagram showing the distribution of the first strong elevator frame inside the box.

[0023] Figure 3 For along Figure 2 A schematic diagram of the cross-section intercepted by the centerline AA; and

[0024] Figure 4 This is a schematic diagram showing the distribution of the second-strongest elevator frame inside the box.

[0025] Explanation of reference numerals in the attached figures

[0026] 100: Enclosure; 101: Maintenance Access.

[0027] 102: Fire door; 103: Antistatic floor.

[0028] 104: Floor support legs 105: Base frame

[0029] 106: Top shelf 107: Corner post

[0030] 108: Top corner piece; 109: Bottom corner piece

[0031] 110: Side wall panel; 111: End wall panel

[0032] 120: Power supply and distribution system; 121: Electrical equipment

[0033] 122: Low-voltage power distribution equipment 123: Uninterruptible power supply

[0034] 124: Incoming line cabinet; 125: Bus tie cabinet

[0035] 126: UPS input switch cabinet; 127: Mains power feeder cabinet

[0036] 128: UPS cabinet; 129: Reactive power compensation cabinet

[0037] 130: UPS output switchgear; 131: Reactive power compensation busbar.

[0038] 132: UPS manual bypass busbar 133: Busbar

[0039] 134: Low-voltage cable tray; 135: Lighting cable tray

[0040] 112: Equipment base support legs; 140: Air conditioner.

[0041] 141: Fresh air system 142: Air conditioner outdoor unit

[0042] 143: Exhaust duct; 144: Refrigerant duct

[0043] 145: Air Conditioning Distribution Cabinet; 150: First Strong Elevator Rack

[0044] 160: Second strongest elevator frame; 170: Low-voltage electrical cabinet.

[0045] 180: Gas fire extinguishing cabinet D3: Height direction of the cabinet

[0046] D1: First horizontal direction; D2: Second horizontal direction Detailed Implementation

[0047] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that embodiments of the present invention may be practiced without one or more of these details. In other instances, certain technical features well-known in the art have not been described in order to avoid confusion with embodiments of the present invention.

[0048] In this document, ordinal numbers such as "first" and "second" used in this invention are merely identifiers and do not have any other meaning, such as a specific order. Moreover, for example, the term "first component" does not imply the existence of "second component," and the term "second component" does not imply the existence of "first component."

[0049] In this article, terms such as "up," "down," "front," "back," "left," and "right" are used only to indicate the relative positional relationship between related parts, rather than to define the absolute position of these related parts.

[0050] In this document, terms such as “equal” and “same” are not strict mathematical and / or geometric limitations, but also include errors that are understandable to those skilled in the art and permissible in manufacturing or use.

[0051] Unless otherwise stated, the numerical ranges in this document include not only the entire range within its two endpoints, but also the subranges contained therein.

[0052] Figures 1 to 4 This invention discloses a containerized prefabricated power module integration equipment, comprising a container 100, a power supply and distribution system 120, a first reinforced elevator frame 150, and a second reinforced elevator frame 160. The power supply and distribution system 120 includes at least two power devices 121, which are disposed within the container 100. These at least two power devices 121 are spaced apart along a first horizontal direction D1 and arranged on both sides of the container 100, thereby forming a maintenance channel 101 within the container 100. The maintenance channel 101 extends along a second horizontal direction D2 perpendicular to the first horizontal direction D1. The first reinforced elevator frame 150 is disposed within the container 100 and arranged along the height direction D3 at the upper part of the container 100, for laying cables connecting the power devices 121. The second reinforced elevator frame 160 is disposed within the container 100 and arranged along the height direction D3 at the lower part of the container 100, for laying cables for outputting power.

[0053] According to the containerized prefabricated power module integrated equipment of this utility model, each power device 121 of the power supply and distribution system 120 is respectively arranged in installation positions spaced apart along the first horizontal direction D1 within the container 100, which can improve the space utilization rate of the power supply and distribution system 120 within the container 100. Furthermore, the maintenance channel 101 formed within the container 100 by the arrangement of the installation positions facilitates opening and maintaining each power device 121, and the setting of the maintenance channel 101 also facilitates heat dissipation of the power supply and distribution system 120. In addition, the power devices 121... The cables between the components are laid through the first strong elevator frame 150 located at the top inside the container 100, while the cables for outputting power from the power equipment 121 are laid through the second strong elevator frame 160. This reasonable arrangement further improves the space utilization rate of the power supply and distribution system 120 within the container 100, reduces the footprint of the container prefabricated power module integrated equipment, and allows the container prefabricated power module integrated equipment to be pre-installed and then transported to the target location where power is output from the bottom of the container 100. This results in high deployment efficiency, simple maintenance, and a short construction period.

[0054] Optionally, refer to Figure 1 The first horizontal direction D1 is parallel to the width direction of the enclosure 100, and the second horizontal direction D2 is parallel to the length direction of the enclosure 100, so that at least two electrical devices 121 included in the power supply and distribution system 120 are respectively arranged on both sides of the enclosure 100, which has a high space utilization rate, and the maintenance channel 101 formed extends along the length direction of the enclosure 100, which is conducive to the maintenance and heat dissipation of the power supply and distribution system 120.

[0055] To more clearly illustrate the installation of the power supply and distribution system 120 within the enclosure 100, the following description is in conjunction with the appendix. Figures 2 to 4 First, a brief description of the housing 100 will be given (some structural diagrams of the housing 100 are not shown).

[0056] The enclosure 100 includes a base frame 105, a top frame 106, corner posts 107, side wall panels 110, and end wall panels 111. The base frame 105 includes bottom side beams, bottom end beams, and bottom corner pieces 109. The bottom side beams extend along the length direction of the enclosure 100 (i.e., the second horizontal direction D2) and connect to the bottom corner pieces 109. The bottom end beams extend along the width direction of the enclosure 100 (i.e., the first horizontal direction D1) and connect to the bottom corner pieces 109. The top frame 106 includes top side beams, top top beams, and top corner pieces 108. The top side beams extend along the length direction of the enclosure 100 and connect to the top corner pieces 108. The top top beams extend along the width direction of the enclosure 100 and connect to the top corner pieces 108. The corner posts 107 extend along the height direction D3 of the enclosure 100, with the top of the corner post 107 connected to the top corner pieces 108 and the bottom of the corner post 107 connected to the bottom corner pieces 109, thus forming the main frame structure of the enclosure 100. End wall panels 111 are arranged at both ends of the enclosure 100 along its length. The end wall panels 111 are connected to the corner posts 107, the top beam, and the bottom beam. The end wall panels 111 are also equipped with doors to facilitate personnel entering the enclosure 100 for equipment maintenance. Side wall panels 110 are arranged on both sides of the enclosure 100 along its width. The side wall panels 110 are connected to the top side beam, the bottom side beam, and the corner posts 107. Thus, the end wall panels 111, the side wall panels 110, and the main frame structure of the enclosure 100 form a closed structure of the enclosure 100.

[0057] Optionally, combined Figure 1 As shown, fire doors 102 can also be installed on the side wall panel 110, facilitating the movement of equipment into the enclosure 100 and the maintenance of the equipment inside the enclosure 100, improving work efficiency and facilitating personnel escape. Figure 1 It is known that the side wall panel 110 is provided with two fire doors 102. The two fire doors 102 are arranged on the same side of the box 100 along the width direction of the box 100, and the two fire doors 102 are spaced apart along the length direction of the box 100, so as to facilitate the staff to enter the maintenance passage 101 inside the box 100.

[0058] Optionally, the containerized prefabricated power module integrated equipment also includes two air conditioners 140, arranged along the second horizontal direction D2 at both ends of the maintenance channel 101. This allows the air conditioners 140 to directly cool and dissipate heat from the maintenance channel 101, resulting in good heat dissipation and ensuring the stable operation of the power equipment 121. The air conditioners 140 can be precision air conditioners, which can accurately control the temperature inside the container 100, providing good heat dissipation and low energy consumption.

[0059] Optionally, refer to Figure 3 and Figure 4The container 100 also includes an antistatic floor 103 and floor legs 104. The antistatic floor 103 is arranged above the base frame 105 along the height direction D3 of the container 100 to support the electrical equipment 121 of the power supply and distribution system 120. The antistatic floor 103 is connected to the base frame 105 through the floor legs 104, creating an overhead space below the antistatic floor 103. Furthermore, the refrigerant pipe 144 of the air conditioner 140 extends to the overhead space through the antistatic floor 103, facilitating the connection of the air conditioner 140 after the prefabricated containerized power module integrated equipment according to this invention arrives on site, resulting in high installation efficiency. The container 100 also includes equipment base legs 112, which are positioned above the antistatic floor 103 for installing various electrical equipment 121 of the power supply and distribution system 120 or other equipment of the prefabricated containerized power module integrated equipment (such as the air conditioner 140).

[0060] Optionally, the containerized prefabricated power module integrated equipment also includes an air conditioner outdoor unit 142. The air conditioner outdoor unit 142 is installed on the outside of the container 100, and depending on the site space conditions, it can be located at the end of the container 100 closest to the air conditioner 140, facilitating connection between the outdoor unit 142 and the air conditioner 140. The air conditioner outdoor unit 142 can also be installed on the top of the container 100 or on the ground outside the container 100, offering flexible placement and convenient installation. Optionally, refer to... Figure 1 The containerized prefabricated power module integrated equipment may also include an air conditioning distribution cabinet 145, which is located on one side of the maintenance passage 101 and is used to realize the power supply and distribution control of the air conditioner 140.

[0061] Optionally, refer to Figure 2 The containerized prefabricated power module integrated equipment also includes an exhaust duct 143 and a fresh air unit 141. The exhaust duct 143 and the fresh air unit 141 are arranged along the length of the container 100 at both ends of the maintenance passage 101. The exhaust duct 143 is connected to the top frame 106 of the container 100, and the fresh air unit 141 is installed on the side wall panel 110 on one side of the container 100. The sealed environment inside the container 100 achieves air circulation inside and outside the container 100 through the arrangement of the fresh air unit 141 and the exhaust duct 143.

[0062] Reference Figure 1 The power equipment 121 is installed inside the enclosure 100, against the inner side walls of both sides parallel to the second horizontal direction D2. Specifically, the power equipment 121 includes low-voltage power distribution equipment 122 and uninterruptible power supply 123. The low-voltage power distribution equipment 122 includes an incoming line cabinet 124, a reactive power compensation cabinet 129, a mains feeder cabinet 127, and a bus tie cabinet 125. The incoming line cabinet 124, bus tie cabinet 125, and mains feeder cabinet 127 are installed on one side of the enclosure 100, and the reactive power compensation cabinet 129 is installed on the other side of the enclosure 100. Optionally, in conjunction with... Figure 2 As shown, low-voltage power distribution equipment 122 (such as incoming line cabinet 124, bus tie cabinet 125, and mains feeder cabinet 127, etc.) arranged along the second horizontal direction D2 on the same side of the maintenance passage 101 are connected together by busbars. Low-voltage power distribution equipment 122 arranged along the first horizontal direction D1 on both sides of the maintenance passage 101 are connected together by busbars 133 or cables.

[0063] Optionally, the power supply and distribution system 120 can minimize grid losses and improve the power factor and power quality of the power supply and distribution system 120 by setting up a reactive power compensation cabinet 129, which is connected to the mains feeder cabinet 127 through a reactive power compensation bus 131.

[0064] The uninterruptible power supply 123 (UPS) includes a UPS input switch cabinet 126, a UPS cabinet 128, and a UPS output switch cabinet 130. The UPS input switch cabinet 126 is located on one side of the enclosure 100 where the incoming line cabinet 124 is located, while the UPS cabinet 128 and the UPS output switch cabinet 130 are located on the other side of the enclosure 100. Therefore, the low-voltage power distribution equipment 122 and the uninterruptible power supply 123 are located on both sides of the enclosure 100, thus forming a maintenance passage 101.

[0065] Optionally, the UPS input switch cabinet 126, UPS cabinet 128, and UPS output switch cabinet 130 are connected by cables. The UPS input switch cabinet 126 is connected to the mains power or backup power supply through the low-voltage power distribution equipment 122, and the UPS output switch cabinet 130 is connected to the terminal equipment, thereby providing a stable power supply to the terminal equipment. (Refer to...) Figure 2 The UPS input switch cabinet 126 and the UPS output switch cabinet 130 are connected via the UPS manual bypass busbar 132.

[0066] Optionally, the UPS cabinet 128 is connected to the UPS input switch cabinet 126 and the UPS output switch cabinet 130 via cables. The cables are laid along the first strong elevator frame 150 to the UPS input switch cabinet 126 and the UPS output switch cabinet 130 to realize electrical functions.

[0067] Optionally, combined Figure 3 As shown, the cables between the power equipment 121 in the power supply and distribution system 120 (such as reactive power compensation busbar 131, UPS manual bypass busbar 132, and busbar 133, etc.) are in... Figure 2 (Indicated by pink lines) It can be laid through the first strong elevator frame 150, with a solid connection, stable performance, and easy maintenance and installation.

[0068] In other words, refer to Figure 1The electrical equipment 121 is installed on both sides of the maintenance passage 101 inside the enclosure 100. On one side of the maintenance passage 101 (specifically...) Figure 1 On the lower side), the mains feeder cabinet 127, UPS input switch cabinet 126, bus tie cabinet 125, and incoming line cabinet 124 are arranged in sequence. On one side of maintenance passage 101 (specifically...) Figure 1 On the upper side, UPS cabinet 128, reactive power compensation cabinet 129, UPS output switch cabinet 130 and air conditioning distribution cabinet 145 are arranged in sequence, which is reasonable and facilitates wiring and connection.

[0069] Reference Figure 2 The power supply and distribution system 120 also includes a low-voltage cable tray 134 and a lighting cable tray 135. Combined with the first strong elevator frame 150, cables can be extended and laid to the corresponding electrical equipment 121, thereby accommodating and securing the connecting cables between the electrical equipment 121. Furthermore, the containerized prefabricated power module integration equipment of this invention allows for pre-connection of the electrical equipment 121 within the power supply and distribution system 120 within the factory, further improving the on-site installation efficiency of the containerized prefabricated power module integration equipment.

[0070] Optionally, refer to Figure 3 The incoming lines from the mains power supply to the incoming line cabinet 124 and the outgoing lines from the UPS output switch cabinet 130 to the terminal equipment are all laid under the anti-static floor 103. They can be laid through the second strong elevator frame 160 to achieve the separation of on-site wiring and prefabricated wiring, which can further improve the on-site installation efficiency of container prefabricated power module integrated equipment.

[0071] It is understood that the arrangement of the power supply and distribution system 120 inside the container is only one specific implementation of the containerized prefabricated power module integrated equipment of this utility model, and other specific implementations of the power supply and distribution system 120 arranged on both sides of the maintenance passage 101 inside the container 100 should be within the protection scope of this utility model.

[0072] Optionally, the containerized prefabricated power module integrated equipment also includes a monitoring system installed inside the container 100. The monitoring system includes temperature and humidity sensors, a leakage sensor, and a low-voltage electrical cabinet 170. The low-voltage electrical cabinet 170 is located at one end of the maintenance passage 101 and is equipped with an environmental monitoring host. The temperature and humidity sensors and the leakage sensor are both connected to the environmental monitoring host, which remotely transmits the sensing signals from the temperature and humidity sensors and the leakage sensor to the maintenance terminal via a communication interface. Through the monitoring system, the temperature, humidity, and leakage conditions inside the container 100 can be monitored remotely at the maintenance terminal, thereby further improving the safety of the containerized prefabricated power module integrated equipment.

[0073] Optionally, the containerized prefabricated power module integrated equipment also includes a fire protection system installed within the container 100. The fire protection system includes an alarm control panel and a gas extinguishing cabinet 180. The alarm control panel is connected to both the monitoring system and the gas extinguishing cabinet 180. The monitoring system also includes smoke detectors and heat detectors installed within the container 100. The smoke detectors detect smoke within the container 100 and are electrically connected to the alarm control panel, while the heat detectors detect the temperature within the container 100 and are also electrically connected to the alarm control panel. The alarm control panel is configured to activate the gas extinguishing cabinet 180 and send an alarm signal to the maintenance terminal based on the sensing signals from the monitoring system (e.g., the detection signals from the smoke detectors and heat detectors). Through the fire protection system, combined with the monitoring system, timely early warnings of fires within the container 100 can be provided. Remote fire alarms and automatic fire suppression can be achieved at the maintenance terminal, reducing losses. Optionally, the gas fire extinguishing cabinet 180 is arranged along the first horizontal direction D1 on one side of the maintenance passage 101 near the air conditioning distribution cabinet 145 and along the second horizontal direction D2 on one side of the air conditioning distribution cabinet 145.

[0074] Optionally, the containerized prefabricated power module integrated equipment also includes a security monitoring system. This system includes cameras installed both inside and outside the container 100. The cameras are connected to an environmental monitoring host, which is configured to remotely transmit the monitoring information collected by the cameras to the maintenance terminal. Through this security monitoring system, combined with the monitoring system, the containerized prefabricated power module integrated equipment can be remotely monitored at the maintenance terminal, improving security.

[0075] Optionally, the security monitoring system also includes an access control device for the fire door 102, which can prevent non-staff members from entering the container 100, and can also control the opening and closing of the fire door 102 from the operation and maintenance end, thereby facilitating remote control of personnel entering and exiting the containerized prefabricated power module integrated equipment.

[0076] Optionally, the side wall panels 110 and end wall panels 111 of the container 100 can be configured as firewalls, and the bottom frame 105 and top frame 106 of the container 100 can be configured with fireproof and waterproof materials, thereby improving the fireproof and waterproof performance and safety of the containerized prefabricated power module integrated equipment.

[0077] Unless otherwise defined, the technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used herein is for descriptive purposes only and is not intended to limit the scope of the invention. Terms such as “set” appearing herein can refer to either a component being directly attached to another component or a component being attached to another component via an intermediary. A feature described in one embodiment may be applied, alone or in combination with other features, to another embodiment, unless that feature is not applicable in that other embodiment or is otherwise stated.

[0078] This utility model has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit this utility model to the described embodiments. Those skilled in the art will understand that many more variations and modifications can be made based on the teachings of this utility model, and all such variations and modifications fall within the scope of protection claimed by this utility model.

Claims

1. A containerized prefabricated power module integration equipment, characterized in that, The containerized prefabricated power module integration equipment includes: Box; A power supply and distribution system, the power supply and distribution system including at least two power devices, the at least two power devices being installed in the enclosure, the at least two power devices being spaced apart along a first horizontal direction and arranged on both sides of the enclosure, thereby forming a maintenance channel in the enclosure, the maintenance channel extending along a second horizontal direction perpendicular to the first horizontal direction; A first strong elevator frame, disposed within the enclosure and arranged along the height of the enclosure on its upper part, is used to lay cables connecting the electrical equipment; and The second strong elevator frame is installed inside the box and laid along the height direction at the lower part of the box for laying power output cables.

2. The containerized prefabricated power module integration equipment according to claim 1, characterized in that, The first horizontal direction is parallel to the width direction of the box, and the second horizontal direction is parallel to the length direction of the box.

3. The containerized prefabricated power module integration equipment according to claim 2, characterized in that, The containerized prefabricated power module integrated equipment also includes two air conditioners, which are arranged at both ends of the maintenance passage along the second horizontal direction.

4. The containerized prefabricated power module integration equipment according to claim 3, characterized in that, The containerized prefabricated power module integrated equipment also includes an air conditioning unit, which is installed outside the container and located at one end of the container near the air conditioner or on the top of the container.

5. The containerized prefabricated power module integration equipment according to claim 1, characterized in that, The power equipment includes low-voltage power distribution equipment and uninterruptible power supply (UPS). The low-voltage power distribution equipment is used to connect to the mains power, and the UPS is connected to the low-voltage power distribution equipment via a cable. The UPS is also used to connect to external terminal equipment via the cable.

6. The containerized prefabricated power module integration equipment according to claim 5, characterized in that, The low-voltage power distribution equipment arranged along the first horizontal direction on the same side of the maintenance passage is connected together by busbars; and / or The low-voltage power distribution equipment located on different sides of the maintenance passage along the first horizontal direction is connected together by a dense busbar or the cable.

7. The containerized prefabricated power module integration equipment according to claim 1, characterized in that, The containerized prefabricated power module integrated equipment also includes a monitoring system installed inside the container. The monitoring system includes a temperature and humidity sensor, a water leakage sensor, and an environmental monitoring host. The temperature and humidity sensor and the water leakage sensor are both connected to the environmental monitoring host. The environmental monitoring host is used to remotely transmit the sensing signals of the temperature and humidity sensor and the water leakage sensor to the operation and maintenance terminal through a communication interface.

8. The containerized prefabricated power module integration equipment according to claim 7, characterized in that, The containerized prefabricated power module integrated equipment also includes a fire protection system installed inside the container. The fire protection system includes an alarm host and a gas fire extinguishing cabinet. The alarm host is connected to the monitoring system and the gas fire extinguishing cabinet respectively. The alarm host is configured to control the gas fire extinguishing cabinet to start and send an alarm signal to the operation and maintenance terminal according to the sensing signal of the monitoring system.

9. The containerized prefabricated power module integration equipment according to claim 7, characterized in that, The enclosure includes a security monitoring system, which includes cameras installed inside and / or outside the enclosure. The cameras are connected to the environmental monitoring host, which is configured to remotely transmit the monitoring information collected by the cameras to the maintenance terminal.

10. The containerized prefabricated power module integration equipment according to claim 9, characterized in that, The enclosure is equipped with a fire door, and the security monitoring system also includes an access control device for the fire door.