Ocean platform debugging process management system

By integrating early warning and alarm modules into the marine platform commissioning process management system, intelligent early warning and anomaly handling during the commissioning process are achieved, solving the problem that existing systems cannot identify anomalies in a timely manner and improving safety and efficiency.

CN121747296APending Publication Date: 2026-03-27JIANGSU SHENGQIAO IND TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-31
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing marine platform commissioning process management system lacks an intelligent early warning mechanism, which fails to identify and warn of abnormal critical equipment parameters, commissioning steps exceeding time limits, or data entry errors in a timely manner, leading to potential safety hazards.

Method used

A marine platform commissioning process management system was designed, which integrates an early warning module, an alarm module, a power supply module, and an information acquisition module. The information acquisition module collects data in real time and compares it with the control module. The early warning module and the alarm module work together to issue audible and visual warnings, and the control module displays abnormal information.

Benefits of technology

It enables intelligent early warning of the commissioning process of marine platforms, improves the efficiency of handling abnormal situations, reduces the probability of safety hazards, and allows operators to quickly identify and handle critical issues.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an ocean platform debugging process management system, and particularly relates to the technical field of ocean engineering equipment operation and maintenance management, the ocean platform debugging process management system comprises a control module, an early warning module, an alarm module, a power supply module and an information acquisition module, and the early warning module and the alarm module are installed in the top area of the control module; the power supply module is also arranged at the top of the control module close to the edge and is electrically connected with an internal circuit of the control module; an intelligent early warning system is constructed through cooperation of the early warning module and the information acquisition module, the defect of no intelligent early warning mechanism is overcome, the information acquisition module acquires key equipment parameters in real time, the key equipment parameters are stably transmitted to the control module through a shielding cable, data are compared with a preset standard, parameter abnormity is identified, and then the early warning module is triggered to issue an instruction. The alarm module synchronously starts acousto-optic warning, the control module displays abnormal information back to the operation panel, an operator can quickly know the situation, and potential safety hazards are avoided.
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Description

Technical Field

[0001] This invention relates to the field of marine engineering equipment operation and maintenance management technology, and more specifically, to a marine platform commissioning process management system. Background Technology

[0002] Commissioning of marine platforms is a core part of ensuring the safe operation of platforms at sea. The quality of commissioning directly determines the stability of the platform in service. At present, the industry mostly uses traditional ledger records or basic information systems for commissioning management, which can realize the issuance of commissioning tasks, manual data entry and result archiving, and improve the standardization of the process to a certain extent.

[0003] The existing publication number, CN118134174A, discloses a full lifecycle management system for artificial lift products on offshore platforms, belonging to the field of offshore oil and gas drilling and production technology. It includes a command center computer, an electrical room on the offshore platform, a platform central control computer, and an operator's workstation. The electrical room is equipped with a first inspection track, a first camera, and a frequency converter. The operator's workstation is equipped with a second inspection track and a second camera, both connected to the command center computer. This system can efficiently and accurately automatically select artificial lift products based on the size of the electrical room and the specific customized needs of each platform. It also has functions for personnel task allocation, performance evaluation, and full lifecycle management of products. The inventors discovered the following problems with the existing technology during the development of this invention: The existing marine platform commissioning process management system lacks an intelligent early warning mechanism. During the commissioning process, when critical equipment parameters fluctuate abnormally, commissioning steps are not completed within the time limit, or there are obvious errors in data entry, the system cannot actively identify and issue warning information in a timely manner. This makes it difficult for management personnel to intervene and deal with potential risks in a timely manner, and may even lead to major safety hazards. Therefore, a marine platform commissioning process management system is proposed to address the above problems. Summary of the Invention

[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides a marine platform commissioning process management system to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a marine platform commissioning process management system, comprising a control module, an early warning module, an alarm module, a power supply module, and an information acquisition module. The early warning module and the alarm module are installed in the top area of ​​the control module; the power supply module is also located on the top of the control module near the edge and is electrically connected to the internal circuit of the control module; the information acquisition module establishes a signal communication link with the control module to collect equipment operation and environmental data related to the marine platform commissioning process.

[0006] By adopting the above technical solution, the early warning module and alarm module are placed on the top of the control module, the power supply module is located at the top edge, and the information acquisition module is wired to the control module in a layered layout. Each component is arranged independently and precisely connected. The structure is compact and does not take up extra space, ensuring that the power supply and data link do not interfere with each other, and is suitable for the narrow installation scenario of marine platforms.

[0007] Preferably, the early warning module includes a mounting bracket installed on top of the control module; multiple indicator lights are provided on one side of the mounting bracket to display different early warning levels, and the indicator lights are linked with the control module.

[0008] By adopting the above technical solution, the early warning module integrates a frame-type mounting bracket, and multiple sets of indicator lights are arranged at intervals on one side of the mounting bracket. The indicator lights are wired to the control module, and different indicator lights can correspond to different early warning levels. The lights intuitively convey the degree of abnormality, and can be quickly identified without complicated operations.

[0009] Preferably, the alarm module includes an alarm light and a loudspeaker; both the alarm light and the loudspeaker are communicatively connected to the warning module and can simultaneously emit audible and visual warning information.

[0010] By adopting the above technical solution, the alarm module integrates both alarm light and loudspeaker components, which can simultaneously trigger dual sound and light warnings, solving the problem of easy omission of single warnings, and enabling operators in different positions to detect warnings in a timely manner, reducing the probability of potential hazards.

[0011] Preferably, the power module includes a power base mounted on top of the control module; a power switch is mounted on top of the power base; and an anti-accidental touch protective cover is hinged to the top of the power base to prevent accidental power on / off.

[0012] By adopting the above technical solution, the protection against accidental touch is achieved through physical shielding of the anti-accidental touch protective cover, avoiding power interruption caused by accidental contact, adapting to multi-person collaborative operation scenarios on marine platforms, and avoiding data loss due to accidental power outages.

[0013] Preferably, an operating console is provided on one side of the control module; an operating panel is installed on the surface of the operating console, and the operating panel is connected to the control module via a shielded cable for configuring debugging parameters and inputting system commands.

[0014] By adopting the above technical solution, an operating console is set on one side of the control module, and an operating panel is seamlessly embedded on the surface of the operating console. The two communicate bidirectionally with the control module through shielded cables. The shielded cables can isolate electromagnetic interference from the marine platform and ensure the accuracy and stability of command input and data feedback.

[0015] Preferably, the information acquisition module includes a temperature sensor and a humidity sensor installed on the top of the control panel; the temperature sensor and humidity sensor are used to collect environmental parameters of the marine platform commissioning area.

[0016] By adopting the above technical solution, the information acquisition module integrates two sensing components: a temperature sensor and a humidity sensor. The two are compactly arranged on the surface of the operating table and wiredly connected to the main body of the information acquisition module. This allows for accurate and synchronous acquisition of temperature and humidity parameters in the debugging area, providing a reliable environmental basis for the control module to analyze the equipment's operating status and optimize the debugging process.

[0017] Preferably, the operation panel is used to display overall data such as information collected by the temperature sensor and humidity sensor; the surface of the operation panel is covered with an anti-static film.

[0018] By adopting the above technical solution, the surface of the operation panel is fully covered with a transparent anti-static film. The film is tightly attached to the touch surface, which does not affect touch operation and data display. It can quickly conduct and release the static electricity generated by the operator's contact, and prevent static electricity from entering the internal circuit and interfering with command input and data transmission.

[0019] The technical effects and advantages of this invention are as follows: Compared with existing technologies, this marine platform commissioning process management system constructs an intelligent early warning system through the collaborative construction of an early warning module and an information acquisition module, which solves the shortcomings of the lack of an intelligent early warning mechanism. The information acquisition module collects key equipment parameters in real time and transmits them stably to the control module via shielded cables. The data is compared with preset standards to identify abnormal parameters and other problems. Subsequently, the early warning module is triggered to issue a command, and the alarm module simultaneously activates audible and visual warnings. The control module displays the abnormal information back to the operation panel, so that operators can quickly know the situation and avoid safety hazards.

[0020] Compared with existing technologies, this marine platform commissioning process management system further enhances the efficiency of handling abnormal situations through a dual response mechanism of early warning and alarm modules. When the control module identifies an abnormal problem, in addition to issuing instructions through the early warning module, it will also simultaneously activate the alarm function of the alarm module. The alarm lights and loudspeakers can not only emit eye-catching sound and light warnings to remind on-site operators to pay attention in time, but the sound frequency and light flashing mode can also be differentiated according to different levels of abnormality, so that operators can intuitively judge the urgency of the abnormality through warning signals and thus prioritize the handling of more critical issues. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the operation process of the present invention.

[0022] Figure 2 This is a schematic diagram of the control module of the present invention.

[0023] Figure 3 This is a schematic diagram of the early warning module of the present invention.

[0024] Figure 4 This is a schematic diagram of the alarm light of the present invention.

[0025] The attached diagram is labeled as follows: 1. Control module; 11. Early warning module; 12. Alarm module; 13. Power supply module; 14. Information acquisition module; 2. Mounting bracket; 21. Indicator light; 3. Alarm light; 31. Sounder; 4. Power supply base; 41. Power switch; 42. Anti-accidental touch protective cover; 5. Control panel; 51. Control panel; 52. Temperature sensor; 53. Humidity sensor. Detailed Implementation

[0026] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example

[0027] As attached Figures 1 to 4 The marine platform commissioning process management system shown includes a control module 1, an early warning module 11, an alarm module 12, a power supply module 13, and an information acquisition module 14. The early warning module 11 and the alarm module 12 are installed in the top area of ​​the control module 1. The power supply module 13 is also located on the top of the control module 1 near the edge and is electrically connected to the internal circuit of the control module 1. The information acquisition module 14 establishes a signal communication link with the control module 1 to collect equipment operation and environmental data related to the marine platform commissioning process.

[0028] During system operation, the early warning module 11 and alarm module 12 transmit signals quickly through a top-mounted parallel layout. The power supply module 13 is stably connected to the circuit through edge-mounted terminals to provide continuous power to the entire system. The information acquisition module 14 accurately captures various debugging data and transmits it to the control module 1 for processing via a wired link for bidirectional data exchange. It also responds to start and stop commands, improving the timeliness of data acquisition and the stability of power supply, and ensuring continuous operation of the system. Example

[0029] Based on Example 1, the solution in Example 1 will be further described in detail below with reference to the specific working method, such as... Figures 1 to 4 As shown below, see details: As a preferred implementation, the control module 1 analyzes the data and outputs a corresponding level of warning signal. It links multiple indicator lights 21 through internal circuits. Different indicator lights 21 light up the corresponding color light to reflect the warning level. There is no need for manual verification of the abnormality level one by one. Even in the scenario of multiple devices being debugged in parallel, the operator can quickly locate the severity of the abnormality, shorten the identification time, and improve the efficiency of emergency response.

[0030] In a preferred implementation, after the warning module 11 issues a warning command, the signal is simultaneously transmitted to the alarm light 3 and the loudspeaker 31. The alarm light 3 flashes a high-brightness light rapidly, and the loudspeaker 31 simultaneously plays a preset warning voice, forming a dual sound and light alert. Compared to a single warning method, this effectively overcomes the interference of the noisy environment and complex lighting on the marine platform, ensuring that operators at a distance or in busy situations can promptly detect the warning and reduce the risk of missed detection.

[0031] As a preferred embodiment, during operation, the anti-accidental touch protective cover 42 needs to be flipped over to expose the power switch 41, and the power switch 41 is pressed to turn the circuit on and off. When not in use, the anti-accidental touch protective cover 42 naturally hangs down to cover the power switch 41. The flipping structure forms physical protection, which can effectively prevent unauthorized personnel or accidental touch of the power switch 41 during operation, and avoid system interruption caused by accidental power failure or power on.

[0032] In a preferred embodiment, the operator performs touch operation on the operation panel 51 on the surface of the operation console 5, and the input debugging parameters and control commands are stably transmitted to the control module 1. After receiving and processing the commands, the control module 1 synchronously displays the system operating status and data feedback results back to the operation panel 51.

[0033] In a preferred embodiment, temperature sensor 52 and humidity sensor 53 capture temperature and humidity data of the test area in real time. After preliminary processing by their own modules, the data is transmitted to information acquisition module 14 via wires and then synchronized to control module 1 for analysis and judgment. The operation panel 51 can display changes in environmental parameters in a timely manner, avoiding the impact of environmental fluctuations on the test parameters.

[0034] In a preferred embodiment, the static electricity generated when the operator touches the operation panel 51 is quickly conducted and released through the surface anti-static film, preventing static electricity from entering the internal circuit. The transparent operation panel 51 does not affect data viewing and touch operation, and can effectively prevent static electricity from interfering with the accuracy of command input and avoid accidental touch operation.

[0035] In this embodiment, the temperature sensor 52 and humidity sensor 53 are commercially available devices known to those skilled in the art. They can be customized or selected according to actual needs. Here, we are only using them without making any structural or functional improvements, and we will not go into detail here.

[0036] The working process of this invention is as follows: When the system starts, first lift the anti-accidental contact protective cover 42 hinged to the top of the power base 4, press the power switch 41, and connect the power module 13 installed on the top edge of the control module 1 to power the entire system. At this time, the information acquisition module 14 starts synchronously, and the temperature sensor 52 and humidity sensor 53 contained therein begin to collect the environmental temperature and humidity data of the marine platform commissioning area. At the same time, it connects to the commissioning equipment through the signal link to collect the equipment operating parameters and process progress data. All data is transmitted to the control module 1 in real time. Multiple indicator lights 21 on one side of the mounting bracket 2 on the early warning module 11 light up the initial working light to indicate that the system is operating normally.

[0037] After the control module 1 analyzes the received data, if an anomaly is detected, it triggers the top warning module 11. The warning module 11 immediately sends a command to the alarm module 12, causing the alarm light 3 and the loudspeaker 31 in the alarm module 12 to work synchronously, emitting an audible and visual warning. The indicator light 21 changes color according to the severity of the anomaly, providing tiered warning prompts. Operators can view abnormal data and overall data such as environmental information collected by the temperature sensor 52 and humidity sensor 53 through the operation panel 51 on the control panel 5. Adjustment commands are input through the operation panel 51 to handle anomalies. The anti-static film on the surface of the operation panel 51 effectively prevents static electricity from interfering with operation commands and data transmission. This is the working principle of this marine platform commissioning process management system.

[0038] The marine platform commissioning process management system constructs an intelligent early warning system through the collaborative efforts of the early warning module and the information acquisition module, which solves the shortcomings of the lack of an intelligent early warning mechanism. The information acquisition module 14 collects key equipment parameters in real time and transmits them stably to the control module 1 via shielded cables. The data is compared with preset standards to identify abnormal parameters and other problems. Subsequently, the early warning module is triggered to issue a command, and the alarm module 12 simultaneously activates the audible and visual warning. The control module 1 displays the abnormal information back to the operation panel 51, so that operators can quickly know the situation and avoid safety hazards.

[0039] The marine platform commissioning process management system further enhances the efficiency of handling abnormal situations through a dual response mechanism of early warning and alarm modules. When the control module 1 identifies an abnormal problem, in addition to issuing instructions through the early warning module 11, it will also simultaneously activate the alarm function of the alarm module 12. The alarm light 3 and the loudspeaker 31 can not only emit eye-catching sound and light warnings to remind on-site operators to pay attention in time, but the sound frequency and light flashing mode can also be differentiated according to different levels of abnormality, so that operators can intuitively judge the urgency of the abnormality through the warning signals and thus prioritize the handling of more critical issues.

Claims

1. A marine platform commissioning flow management system, comprising a control module (1), a pre-warning module (11), an alarm module (12), a power module (13) and an information acquisition module (14), characterized in that: The early warning module (11) and the alarm module (12) are installed on the top area of the control module (1); the power module (13) is also arranged on the top of the control module (1) near the edge, and is electrically connected with the internal circuit of the control module (1); the information acquisition module (14) establishes a signal communication link with the control module (1), and is used for collecting equipment operation and environment related data in the commissioning process of the offshore platform.

2. The offshore platform commissioning flow management system of claim 1, wherein: The early warning module (11) comprises a mounting bracket (2) installed on the top of the control module (1); a plurality of indicator lights (21) are arranged on one side of the mounting bracket (2) and used for displaying different early warning degrees, and the indicator lights (21) are linked with the control module (1).

3. A system for commissioning flow management of an offshore platform according to claim 2, wherein: The alarm module (12) comprises an alarm lamp (3) and a sounder (31); the alarm lamp (3) and the sounder (31) are in communication connection with the early warning module (11) and can synchronously send out sound and light warning information.

4. The offshore platform commissioning flow management system of claim 1, wherein: The power module (13) comprises a power base (4) installed on the top of the control module (1); a power switch (41) is installed on the top of the power base (4); and an anti-misoperation protective cover (42) is hingedly connected to the top of the power base (4) and used for preventing misoperation triggering of power on-off.

5. The offshore platform commissioning flow management system of claim 1, wherein: One side of the control module (1) is provided with an operation table (5); an operation panel (51) is installed on the surface of the operation table (5), and the operation panel (51) is in communication connection with the control module (1) through a shielded cable, so as to realize commissioning parameter configuration and system instruction input.

6. A system for commissioning and flow management of an offshore platform according to claim 5, wherein: The information acquisition module (14) comprises a temperature sensor (52) and a humidity sensor (53) arranged on the top of the operation table (5); the temperature sensor (52) and the humidity sensor (53) are used for collecting environmental parameters of the commissioning area of the offshore platform.

7. The offshore platform commissioning flow management system of claim 5, wherein: The operation panel (51) is used for displaying overall data such as collected information of the temperature sensor (52) and the humidity sensor (53); and an anti-static film is laid on the surface of the operation panel (51).

Citation Information

Patent Citations

  • Ocean platform artificial lifting product full life cycle management system

    CN118134174A