Marine emergency lifesaving integrated management system and method
By designing a comprehensive maritime emergency life-saving management system, the integration and unified control of information in multiple communication means and protocol formats is solved, and efficient and rapid rescue information processing and transmission are achieved.
Patent Information
- Application Number
- CN202311524546.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-15
- Publication Date
- 2025-05-16
AI Technical Summary
The existing maritime emergency life-saving communication system has not formed a unified reception, control and processing mechanism, resulting in unreliable information and unfast transmission, which affects the timely development of rescue work.
Design a comprehensive management system for emergency rescue at sea, including a duty platform, a comprehensive processing platform and an application platform, and receive rescue information through various communication means such as shortwave, ultra-shortwave, satellite, etc., and convert and distribute the format on the comprehensive processing platform to achieve unified control and processing of information.
It realizes the integrated and unified control of information in multiple communication means and protocol formats, improves the reliability and transmission speed of information, and improves the overall operation efficiency and rescue speed of maritime emergency life-saving systems.
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Figure CN120017664A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of software communication, and in particular to a comprehensive management system and method for marine emergency life-saving. Background Art
[0002] The Global Maritime Distress and Safety System (GMDSS) is a global communications network. It is a comprehensive communications system built by the International Maritime Organization to establish effective search and rescue procedures and further improve maritime communications.
[0003] At present, maritime emergency life-saving communications mainly include the following methods: ground communication systems use the coastal radio network to realize emergency distress alarms, and satellite communication systems use various satellite communication networks to realize emergency distress alarms.
[0004] The marine emergency life-saving communication links in the prior art operate independently. When a dangerous situation occurs, the emergency distress objects use the emergency life-saving communication equipment equipped on their own ships to respectively report the emergency distress situation to the coastal radio network and the satellite communication network. No unified receiving, control and processing mechanism has been formed, which is not conducive to the reliable and rapid reporting of information and the subsequent timely rescue work. Summary of the invention
[0005] In view of the problems existing in the prior art, the present invention provides a comprehensive management system and method for marine emergency life-saving.
[0006] The present invention provides a comprehensive management system for marine emergency life-saving, including: a duty platform, a comprehensive processing platform and at least one application platform, wherein:
[0007] The on-duty platform is used to receive rescue information sent by the user and send the rescue information to the processing platform; the rescue information includes at least one of the distress time, distress location, distress category, identification information and communication means; the on-duty platform includes a shortwave on-duty station, an ultrashortwave on-duty station and at least one satellite ground station connected to the communication bearer network;
[0008] The comprehensive processing platform is connected to the on-duty platform via a communication bearer network; the comprehensive processing platform includes a comprehensive processing module and a backup service module, the comprehensive processing module is used to convert the rescue information into a format to obtain alarm information, and distribute the alarm information to each of the application platforms based on the distress location; the backup service module is used to store the alarm information;
[0009] Each of the application platforms is connected to the integrated processing platform for communication, and is used to receive the alarm information and push the alarm information to the front-end display platform.
[0010] According to a marine emergency life-saving integrated management system provided by the present invention, the integrated processing module includes an information parsing unit, an identity recognition unit, a confirmation information sending unit and a subsequent communication unit, wherein:
[0011] The information parsing unit is used to receive the rescue information based on at least one receiving node of the on-duty platform, and convert the format of the rescue information based on the protocol type of each receiving node; the protocol type includes at least one of a shortwave protocol, an ultrashortwave protocol, and a satellite short message protocol;
[0012] The identity recognition unit is used to identify the basic information of the user in a preset database based on the identification information;
[0013] The confirmation information sending unit is used to send confirmation information to the user after distributing the alarm information to each application platform;
[0014] The subsequent communication unit is used to establish a communication connection between the integrated processing module and the user based on the communication means.
[0015] According to a marine emergency life-saving integrated management system provided by the present invention, the integrated processing module further includes a link monitoring unit, a map management unit and a configuration management unit, wherein:
[0016] The link monitoring unit is used to monitor the network topology linked to the integrated processing platform in real time;
[0017] The map management unit is used to display the distress information of the target area in real time;
[0018] The configuration management unit is used to configure the operating parameters of the on-duty platform based on a preset configuration; the operating parameters include at least one of a scanning mode and an on-duty mode.
[0019] According to a marine emergency life-saving integrated management system provided by the present invention, the link monitoring unit is also used for:
[0020] When the network topology is abnormal, fault alarm information is sent to the integrated processing platform.
[0021] According to a marine emergency life-saving integrated management system provided by the present invention, the backup service module includes a recovery unit and a remote disaster recovery unit, wherein:
[0022] The recovery unit is used to perform a data snapshot operation on the preset database;
[0023] The off-site disaster recovery unit is used to perform off-site backup of the preset database.
[0024] According to an integrated management system for marine emergency life-saving provided by the present invention, the integrated processing platform further includes a reservation module, and the reservation module is used to update the protocol type of the receiving node when the on-duty platform changes.
[0025] The present invention also provides a comprehensive management method for emergency life-saving at sea, comprising:
[0026] Receiving rescue information sent by a user; the rescue information includes at least one of distress time, distress location, distress category, identification information and communication means;
[0027] Based on the protocol types of multiple receiving nodes receiving the rescue information, the rescue information is formatted to obtain warning information; the protocol type includes at least one of a shortwave protocol, an ultrashortwave protocol, and a satellite short message protocol;
[0028] Based on the distress location, sending the warning information to an application platform corresponding to the distress location;
[0029] A confirmation message is sent to the user.
[0030] The present invention also provides an electronic device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the program, the integrated management method for emergency life-saving at sea as described in any one of the above is implemented.
[0031] The present invention also provides a non-transitory computer-readable storage medium on which a computer program is stored. When the computer program is executed by a processor, the integrated management method for emergency life-saving at sea as described in any one of the above is implemented.
[0032] The present invention also provides a computer program product, comprising a computer program, wherein when the computer program is executed by a processor, the integrated management method for marine emergency life-saving as described in any one of the above.
[0033] The present invention provides a comprehensive management system and method for emergency rescue at sea, the comprehensive management system includes a duty platform, a comprehensive processing platform and at least one application platform, wherein: the duty platform includes a shortwave duty station, an ultra-shortwave duty station and multiple satellite ground stations connected to a communication bearer network, and sends the rescue information sent by the received user to the processing platform; the rescue information includes at least one of the distress time, distress location, distress category, identification information and communication means, the comprehensive processing platform includes a comprehensive processing module and a backup service module, the comprehensive processing module is used to convert the rescue information into a format to obtain an alarm information, and distribute the alarm information to the corresponding application platform based on the distress location, the backup service module is used to store the alarm information, and each application platform is connected to the comprehensive processing platform for receiving the alarm information and pushing the alarm information to the front-end display platform. The comprehensive management system for emergency rescue at sea of the present invention can realize the integrated unified control, reception, transmission and processing of Jiyuan information of different means and different protocol formats of shortwave, ultra-shortwave, multiple satellites, and improve the overall operation efficiency and rescue speed of the system. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0035] Figure 1 It is a structural schematic diagram of the integrated management system for marine emergency life-saving provided by the present invention;
[0036] Figure 2 This is one of the structural schematic diagrams of the comprehensive processing platform of the marine emergency life-saving comprehensive management system provided by the present invention;
[0037] Figure 3 It is a structural schematic diagram of the comprehensive processing module of the comprehensive management system for emergency life-saving at sea provided by the present invention;
[0038] Figure 4 This is the second structural schematic diagram of the integrated processing platform of the integrated management system for marine emergency life-saving provided by the present invention;
[0039] Figure 5 It is a flow chart of the integrated management method for marine emergency life-saving provided by the present invention;
[0040] Figure 6 It is a structural schematic diagram of the electronic device provided by the present invention. DETAILED DESCRIPTION
[0041] In order to make the purpose, technical solution and advantages of the present invention clearer, the technical solution of the present invention will be clearly and completely described below in conjunction with the drawings of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0042] Combine the following Figure 1-Figure 6 The present invention describes the integrated management system and method for marine emergency life-saving.
[0043] Figure 1 Schematic diagram of the structure of the integrated management system for marine emergency rescue provided by the present invention. Figure 1 As shown, the embodiment of the present invention provides a comprehensive management system for marine emergency life-saving, including: a duty platform 110, a comprehensive processing platform 120 and at least one application platform 130, wherein:
[0044] The on-duty platform is used to receive rescue information sent by the user and send the rescue information to the processing platform; the rescue information includes at least one of the distress time, distress location, distress category, identification information and communication means; the on-duty platform includes a shortwave on-duty station, an ultrashortwave on-duty station and at least one satellite ground station connected to the communication bearer network;
[0045] Specifically, the duty platform includes a shortwave duty station, an ultrashortwave duty station and multiple satellite ground stations.
[0046] The shortwave duty station is mainly composed of shortwave coast radio stations. The shortwave coast radio stations have the ability to receive and send shortwave digital selection calling (DSC) rescue information and shortwave narrow-band direct printing (NBDP) rescue information. The shortwave coast radio station can automatically monitor the rescue information sent by people in distress at sea. When it monitors the emergency distress object sending shortwave DSC rescue information or shortwave NBDP rescue information, it will issue an audible and visual alarm, and automatically send the received shortwave DSC rescue information or shortwave NBDP rescue information to the integrated processing platform through the LAN network interface.
[0047] The ultra-short wave duty station is mainly composed of ultra-short wave coast radio and other equipment. The ultra-short wave coast radio has the ability to receive and send ultra-short wave DSC rescue information. The ultra-short wave coast radio can automatically monitor the rescue information sent by the distressed at sea. When the emergency distressed object sends ultra-short wave DSC rescue information, it will issue an audible and visual alarm, and automatically send the received ultra-short wave DSC rescue information to the comprehensive processing platform through the LAN network interface.
[0048] Furthermore, the duty platform also includes multiple ground stations. In an embodiment of the present invention, the ground stations may include a Beidou satellite ground station, an International Maritime Satellite Organization (Inmarsat) satellite ground station, and a Tiantong satellite ground station.
[0049] The Beidou satellite ground station is composed of Beidou satellite ground equipment and other equipment. The Beidou satellite ground equipment has the ability to receive and send Beidou satellite rescue information. When a user in distress at sea sends Beidou rescue information through the Beidou satellite alarm equipment, the Beidou satellite ground equipment can parse the received Beidou satellite rescue information and issue an audible and visual alarm, and can automatically send the received Beidou rescue information to the integrated processing platform through the LAN network interface.
[0050] Inmarsat satellite ground station is composed of Inmarsat satellite ground equipment and other equipment. When a user in distress at sea sends rescue information through Inmarsat satellite ground equipment, Inmarsat satellite ground equipment can analyze the received Inmarsat satellite rescue information and issue an audible and visual alarm, and can automatically send the received Inmarsat satellite rescue information to the integrated processing platform through the LAN network interface.
[0051] The Tiantong satellite ground station consists of Tiantong satellite ground equipment, firewalls and other equipment. When users in distress at sea send rescue information through the Tiantong satellite ground equipment, the Tiantong satellite ground equipment can parse the received Tiantong satellite rescue information and issue sound and light alarms, and can automatically send the received Tiantong satellite rescue information to the integrated processing platform through the LAN network interface.
[0052] Furthermore, the rescue information includes at least one of the time of distress, location of distress, type of distress, identification information and communication means, that is, when a user in distress at sea sends a rescue message, the time of distress will be included; the location of distress, which is generally reported through the longitude and latitude of the current hull; the identification information generally includes the hull number, the identity information of the distressed objects on board, the business identification code of the ship, etc.; the distress category is used to describe the specific situation of the current distress, such as business personnel on board falling into the water, the hull catching fire, the hull being damaged and sinking, etc.; the communication means is used to characterize what kind of communication means can be used to establish a connection with the distressed ship in the subsequent rescue process. The communication means may include NBDP communication, Beidou short message or Tiantong telephone, etc.
[0053] The comprehensive processing platform is connected to the on-duty platform via a communication bearer network; the comprehensive processing platform includes a comprehensive processing module and a backup service module, the comprehensive processing module is used to convert the rescue information into a format to obtain alarm information, and distribute the alarm information to each of the application platforms based on the distress location; the backup service module is used to store the alarm information;
[0054] Specifically, the integrated processing platform is the core part of the integrated management system for marine emergency life-saving. Figure 2 FIG. 1 is one of the structural schematic diagrams of the integrated processing platform of the integrated management system for emergency life-saving at sea provided by the present invention, such as Figure 2 As shown, the integrated processing platform includes an integrated processing module and a backup service module. The integrated processing platform establishes a connection with the communication bearer network through a switch and can be used to receive rescue information sent by the duty platform.
[0055] The comprehensive processing module is used to convert the rescue information into an alarm message. Specifically, since the protocol formats of the rescue information reported by the duty platform through subordinate shortwave, ultrashortwave, Beidou satellite, Tiantong satellite, Inmarsat satellite and other duty modes are different, it is necessary to convert the rescue information into an alarm message based on different protocol formats. In fact, the format conversion process is also the process of parsing the rescue information. The various information included in the rescue information can be obtained, and the alarm information corresponding to the rescue information can be obtained based on the format conversion. Furthermore, combined with the distress location in the rescue information, the alarm information is distributed to the application platform corresponding to the area where the distress location is located.
[0056] The backup service module includes a module for storing alarm information to facilitate subsequent data tracing and searching.
[0057] Each of the application platforms is communicatively connected with the integrated processing platform to receive the alarm information and push the alarm information to the front-end display platform.
[0058] Specifically, there are multiple application platforms, which are set up at multiple points according to the sea areas under jurisdiction. The application platform is composed of multiple communication application devices, which are set up in search and rescue coordination centers or duty rooms in different jurisdictions and guarded by field staff. The various communication application devices included in the application platform can push alarm information to the front-end display platform for display, and can also issue sound and light alarms. Furthermore, the application platform can also access information with various rescue platforms to facilitate the organization of subsequent rescue work, which is not specifically limited here.
[0059] An embodiment of the present invention provides an integrated management system and method for marine emergency life-saving, the integrated management system comprising a duty platform, an integrated processing platform and at least one application platform, wherein: the duty platform comprises a shortwave duty station, an ultrashortwave duty station and a plurality of satellite ground stations connected to a communication bearer network, and sends the rescue information received from the user to the processing platform; the rescue information comprises at least one of the distress time, distress location, distress category, identification information and communication means; the integrated processing platform comprises an integrated processing module and a backup service module, the integrated processing module is used to convert the format of the rescue information to obtain alarm information, and distribute the alarm information to the corresponding application platform based on the distress location, the backup service module is used to store the alarm information, and each application platform is connected to the integrated processing platform for receiving the alarm information and pushing the alarm information to the front-end display platform. The integrated management system for emergency life-saving at sea in the embodiment of the present invention can integrate and process rescue information of various means and different protocol formats such as shortwave, ultra-shortwave, Beidou satellite, Tiantong satellite, Inmarsat satellite, etc., and configure a backup service module, so that the integrated management system for emergency life-saving at sea has emergency recovery capabilities. When relevant processing equipment fails and cannot work normally, it can be quickly restored to ensure that rescue information is not lost and emergency distress information is received uninterruptedly.
[0060] Optionally, according to an integrated management system for emergency life-saving at sea provided by an embodiment of the present invention, the integrated processing module specifically includes an information parsing unit, an identity recognition unit, a confirmation information sending unit and a subsequent communication unit, wherein:
[0061] The information parsing unit is used to receive the rescue information based on at least one receiving node of the on-duty platform, and convert the format of the rescue information based on the protocol type of each receiving node; the protocol type includes at least one of a shortwave protocol, an ultrashortwave protocol, and a satellite short message protocol;
[0062] Specifically, the information analysis unit receives rescue information in different protocol formats reported by the receiving nodes corresponding to the subordinate shortwave, ultra-shortwave, Beidou satellite, Tiantong satellite, Inmarsat satellite and other on-duty platforms, converts the rescue information into a format, obtains alarm information, and stores the alarm information in a preset database at the same time. The preset database can be a MySQL database, which can ensure simultaneous access by multiple users and improve timely response capabilities.
[0063] The identity recognition unit is used to identify the basic information of the user in a preset database based on the identification information;
[0064] Specifically, the preset database also stores relevant information about ships at sea. The identity recognition unit can search and match in the preset database based on the identification information in the rescue information, such as the number of the ship that sends the rescue information, the identity information of the distressed objects on the ship, the business identification code of the ship, etc., which are not specifically limited here.
[0065] The confirmation information sending unit is used to send confirmation information to the user after distributing the alarm information to each application platform;
[0066] Specifically, the information sending unit sends a confirmation message back to the marine vessel that sent the rescue message after the alarm message has been sent to the corresponding application platform. The confirmation message can be triggered automatically or manually. Furthermore, other information such as the estimated rescue time can also be sent back in the confirmation message, which is not specifically limited here.
[0067] The subsequent communication unit is used to establish a communication connection between the integrated processing module and the user based on the communication means.
[0068] Specifically, the subsequent communication unit establishes a communication connection between the comprehensive processing module and the user who sent the rescue information based on the communication means in the rescue information. In specific implementations, the subsequent communication unit generally supports subsequent communication through NBDP, Beidou short messages, and Tiantong phone calls. The most important thing is to match the communication means of the user who sent the rescue information to establish a communication connection.
[0069] An embodiment of the present invention provides a comprehensive management system and method for emergency rescue at sea, the comprehensive management system includes a duty platform, a comprehensive processing platform and at least one application platform, wherein: the duty platform includes a shortwave duty station, an ultra-shortwave duty station and multiple satellite ground stations connected to a communication bearer network, and sends the rescue information received from the user to the processing platform; the rescue information includes at least one of the distress time, distress location, distress category, identification information and communication means, the comprehensive processing platform includes a comprehensive processing module and a backup service module, the comprehensive processing module is used to convert the rescue information into a format to obtain an alarm information, and distribute the alarm information to the corresponding application platform based on the distress location, the backup service module is used to store the alarm information, and each application platform is connected to the comprehensive processing platform for receiving the alarm information and pushing the alarm information to the front-end display platform. The comprehensive management system for emergency rescue at sea of the present invention can realize the integrated unified control, reception, transmission and processing of Jiyuan information of different means and different protocol formats of shortwave, ultra-shortwave, multiple satellites, and improve the overall operation efficiency and rescue speed of the system.
[0070] Optionally, according to an integrated management system for marine emergency life-saving provided by an embodiment of the present invention, the integrated processing module further includes a link monitoring unit, a map management unit and a configuration management unit, wherein:
[0071] The link monitoring unit is used to monitor the network topology linked to the integrated processing platform in real time;
[0072] Specifically, the link monitoring unit is used to monitor the network topology linked to the integrated processing platform in real time. The integrated management system for emergency life-saving at sea is interconnected through a dedicated communication bearer network to achieve networking. The integrated processing module can graphically present the connection topology between the integrated processing module and other devices in the software interface. When new site equipment is created or cancelled, the connection equipment can be manually added or deleted. The link monitoring unit is used to monitor these connection topologies in real time, and send fault alarm information to the integrated processing platform when the connection topology is abnormal. Abnormal conditions of the connection topology may include equipment offline, equipment failure, etc. Furthermore, the connection points where the connection topology is abnormal can also be displayed on the front-end display module to achieve rapid positioning and repair of abnormal connection points.
[0073] The map management unit is used to display the distress information of the target area in real time;
[0074] Specifically, the map management unit uses the CESIUM map to display the rescue information of the authorized sea area on the front-end display module. When the rescue information reported by the user includes the distress location, the location information requiring rescue is displayed on the front-end display module, so that the on-duty personnel can quickly and intuitively know the location of the distressed object.
[0075] The configuration management unit is used to configure the operating parameters of the on-duty platform based on a preset configuration; the operating parameters include at least one of a scanning mode and an on-duty mode.
[0076] Specifically, the configuration management unit configures the operating parameters of the on-duty platform within the jurisdiction, such as the scanning mode in the shortwave coast radio station and the ultra-shortwave coast radio station, the on-duty mode of other on-duty platforms, etc., which are not specifically limited here. Further, after the on-duty platform is configured, a corresponding parameter configuration log is generated, and the parameter configuration log is stored in a preset database for subsequent tracking and query.
[0077] Optionally, according to an integrated management system for marine emergency life-saving provided by an embodiment of the present invention, the link monitoring unit is further used for:
[0078] When the network topology is abnormal, fault alarm information is sent to the integrated processing platform.
[0079] Figure 3Schematic diagram of the structure of the integrated processing module of the integrated management system for marine emergency life-saving provided by the present invention. Figure 3 As shown, the comprehensive processing module includes multiple units, including an information parsing unit, an identity recognition unit, a confirmation information sending unit, a subsequent communication unit, a link monitoring unit, a map management unit and a configuration management unit.
[0080] An embodiment of the present invention provides a comprehensive management system and method for emergency rescue at sea, the comprehensive management system includes a duty platform, a comprehensive processing platform and at least one application platform, wherein: the duty platform includes a shortwave duty station, an ultra-shortwave duty station and multiple satellite ground stations connected to a communication bearer network, and sends the rescue information received from the user to the processing platform; the rescue information includes at least one of the distress time, distress location, distress category, identification information and communication means, the comprehensive processing platform includes a comprehensive processing module and a backup service module, the comprehensive processing module is used to convert the rescue information into a format to obtain an alarm information, and distribute the alarm information to the corresponding application platform based on the distress location, the backup service module is used to store the alarm information, and each application platform is connected to the comprehensive processing platform for receiving the alarm information and pushing the alarm information to the front-end display platform. The comprehensive management system for emergency rescue at sea of the present invention can realize the integrated unified control, reception, transmission and processing of Jiyuan information of different means and different protocol formats of shortwave, ultra-shortwave, multiple satellites, and improve the overall operation efficiency and rescue speed of the system.
[0081] The integrated processing platform can integrate and process rescue information of various means and different protocol formats such as shortwave, ultra-shortwave, Beidou satellite, Tiantong satellite, Inmarsat satellite, etc., and realize compatibility with emergency distress information reported by different types of duty platforms. Compared with the relatively independent processing of emergency distress information by ground coastal radio stations and satellite ground stations in the existing emergency life-saving communication system, the speed of information interaction is improved, which is conducive to rapid response to emergency distress rescue calls from various types of ships, shortening the time cycle of rescue information circulation, and increasing the success rate of subsequent rescue. At the same time, the integration of multiple means reduces the number of equipment and operation and maintenance manpower, and has good economic benefits.
[0082] Optionally, according to an integrated management system for marine emergency life-saving provided by an embodiment of the present invention, the backup service module includes a recovery unit and a remote disaster recovery unit, wherein:
[0083] The recovery unit is used to perform a data snapshot operation on the preset database;
[0084] Specifically, the backup service module uses server hardware as a carrier, and forms an emergency backup service device by loading an operating system and dedicated data emergency recovery software. The device is interconnected through information comprehensive processing equipment to realize the backup of rescue information.
[0085] The recovery unit supports fully automatic data snapshots, can retain multiple historical full backups based on rescue information, and can perform data recovery at any point in time.
[0086] The off-site disaster recovery unit is used to perform off-site backup of the preset database.
[0087] An embodiment of the present invention provides a comprehensive management system and method for emergency rescue at sea, the comprehensive management system includes a duty platform, a comprehensive processing platform and at least one application platform, wherein: the duty platform includes a shortwave duty station, an ultra-shortwave duty station and multiple satellite ground stations connected to a communication bearer network, and sends the rescue information received from the user to the processing platform; the rescue information includes at least one of the distress time, distress location, distress category, identification information and communication means, the comprehensive processing platform includes a comprehensive processing module and a backup service module, the comprehensive processing module is used to convert the rescue information into a format to obtain an alarm information, and distribute the alarm information to the corresponding application platform based on the distress location, the backup service module is used to store the alarm information, and each application platform is connected to the comprehensive processing platform for receiving the alarm information and pushing the alarm information to the front-end display platform. The comprehensive management system for emergency rescue at sea of the present invention can realize the integrated unified control, reception, transmission and processing of Jiyuan information of different means and different protocol formats of shortwave, ultra-shortwave, multiple satellites, and improve the overall operation efficiency and rescue speed of the system.
[0088] Furthermore, by configuring the backup service module, it has the real-time microsecond backup of various emergency distress information data such as shortwave, ultra-shortwave, Beidou satellite, Tiantong satellite, Inmarsat satellite, etc., as well as the ability to quickly recover in the event of equipment failure. It can quickly restore data at any time node of the faulty equipment through emergency recovery equipment, and also supports the function of quickly taking over the information comprehensive processing equipment through emergency recovery equipment, ensuring that the business is not interrupted, the risk of dangerous data is controllable, and the data can be restored and traced.
[0089] Optionally, according to an integrated management system for marine emergency life-saving provided by an embodiment of the present invention, the integrated processing platform further includes a reservation module, and the reservation module is used to update the protocol type of the receiving node when the duty platform changes.
[0090] Figure 4 This is a second structural diagram of the integrated processing platform of the integrated management system for marine emergency life-saving provided by the present invention, such as Figure 4As shown in the figure, the integrated processing platform includes a business software area and a control area. The control area includes an integrated management module and a backup service module. The business software area includes a shortwave module, an ultra-shortwave module, a Beidou satellite module, a Tiantong satellite module, an Inmarsat satellite module and a reserved module. In the specific implementation, these modules are responsible for receiving the rescue information sent by their respective duty platforms, and then forwarding it to the integrated processing module for format conversion and analysis.
[0091] The reserved module is used in the later specific implementation. When a new duty platform appears, the corresponding processing module is set up. The modular design concept is adopted to facilitate the update and upgrade of software modules, or the addition, replacement and tailoring of interface software modules, and support the access and processing compatible with the new generation of communication means.
[0092] An embodiment of the present invention provides a comprehensive management system and method for emergency rescue at sea, the comprehensive management system includes a duty platform, a comprehensive processing platform and at least one application platform, wherein: the duty platform includes a shortwave duty station, an ultra-shortwave duty station and multiple satellite ground stations connected to a communication bearer network, and sends the rescue information received from the user to the processing platform; the rescue information includes at least one of the distress time, distress location, distress category, identification information and communication means, the comprehensive processing platform includes a comprehensive processing module and a backup service module, the comprehensive processing module is used to convert the rescue information into a format to obtain an alarm information, and distribute the alarm information to the corresponding application platform based on the distress location, the backup service module is used to store the alarm information, and each application platform is connected to the comprehensive processing platform for receiving the alarm information and pushing the alarm information to the front-end display platform. The comprehensive management system for emergency rescue at sea of the present invention can realize the integrated unified control, reception, transmission and processing of Jiyuan information of different means and different protocol formats of shortwave, ultra-shortwave, multiple satellites, and improve the overall operation efficiency and rescue speed of the system.
[0093] Furthermore, the reserved module in the embodiment of the present invention is oriented to the access processing of rescue information reported by the next generation communication means or the on-duty platform, and has better compatibility and scalability than the existing emergency life-saving communication system.
[0094] Figure 5 Schematic diagram of the integrated management method for marine emergency rescue provided by the present invention, such as Figure 5 As shown, the integrated management method for marine emergency rescue provided by the embodiment of the present invention includes:
[0095] Step 510: receiving rescue information sent by a user; the rescue information includes at least one of distress time, distress location, distress category, identification information and communication means;
[0096] Specifically, in this step, the rescue information sent by the user in distress at sea is received. The rescue information includes at least one of the time of distress, the location of distress, the type of distress, identification information and the communication means, that is, when the user in distress at sea sends the rescue information, it will include the time of distress; the location of distress, which is generally reported by the longitude and latitude of the current hull; the identification information generally includes the hull number, the identity information of the distressed object in the ship, the business identification code of the ship, etc.; the distress category is used to describe the specific situation of the current distress, such as the business personnel in the ship falling into the water, the hull catching fire, the hull being damaged and sinking, etc.; the communication means is used to indicate what kind of communication means can be used to establish a connection with the distressed ship in the subsequent rescue process, and the communication means may include NBDP communication, Beidou short message or Tiantong telephone, etc.
[0097] Step 520: Based on the protocol types of multiple receiving nodes receiving the rescue information, convert the format of the rescue information to obtain warning information; the protocol type includes at least one of a shortwave protocol, an ultrashortwave protocol, and a satellite short message protocol;
[0098] Specifically, since the protocol formats of the rescue information reported by the duty platform through subordinate shortwave, ultra-shortwave, Beidou satellite, Tiantong satellite, Inmarsat satellite and other duty modes are different, it is necessary to convert the rescue information format based on different protocol formats. In fact, the format conversion process is also the parsing process of the rescue information. The various information included in the rescue information can be obtained, and the alarm information corresponding to the rescue information can be obtained based on the format conversion. Furthermore, combined with the distress location in the rescue information, the alarm information is distributed to the application platform corresponding to the area where the distress location is located.
[0099] Step 530: Based on the distress location, send the warning information to an application platform corresponding to the distress location;
[0100] Step 540: Send confirmation information to the user.
[0101] Specifically, after the warning information has been sent to the corresponding application platform, the confirmation information is sent back to the sea vessel that sent the rescue information. The triggering method of the confirmation information can be automatic or manual. Further, other information such as the estimated rescue time can also be sent back in the confirmation information, which is not specifically limited here.
[0102] The integrated management method for emergency rescue at sea provided by the embodiment of the present invention receives rescue information sent by users at sea, converts the format of the rescue information and sends it, sends the rescue information to the corresponding application platform based on the distress location included in the rescue information, and returns confirmation information to the user after the rescue information is distributed. The overall operation efficiency and rescue speed of the integrated management system for emergency rescue at sea are improved.
[0103] Figure 6 It is a structural schematic diagram of the electronic device provided by the present invention. Figure 6 An example of a physical structure diagram of an electronic device is shown in FIG. Figure 6 As shown, the electronic device may include: a processor 610, a communication interface 620, a memory 630 and a communication bus 640, wherein the processor 610, the communication interface 620 and the memory 630 communicate with each other through the communication bus 640. The processor 610 may call the logic instructions in the memory 630 to execute the above-mentioned integrated management method for emergency life-saving at sea, which includes:
[0104] Receiving rescue information sent by a user; the rescue information includes at least one of distress time, distress location, distress category, identification information and communication means;
[0105] Based on the protocol type of the receiving node receiving the rescue information, convert the format of the rescue information to obtain alarm information;
[0106] Based on the distress location, sending the warning information to an application platform corresponding to the distress location;
[0107] A confirmation message is sent to the user.
[0108] In addition, the logic instructions in the above-mentioned memory 630 can be implemented in the form of a software functional unit and can be stored in a computer-readable storage medium when it is sold or used as an independent product. Based on such an understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art or the part of the technical solution, can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), disk or optical disk and other media that can store program codes.
[0109] On the other hand, the present invention further provides a computer program product, the computer program product comprising a computer program, the computer program can be stored on a non-transitory computer-readable storage medium, and when the computer program is executed by a processor, the computer can execute the integrated management method for emergency life-saving at sea provided by the above methods, the method comprising:
[0110] Receiving rescue information sent by a user; the rescue information includes at least one of distress time, distress location, distress category, identification information and communication means;
[0111] Based on the protocol type of the receiving node receiving the rescue information, convert the format of the rescue information to obtain alarm information;
[0112] Based on the distress location, sending the warning information to an application platform corresponding to the distress location;
[0113] A confirmation message is sent to the user.
[0114] In another aspect, the present invention further provides a non-transitory computer-readable storage medium having a computer program stored thereon, which is implemented when the computer program is executed by a processor to execute the integrated management method for emergency life-saving at sea provided by the above methods, the method comprising:
[0115] Receiving rescue information sent by a user; the rescue information includes at least one of distress time, distress location, distress category, identification information and communication means;
[0116] Based on the protocol type of the receiving node receiving the rescue information, convert the format of the rescue information to obtain alarm information;
[0117] Based on the distress location, sending the warning information to an application platform corresponding to the distress location;
[0118] A confirmation message is sent to the user.
[0119] The device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the scheme of this embodiment. Ordinary technicians in this field can understand and implement it without paying creative labor.
[0120] Through the description of the above implementation methods, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus a necessary general hardware platform, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solution is essentially or the part that contributes to the prior art can be embodied in the form of a software product, and the computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, a disk, an optical disk, etc., including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or some parts of the embodiments.
[0121] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A comprehensive management system for marine emergency life-saving, characterized in that: include: A duty platform, an integrated processing platform and at least one application platform, wherein: The on-duty platform is used to receive rescue information sent by the user and send the rescue information to the processing platform; the rescue information includes at least one of the distress time, distress location, distress category, identification information and communication means; the on-duty platform includes a shortwave on-duty station, an ultrashortwave on-duty station and at least one satellite ground station connected to the communication bearer network; The comprehensive processing platform is connected to the on-duty platform via a communication bearer network; the comprehensive processing platform includes a comprehensive processing module and a backup service module, the comprehensive processing module is used to convert the rescue information into a format to obtain alarm information, and distribute the alarm information to each of the application platforms based on the distress location; the backup service module is used to store the alarm information; Each of the application platforms is connected to the integrated processing platform for communication, and is used to receive the alarm information and push the alarm information to the front-end display platform.
2. The integrated management system for marine emergency life-saving according to claim 1, characterized in that: The comprehensive processing module includes an information parsing unit, an identity recognition unit, a confirmation information sending unit and a subsequent communication unit, wherein: The information parsing unit is used to receive the rescue information based on at least one receiving node of the on-duty platform, and convert the format of the rescue information based on the protocol type of each receiving node; the protocol type includes at least one of a shortwave protocol, an ultrashortwave protocol, and a satellite short message protocol; The identity recognition unit is used to identify the basic information of the user in a preset database based on the identification information; The confirmation information sending unit is used to send confirmation information to the user after distributing the alarm information to each application platform; The subsequent communication unit is used to establish a communication connection between the integrated processing module and the user based on the communication means.
3. The integrated management system for marine emergency life-saving according to claim 2, characterized in that: The comprehensive processing module also includes a link monitoring unit, a map management unit and a configuration management unit, wherein: The link monitoring unit is used to monitor the network topology linked to the integrated processing platform in real time; The map management unit is used to display the distress information of the target area in real time; The configuration management unit is used to configure the operating parameters of the on-duty platform based on a preset configuration; the operating parameters include at least one of a scanning mode and an on-duty mode.
4. The integrated management system for marine emergency life-saving according to claim 3, characterized in that: The link monitoring unit is also used for: When the network topology is abnormal, fault alarm information is sent to the integrated processing platform.
5. The integrated management system for marine emergency life-saving according to claim 1, characterized in that: The backup service module includes a recovery unit and a remote disaster recovery unit, wherein: The recovery unit is used to perform a data snapshot operation on the preset database; The off-site disaster recovery unit is used to perform off-site backup of the preset database.
6. The integrated management system for marine emergency life-saving according to claim 1, characterized in that: The integrated processing platform also includes a reservation module, which is used to update the protocol type of the receiving node when the on-duty platform changes.
7. A comprehensive management method for emergency life-saving at sea, characterized in that: include: Receive rescue information sent by users; The rescue information includes at least one of the distress time, distress location, distress category, identification information and communication means; Based on the protocol types of multiple receiving nodes receiving the rescue information, the rescue information is formatted to obtain warning information; the protocol type includes at least one of a shortwave protocol, an ultrashortwave protocol, and a satellite short message protocol; Based on the distress location, sending the warning information to an application platform corresponding to the distress location; A confirmation message is sent to the user.
8. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the program, the integrated management method for marine emergency life-saving according to any one of claims 1 to 6 is implemented.
9. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the integrated management method for marine emergency life-saving according to any one of claims 1 to 6 is implemented.
10. A computer program product, comprising a computer program, characterized in that When the computer program is executed by a processor, the integrated management method for marine emergency life-saving according to any one of claims 1 to 6 is implemented.
Citation Information
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