Marine signal wave integration method
By using signal wave encoding and decoding modules, a unified signal transmission platform, and an intelligent scheduling system, the problem of inconsistent signal frequency bands and standards in marine communication systems has been solved, achieving efficient and secure signal transmission, improving the compatibility and security of ship communication, and reducing maintenance costs.
Patent Information
- Application Number
- CN202411639039.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2044-11-18
AI Technical Summary
Existing marine communication systems face challenges such as diverse signal frequency bands, inconsistent standards, and poor equipment compatibility, leading to increased difficulty in communication scheduling, poor information transmission, high error rates, and poor confidentiality, which affect navigation safety and operational efficiency.
It adopts signal wave encoding and decoding modules, a unified signal transmission platform, and an intelligent scheduling and command system to achieve seamless access and interconnection of multiple frequency bands and standards, and introduces advanced encryption and authentication mechanisms to support remote monitoring and management.
It improved the compatibility and stability of signal transmission, enhanced the security of information transmission, reduced maintenance costs, improved the efficiency and accuracy of communication scheduling, and ensured the continuity and security of maritime communication.
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Figure CN119520634B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of ship communication system technology, and specifically to a method for integrating shipboard signal waves. Background Technology
[0002] With the rapid development of the marine economy, the stability and security of ship communication systems are particularly crucial as ships serve as vital tools for maritime transportation and operations. However, current ship communication systems generally face challenges such as diverse signal frequency bands, inconsistent standards, and poor equipment compatibility. These problems not only increase the difficulty of communication scheduling but may also lead to consequences such as poor information transmission, high error rates, and poor confidentiality, seriously affecting ship navigation safety and operational efficiency.
[0003] To address these issues, various communication signal integration technologies have emerged in the market. However, these technologies often suffer from drawbacks such as low integration density, poor compatibility, and high costs. Therefore, developing an efficient, compatible, and low-cost marine signal wave integration system and method is of paramount importance. Summary of the Invention
[0004] The technical problem to be solved by this invention is to provide a method for integrating marine signal waves, which can realize the unified integration and efficient transmission of communication signals of multiple frequency bands and standards on ships.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is as follows:
[0006] A method for integrating marine signal waves mainly includes the following steps:
[0007] S1, System Deployment: Install a marine signal wave integration system on the ship. The marine signal wave integration system includes a signal wave encoding and decoding module, a unified signal transmission platform, an intelligent scheduling and command system, and related hardware equipment and software programs.
[0008] S2, Equipment Access: Connect the ship's communication equipment to the unified signal transmission platform through the interface module to achieve seamless access and interconnection of various communication devices on the ship. The communication equipment includes shortwave radios and satellite phones.
[0009] S3, Signal Encoding and Transmission: At the transmitting end of the communication device, the information to be transmitted is converted into a signal wave using a signal wave encoding module, and then transmitted to the receiving end of the corresponding communication device through a unified signal transmission platform; the unified signal transmission platform integrates a signal encryption and authentication module.
[0010] S4, Signal Decoding and Restoration: The received signal wave is restored to the original information using the signal wave decoding module at the receiving end of the corresponding communication device, and the information is processed and distributed through the intelligent scheduling and command system;
[0011] S5, Remote Monitoring and Management: Authorized users access the unified signal transmission platform through the remote management system and communicate with the intelligent scheduling and command system to remotely monitor and manage the marine signal wave integration system. The remote monitoring and management includes: real-time monitoring of the status and network environment of each communication device, automatic allocation of communication resources, and equipment fault diagnosis and repair.
[0012] Furthermore, the signal wave encoding module converts the information to be transmitted sent by the communication device's transmitting end into a signal wave of a preset frequency band through an encoding algorithm and a conversion module.
[0013] Furthermore, the signal wave decoding module uses a decoding algorithm corresponding to the encoding algorithm to restore the signal wave of the preset frequency band received by the receiving end of the communication device into the original information to be transmitted.
[0014] Furthermore, the unified signal transmission platform integrates a signal encryption and authentication module, which is used to encrypt the signals transmitted within the unified signal transmission platform using encryption algorithms, and to authenticate the identities of each communication device with a preset digital signature, so that the sending end device and the receiving end device are matched.
[0015] Furthermore, the unified signal transmission platform supports multiple communication protocols and network environments, enabling seamless access and interconnection of communication devices with different frequency bands and standards.
[0016] Furthermore, the intelligent scheduling and command system is used to monitor the status of each communication device and the network environment in real time, and automatically allocate communication resources according to task requirements and priorities.
[0017] Furthermore, the intelligent scheduling and command system integrates a fault diagnosis module and a remote support module. When a communication device malfunctions, the fault diagnosis module can quickly locate the fault point, and the remote support module can repair the fault.
[0018] Furthermore, the authorized user can access the unified signal transmission platform through the remote management system and communicate with the intelligent scheduling and command system to remotely monitor and manage the marine signal wave integration system in real time.
[0019] Compared with the prior art, the present invention has the following main advantages:
[0020] 1. This invention first employs advanced signal encoding and decoding algorithms to convert communication signals from different sources and in different formats into a unified digital signal format, ensuring compatibility and stability during transmission. Subsequently, by constructing a unified signal transmission platform and utilizing advanced network communication technology, seamless connection and interoperability between communication devices of different frequency bands and standards are achieved. This platform supports remote monitoring and management, enabling real-time monitoring of device status and network environment, automatic allocation of communication resources, and improved efficiency and accuracy of communication scheduling.
[0021] 2. This invention introduces an intelligent signal processing module, which can automatically identify and filter noise signals, improving the clarity and accuracy of signal transmission. Simultaneously, advanced encryption and authentication mechanisms ensure the security and confidentiality of communication information during transmission, preventing information leakage and unauthorized tampering.
[0022] 3. The marine signal wave integration method of the present invention has the advantages of strong compatibility, high transmission efficiency, good security and low maintenance cost; its application will significantly improve the communication capabilities of ships in maritime navigation, operation and emergency command, and provide strong protection for maritime traffic safety and operational efficiency; therefore, the present invention has broad application prospects and important practical value in the field of ship communication. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the network architecture of the marine signal wave integration method in an embodiment of the present invention;
[0024] Figure 2 This is a schematic diagram illustrating the specific process of the marine signal wave integration method in an embodiment of the present invention. Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention. Furthermore, the technical features involved in the various embodiments of this invention described below can be combined with each other as long as they do not conflict with each other.
[0026] It should be noted that, depending on the implementation needs, the various steps / components described in this application can be broken down into more steps / components, or two or more steps / components or parts of the operation of steps / components can be combined into new steps / components to achieve the purpose of this invention.
[0027] Example 1: This example provides a method for integrating marine signal waves, such as... Figures 1-2 As shown, the main steps include the following:
[0028] S1, System Deployment: Install a marine signal wave integration system on the ship. The marine signal wave integration system includes a signal wave encoding and decoding module, a unified signal transmission platform, an intelligent scheduling and command system, and related hardware equipment and software programs.
[0029] S2, Equipment Access: Connect the ship's communication equipment to the unified signal transmission platform through the interface module to achieve seamless access and interconnection of various communication devices on the ship. The communication equipment includes shortwave radios and satellite phones.
[0030] S3, Signal Encoding and Transmission: At the transmitting end of the communication device, the information to be transmitted is converted into a signal wave using a signal wave encoding module, and then transmitted to the receiving end of the corresponding communication device through a unified signal transmission platform; the unified signal transmission platform integrates a signal encryption and authentication module.
[0031] S4, Signal Decoding and Restoration: The received signal wave is restored to the original information using the signal wave decoding module at the receiving end of the corresponding communication device, and the information is processed and distributed through the intelligent scheduling and command system;
[0032] S5, Remote Monitoring and Management: Authorized users access the unified signal transmission platform through the remote management system and communicate with the intelligent scheduling and command system to remotely monitor and manage the marine signal wave integration system. The remote monitoring and management includes: real-time monitoring of the status and network environment of each communication device, automatic allocation of communication resources, and equipment fault diagnosis and repair.
[0033] Furthermore, the signal wave encoding module converts the information to be transmitted sent by the communication device's transmitting end into a signal wave of a preset frequency band through an encoding algorithm and a conversion module.
[0034] Furthermore, the signal wave decoding module uses a decoding algorithm corresponding to the encoding algorithm to restore the signal wave of the preset frequency band received by the receiving end of the communication device into the original information to be transmitted.
[0035] Furthermore, the unified signal transmission platform integrates a signal encryption and authentication module, which is used to encrypt the signals transmitted within the unified signal transmission platform using encryption algorithms, and to authenticate the identities of each communication device with a preset digital signature, so that the sending end device and the receiving end device are matched.
[0036] Furthermore, the unified signal transmission platform supports multiple communication protocols and network environments, enabling seamless access and interconnection of communication devices with different frequency bands and standards.
[0037] Furthermore, the intelligent scheduling and command system is used to monitor the status of each communication device and the network environment in real time, and automatically allocate communication resources according to task requirements and priorities.
[0038] Furthermore, the intelligent scheduling and command system integrates a fault diagnosis module and a remote support module. When a communication device malfunctions, the fault diagnosis module can quickly locate the fault point, and the remote support module can repair the fault.
[0039] Furthermore, the authorized user can access the unified signal transmission platform through the remote management system and communicate with the intelligent scheduling and command system to remotely monitor and manage the marine signal wave integration system in real time.
[0040] Example 2: This example provides a method for integrating marine signal waves, including:
[0041] 1. Signal wave encoding and decoding technology:
[0042] This invention employs an innovative signal wave encoding and decoding technology. This technology can convert the real information to be transmitted into a special signal wave through complex algorithms and transformations. This signal wave not only possesses high concealment and anti-interference capabilities but also achieves compatibility with multiple frequency bands and standards. At the receiving end, through a corresponding decoding algorithm, the received signal wave can be easily restored to the original information, achieving accurate information transmission.
[0043] 2. Unified signal transmission platform:
[0044] To address the poor equipment compatibility issues in existing marine communication systems, this invention designs a unified signal transmission platform. This platform supports multiple communication protocols and network environments, enabling seamless access and interconnection of communication devices across different frequency bands and standards. Through this platform, signals from different sources and in different formats can be processed and transmitted uniformly, significantly improving the system's compatibility and flexibility.
[0045] 3. Intelligent Dispatch and Command System:
[0046] To improve the efficiency and accuracy of communication scheduling, this invention also designs an intelligent scheduling and command system. This system can monitor the status of each communication device and the network environment in real time, and automatically allocate communication resources according to task requirements and priorities. Simultaneously, the system also has remote support and fault diagnosis functions, enabling it to quickly locate problems and take corresponding solutions when faults occur, ensuring the stable operation of the communication system.
[0047] 4. Advanced encryption and authentication mechanisms:
[0048] To address potential security risks in maritime communications, this invention introduces advanced encryption and authentication mechanisms. During signal transmission, advanced encryption algorithms are used to encrypt the signal, ensuring the confidentiality and integrity of the information. Simultaneously, digital signatures and identity authentication technologies are employed to ensure the authenticity and reliability of the identities of both communicating parties, preventing malicious attacks and information forgery.
[0049] 5. Modular design and remote management:
[0050] To facilitate system maintenance and upgrades, this invention adopts a modular design approach. The system is divided into multiple relatively independent modules, each responsible for a specific function. This design not only reduces system complexity but also improves maintainability and scalability. Furthermore, through remote management technology, authorized users can remotely monitor and manage the system anytime, anywhere, significantly reducing maintenance and time costs.
[0051] Furthermore, all parts of this application that are not described in detail are the same as or implemented using existing technology.
[0052] In summary:
[0053] The present invention proposes a marine signal wave integration system and method, which, through innovative encoding and decoding technologies and a unified signal transmission and scheduling method, realizes the integration and interconnection of communication signals of multiple frequency bands and standards, improves the stability and confidentiality of signal transmission, and reduces system maintenance costs, and has significant technological progress and practical application value.
[0054] 1. Improved compatibility: Through innovative signal wave encoding and decoding technologies and a unified signal transmission platform design, the system achieves unified integration and efficient transmission of multiple frequency bands and multiple communication standards, greatly improving system compatibility.
[0055] 2. Enhanced security: The introduction of advanced encryption and authentication mechanisms, as well as an intelligent scheduling and command system, ensures the confidentiality, integrity, and reliability of information transmission, effectively preventing malicious attacks and forged information.
[0056] 3. Reduced maintenance costs: The modular design and remote management technology reduce the complexity and maintenance difficulty of the system; at the same time, the intelligent scheduling and command system can monitor the equipment status and network environment in real time and automatically allocate resources, reducing the cost of manual intervention.
[0057] 4. Improve scheduling efficiency: The intelligent scheduling and command system can monitor the status of each communication device and the network environment in real time, and automatically allocate communication resources according to task requirements and priorities, thereby improving the efficiency and accuracy of communication scheduling.
[0058] 5. Enhanced system stability: By optimizing the network architecture and platform design, and adopting advanced encryption technology and identity authentication mechanisms, the stability and reliability of the system have been enhanced, ensuring the continuity and stability of maritime communication.
[0059] Those skilled in the art will readily understand that the above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A method for integrating marine signal waves, characterized in that, Includes the following steps: S1, System Deployment: Install a marine signal wave integration system on the ship. The marine signal wave integration system includes a signal wave encoding and decoding module, a unified signal transmission platform, and an intelligent scheduling and command system. S2, Equipment Access: Connect the ship's communication equipment to the unified signal transmission platform through the interface module to achieve seamless access and interconnection of various communication devices on the ship. The communication equipment includes shortwave radios and satellite phones. S3, Signal Encoding and Transmission: At the transmitting end of the communication device, the information to be transmitted is converted into a signal wave using a signal wave encoding module, and then transmitted to the receiving end of the corresponding communication device through a unified signal transmission platform; the unified signal transmission platform integrates a signal encryption and authentication module, which is used to encrypt the signals transmitted within the unified signal transmission platform using an encryption algorithm, and to authenticate the identities of each communication device with a preset digital signature, so that the transmitting end device and the receiving end device are matched; S4, Signal Decoding and Restoration: The received signal wave is restored to the original information using the signal wave decoding module at the receiving end of the corresponding communication device, and the information is processed and distributed through the intelligent scheduling and command system; S5, Remote monitoring and management: Authorized users access the unified signal transmission platform through the remote management system and communicate with the intelligent scheduling and command system to remotely monitor and manage the marine signal wave integration system. The remote monitoring and management includes: real-time monitoring of the status and network environment of each communication device, remote allocation of communication resources, and equipment fault diagnosis and repair. The intelligent scheduling and command system is used to monitor the status of each communication device and the network environment in real time, and automatically allocate communication resources according to task requirements and priorities; The intelligent scheduling and command system integrates a fault diagnosis module and a remote support module. When a communication device malfunctions, the fault diagnosis module can quickly locate the fault point, and the remote support module can repair the fault.
2. The marine signal wave integration method according to claim 1, characterized in that, The signal wave encoding module converts the information to be transmitted sent by the communication device's transmitter into a signal wave of a preset frequency band through an encoding algorithm and a conversion module.
3. The marine signal wave integration method according to claim 2, characterized in that, The signal wave decoding module uses a decoding algorithm corresponding to the encoding algorithm to restore the signal wave of the preset frequency band received by the receiving end of the communication device into the original information to be transmitted.
4. The marine signal wave integration method according to claim 1, characterized in that, The unified signal transmission platform supports multiple communication protocols and network environments, enabling seamless access and interconnection of communication devices with different frequency bands and standards.
5. The method for integrating marine signal waves according to claim 1, wherein the authorized user accesses the unified signal transmission platform through a remote management system and communicates with the intelligent scheduling and command system to remotely monitor and manage the marine signal wave integration system in real time.
Citation Information
Patent Citations
Digital network integration system and signal transmission method of residential ship
CN111629067A