Satellite information communication method and system, computer device and medium
By sending communication information to the communication satellite in the Beidou satellite navigation system and returning to the receiving end through the satellite network when the receiving end is not online, the problem of ground equipment relying on cellular networks is solved, and the communication capability of a pure satellite network is realized.
Patent Information
- Application Number
- PCT/CN2025/070313
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-01-05
- Filing Date
- 2025-01-03
- Publication Date
- 2025-07-10
AI Technical Summary
The existing Beidou satellite navigation system ground equipment needs to rely on cellular networks to conduct satellite communication, and it is impossible to achieve effective communication in a cellular network environment.
By sending the communication information from the transmitter to the communication satellite, when the ground supervision system determines that the receiving end is not online, it returns the information to the communication satellite and sends it to the receiving end through the satellite network, and uses the satellite network to realize information transmission, including temporary storage and verification code processing mechanisms.
It realizes satellite information communication between ground equipment in a cellular network environment, solves the problem that ground equipment needs to rely on cellular networks for satellite communication, and realizes the communication capabilities of pure satellite networks.
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Figure CN2025070313_10072025_PF_FP_ABST
Abstract
Description
Satellite information communication method, system, computer equipment and medium
[0001] This application claims priority to the Chinese patent application filed with the China Patent Office on January 5, 2024, with application number 202410022620.9, the entire contents of which are incorporated by reference into this application. Technical Field
[0002] The present application relates to the field of data uploading, and in particular to a satellite information communication method, system, computer equipment and medium. Background Art
[0003] The BeiDou Navigation Satellite System (BDS) is a global satellite positioning and communications system independently developed by my country. It is the third mature satellite navigation system after the US Global Positioning System and the Russian Global Navigation Satellite System. The system consists of a space terminal, a ground terminal, and a user terminal, and can provide high-precision, highly reliable positioning, navigation, and timing services to all types of users around the world, 24 / 7.
[0004] The existing Beidou satellite navigation system also supports certain communication capabilities. Ground equipment with satellite communication capabilities (such as mobile phones with satellite communication capabilities and vehicles with satellite communication capabilities) can respond to communications through the satellite network. However, in the existing satellite communication logic, it is necessary to ensure that the ground equipment is covered by the cellular network before satellite communication can be carried out. Therefore, how to realize a satellite information communication method that does not rely on the cellular network to realize satellite communication of ground equipment has become an urgent problem to be solved. Technical issues
[0005] Based on this, it is necessary to address the above problems and propose a satellite information communication method, system, computer equipment and medium that can realize satellite communication of ground equipment without relying on cellular networks. Technical Solutions
[0006] The present application provides a satellite information communication method, comprising the following steps:
[0007] S1, sending the communication information that the transmitter needs to send to the communication satellite;
[0008] S2, forwarding the communication information acquired by the communication satellite to a set ground monitoring system;
[0009] S3, when the ground monitoring system determines that the receiving end corresponding to the communication information is not in an online state, the communication information is returned to the communication satellite and sent to the receiving end through the satellite network.
[0010] In one embodiment, step S3 specifically includes:
[0011] S3a, when the satellite operating unit provided in the ground monitoring system obtains the communication information forwarded by the communication satellite through the satellite network, forwarding the communication information to the forwarding unit provided in the ground monitoring system through the cellular network;
[0012] S3b, after the forwarding unit obtains the communication information, it temporarily stores the communication information, and when it is determined through the cellular network that the receiving end is not online, returns the communication information to the satellite operating unit through the cellular network;
[0013] S3c, after the satellite operating unit obtains the communication information returned by the forwarding unit, the satellite operating unit returns the communication information to the communication satellite through the satellite network;
[0014] S3d, the communication satellite sends the acquired communication information to the receiving end via a satellite network.
[0015] In one embodiment, after step S3a, the method further includes:
[0016] S3e, after the forwarding unit obtains the communication information, it temporarily stores the communication information, and when it is determined through the cellular network that the receiving end is online, it sends the communication information to the receiving end through the cellular network.
[0017] In one embodiment, step S3b specifically includes:
[0018] S3f, after the forwarding unit obtains the communication information, temporarily storing the communication information;
[0019] S3g, obtaining a communication device currently covered by the same cellular network as the forwarding unit and recording it as a currently online device;
[0020] S3h: When the receiving end is not included in the currently online devices, it is determined that the receiving end is not in an online state, and the communication information is returned to the satellite operating unit through the cellular network.
[0021] In one embodiment, step S3h specifically includes:
[0022] S3i, obtaining the acquisition time node when the communication satellite acquires the communication information;
[0023] S3j, when the forwarding unit determines that the receiving end is not included in the currently online device at the acquisition time node, obtaining a set data pre-storage period, the data pre-storage period is used to temporarily store the communication information, and the acquisition time node is included in the data pre-storage period;
[0024] S3k, when the receiving end is not included in the current online device within the data pre-storage period, it is determined that the receiving end is not in an online state, and the communication information is returned to the satellite operating unit through the cellular network.
[0025] In one embodiment, after step S3, the method further includes:
[0026] S4, when the forwarding unit provided in the ground monitoring system obtains the reply message returned by the receiving end, obtaining a set record satellite table, wherein the record satellite table is used to record the registered satellite equipment;
[0027] S5, when the receiving end exists in the registered satellite table, the forwarding unit returns the reply message to the ground monitoring system, and returns it to the sending end via the ground monitoring system through the satellite network.
[0028] In one embodiment, after step S4, the method further includes:
[0029] S6, when the receiving end does not exist in the registered satellite table, the forwarding unit obtains a preset verification code request and sends the verification code request to the receiving end;
[0030] S7, obtaining the verification code returned by the receiving end, and when the verification code matches the verification code request, returning the reply message to the ground supervision system, and then returning the reply message to the sending end via the ground supervision system through the satellite network.
[0031] The present application also provides a satellite information communication system, comprising:
[0032] A first sending unit is used to send the communication information that the transmitting end needs to send to the communication satellite through the satellite network;
[0033] a forwarding unit, configured to forward the communication information acquired by the communication satellite to a predetermined ground monitoring system via a satellite network;
[0034] The second sending unit is configured to return the communication information to the communication satellite and send it to the receiving end via a satellite network when the ground monitoring system determines that the receiving end corresponding to the communication information is not online.
[0035] A computer device comprises a memory and a processor, wherein the memory stores a computer program, and when the computer program is executed by the processor, the processor performs the following steps:
[0036] S1, sending the communication information that the transmitter needs to send to the communication satellite;
[0037] S2, forwarding the communication information acquired by the communication satellite to a set ground monitoring system;
[0038] S3, when the ground monitoring system determines that the receiving end corresponding to the communication information is not in an online state, the communication information is returned to the communication satellite and sent to the receiving end through the satellite network.
[0039] A computer-readable medium stores a computer program, which, when executed by a processor, causes the processor to perform the following steps:
[0040] S1, sending the communication information that the transmitter needs to send to the communication satellite;
[0041] S2, forwarding the communication information acquired by the communication satellite to a set ground monitoring system;
[0042] S3, when the ground monitoring system determines that the receiving end corresponding to the communication information is not in an online state, the communication information is returned to the communication satellite and sent to the receiving end through the satellite network. Beneficial effects
[0043] The above-mentioned satellite information communication method, system, computer equipment and medium, after sending the communication information that the transmitter needs to send to the communication satellite through the satellite network, forward the communication information to the set ground monitoring system through the satellite network, and when the receiving end is not online in the cellular network, send the communication information to the receiving end through the satellite network, thereby realizing communication transmission between the transmitter and the receiving end only through the satellite network without relying on the cellular network, solving the problem in the prior art that satellite communication can only be achieved when the ground equipment is covered by the cellular network, resulting in the ground equipment being unable to rely on the pure satellite network for communication, and achieving the technical effect that several ground equipment can communicate through the pure satellite network. BRIEF DESCRIPTION OF THE DRAWINGS
[0044] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.
[0045] FIG1 is a flow chart of a satellite information communication method according to an embodiment;
[0046] FIG2 is a flow chart of a satellite information communication method according to another embodiment;
[0047] FIG3 is a flow chart of a satellite information communication method according to another embodiment;
[0048] FIG4 is a flow chart of a satellite information communication method according to another embodiment;
[0049] FIG5 is a flow chart of a satellite information communication method according to another embodiment;
[0050] FIG6 is a flow chart of a satellite information communication method according to another embodiment;
[0051] FIG7 is a schematic diagram showing the connections among a transmitting end, a communication satellite, a ground monitoring system, and a receiving end in one embodiment;
[0052] FIG8 is a schematic structural diagram of a satellite information communication system according to another embodiment;
[0053] FIG9 is a structural block diagram of a computer device in one embodiment. Modes for Carrying Out the Invention
[0054] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0055] Referring to FIG1 , the present application provides a satellite information communication method, comprising the following steps:
[0056] S1, sending the communication information that the transmitter needs to send to the communication satellite;
[0057] As described in the above step S1, the transmitting end 1 sends the communication information input by the user and required to be communicated via satellite signals to the communication satellite via satellite signals. It can be understood that the transmitting end 1 is a ground device with satellite communication function and capable of transmitting satellite signals (such as a mobile phone with satellite communication function and a vehicle with satellite communication function), so that the transmitting end 1 can send the communication information to the communication satellite 2 via the satellite network.
[0058] S2, forwarding the communication information acquired by the communication satellite to a set ground monitoring system;
[0059] As described in step S2 above, the communication satellite forwards the acquired communication information to the set ground monitoring system through the satellite network. It can be understood that the ground monitoring system 3 is actually a ground base station (such as a satellite gateway, a satellite monitoring center, and a satellite operation monitoring center, etc.) connected to each of the communication satellites, and the ground base station itself is also covered in the cellular network, and can realize information transmission through the cellular network.
[0060] S3, when the ground monitoring system determines that the receiving end corresponding to the communication information is not in an online state, returning the communication information to the communication satellite and sending it to the receiving end via the satellite network;
[0061] As described in step S3 above, the ground monitoring system 3 searches for a receiving terminal 4 matching the communication information through the cellular network. When the ground monitoring system 3 cannot find the receiving terminal 4 through the cellular network, it determines that the receiving terminal 4 is not online in the cellular network, and returns the communication information to the communication satellite 2 through the satellite network.
[0062] It is understandable that the receiving end 4 is actually a ground device with satellite communication and cellular network communication functions, and can transmit satellite signals and cellular network signals (such as a mobile phone with satellite communication function and a vehicle with satellite communication function).
[0063] In addition, when the communication satellite 2 obtains the communication information returned by the ground supervision system 3 through the satellite network, the communication satellite sends the communication information to the receiving end 4 through the satellite network. It can be understood that at this time, the information transmission link between the transmitting end 1 and the receiving end 4 is: transmitting end-communication satellite-satellite operation unit-forwarding unit-satellite operation unit-communication satellite-receiving end, thereby achieving the effect of not going through the cellular network, but relying only on the satellite network to execute data transmission between the transmitting end and the receiving end 4.
[0064] Specifically, the connection diagram between the transmitting end 1, the communication satellite 2, the ground monitoring system 3 (satellite operation unit 31 and the forwarding unit 32) and the receiving end 4 can be referred to in Figure 7, and the transmitting end 1, the communication satellite 2, the receiving end 4 and the satellite operation unit 31 are covered in the satellite network, and the receiving end 4 and the forwarding unit 32 are covered in the cellular network, thereby realizing the above-mentioned satellite signal transmission method.
[0065] This embodiment uses the above method to send the communication information that the transmitter needs to send to the communication satellite through the satellite network, forward the communication information to the set ground monitoring system through the satellite network, and when the receiving end is not online in the cellular network, send the communication information to the receiving end 4 through the satellite network, thereby realizing communication transmission between the transmitter and the receiving end only through the satellite network without relying on the cellular network, solving the problem in the prior art that satellite communication can only be achieved when the ground equipment is covered by the cellular network, resulting in the ground equipment being unable to rely on the pure satellite network for communication, and achieving the technical effect that several ground equipment can communicate through the pure satellite network.
[0066] Referring to FIG. 2 , in one embodiment, step S3 specifically includes:
[0067] S3a, when the satellite operating unit provided in the ground monitoring system obtains the communication information forwarded by the communication satellite through the satellite network, forwarding the communication information to the forwarding unit provided in the ground monitoring system through the cellular network;
[0068] S3b, after the forwarding unit obtains the communication information, it temporarily stores the communication information, and when it is determined through the cellular network that the receiving end is not online, returns the communication information to the satellite operating unit through the cellular network;
[0069] S3c, after the satellite operating unit obtains the communication information returned by the forwarding unit, the satellite operating unit returns the communication information to the communication satellite through the satellite network;
[0070] S3d, the communication satellite sends the acquired communication information to the receiving end via a satellite network.
[0071] As described in the above embodiment, a satellite operation unit 31 and a forwarding unit 32 are provided in the ground supervision system 3. It can be understood that the satellite operation unit 31 is used to connect to each communication satellite 2 through a satellite network, and the forwarding unit 32 is used to connect to ground equipment (such as the receiving end 4) that supports the cellular network communication function and the ground supervision system 3 through a cellular network. Then, when the satellite operation unit 31 obtains the communication information returned by the forwarding unit 32 through the cellular network, the communication information is temporarily stored, and when it is determined through the cellular network that the receiving end 4 is not online, the communication information is returned to the satellite operation unit 31 through the cellular network. Thereafter, the satellite operation unit 31 returns the communication information to the communication satellite 2 through the satellite network. At this time, the communication satellite 2 sends the obtained communication information to the receiving end 4 through the satellite network.
[0072] In one embodiment, after step S3a, the following steps are further included:
[0073] S3e, after the forwarding unit obtains the communication information, it temporarily stores the communication information, and when it is determined through the cellular network that the receiving end is online, it sends the communication information to the receiving end through the cellular network.
[0074] As described in the above embodiment, after the satellite operation unit 31 obtains the communication information returned by the forwarding unit 32 via the cellular network, it temporarily stores the communication information and, when it is determined through the cellular network that the receiving terminal 4 is online, sends the communication information to the receiving terminal 4 via the cellular network;
[0075] It can be understood that when the receiving end 4 is online in the cellular network, the information transmission link between the transmitting end 1 and the receiving end 4 is: transmitting end 1-communication satellite-satellite operation system-forwarding system-receiving end, thereby achieving the effect of combining the cellular network and the satellite network to achieve data transmission between the transmitting end 1 and the receiving end 4.
[0076] Referring to FIG3 , in one embodiment, step S3b specifically includes:
[0077] S3f, after the forwarding unit obtains the communication information, temporarily storing the communication information;
[0078] S3g, obtaining a communication device currently covered by the same cellular network as the forwarding unit and recording it as a currently online device;
[0079] S3h: When the receiving end is not included in the currently online devices, it is determined that the receiving end is not in an online state, and the communication information is returned to the satellite operating unit through the cellular network.
[0080] As described in the above embodiment, after the forwarding unit 32 obtains the communication information, it temporarily stores the communication information, obtains the communication device covered by the same cellular network as the forwarding unit 32, and records it as the current online device. It can be understood that the current online device may include a satellite operation unit 31 connected to the forwarding unit 32 via a cellular signal and various ground devices that support both satellite signals and cellular signals (such as the receiving terminal 4). The forwarding unit 32 determines that when the receiving terminal 4 is not included in the current online device, it determines that the receiving terminal 4 is not in an online state, and returns the communication information to the satellite operation unit 31 through the cellular network.
[0081] Referring to FIG4 , in one embodiment, step S3h specifically includes:
[0082] S3i, obtaining the acquisition time node when the communication satellite acquires the communication information;
[0083] S3j, when the forwarding unit determines that the receiving end is not included in the currently online device at the acquisition time node, obtaining a set data pre-storage period, the data pre-storage period is used to temporarily store the communication information, and the acquisition time node is included in the data pre-storage period;
[0084] S3k, when the receiving end is not included in the current online device within the data pre-storage period, it is determined that the receiving end is not in an online state, and the communication information is returned to the satellite operating unit through the cellular network.
[0085] As described in the above embodiment, after acquiring the communication information, the forwarding unit 32 synchronously acquires the acquisition time node when the communication satellite 2 acquires the communication information. Then, when the forwarding unit 32 determines that the receiving terminal 4 is not included in the current online device at the acquisition time node, the forwarding unit 32 acquires the set data pre-storage period. It can be understood that the forwarding unit 32 will temporarily store the communication information during the data pre-storage period. Then, the conveying unit continuously monitors the online status of the receiving terminal 4. When the receiving terminal 4 is not included in the current online device within the data pre-storage period, the sending unit determines that the receiving terminal 4 is not online and returns the communication information to the satellite operation unit 31 through the cellular network.
[0086] Referring to FIG5 , in one embodiment, after step S3, the following steps are further included:
[0087] S4, when the forwarding unit provided in the ground monitoring system obtains the reply message returned by the receiving end, obtaining a set record satellite table, wherein the record satellite table is used to record the registered satellite equipment;
[0088] S5, when the receiving end exists in the registered satellite table, the forwarding unit returns the reply message to the ground monitoring system, and returns it to the sending end via the ground monitoring system through the satellite network.
[0089] As described in the above embodiment, the ground monitoring system 3 pre-stores the registered satellite table. It can be understood that all devices covered in the satellite network (such as the transmitting end 1, the receiving end 4 and the communication satellite 2) are registered in the registered satellite table. Therefore, when the forwarding unit 32 determines that the receiving end 4 exists in the registered satellite table, that is, the receiving end 4 has been registered, the forwarding unit 32 returns the reply message to the ground monitoring system 3, and returns it to the sending end through the satellite network via the ground monitoring system 3, thereby achieving the effect of data transmission through satellite signals.
[0090] Referring to FIG6 , in one embodiment, after step S4, the following steps are further included:
[0091] S6, when the receiving end does not exist in the registered satellite table, the forwarding unit obtains a preset verification code request and sends the verification code request to the receiving end;
[0092] S7, obtaining the verification code returned by the receiving end, and when the verification code matches the verification code request, returning the reply message to the ground supervision system, and then returning the reply message to the sending end via the ground supervision system through the satellite network.
[0093] As described in the above embodiment, when the forwarding unit 32 determines that the receiving end 4 does not exist in the registered satellite table, the forwarding unit 32 obtains the preset verification code request and sends the verification code request to the receiving end 4. It can be understood that since the receiving end 4 does not exist in the registered satellite table, the ground supervision system 3 needs to register the receiving end 4. The ground supervision system 3 obtains the verification code returned by the receiving end 4, and when the verification code matches the verification code request, it is returned to the sending end through the satellite network, thereby realizing data transmission when the receiving end 4 is not registered.
[0094] Referring to FIG8 , the present application also provides a satellite information communication system for satellite communication between a plurality of ground devices, including:
[0095] The first sending unit 10 is used to send the communication information that the transmitting end needs to send to the communication satellite through the satellite network;
[0096] a forwarding unit 20, configured to forward the communication information acquired by the communication satellite to a predetermined ground monitoring system via a satellite network;
[0097] The second sending unit 340 is configured to return the communication information to the communication satellite and send it to the receiving end via a satellite network when the ground monitoring system determines that the receiving end corresponding to the communication information is not online.
[0098] The above-mentioned units are used to implement the above-mentioned satellite information communication system and will not be introduced one by one here.
[0099] Figure 9 shows the internal structure of a computer device in one embodiment. Specifically, the computer device may be a server, including but not limited to high-performance computers and high-performance computer clusters. As shown in Figure 9, the computer device includes a processor, memory, and a network interface connected via a system bus. The memory includes a non-volatile storage medium and internal memory. The non-volatile storage medium of the computer device stores an operating system and may also store a computer program. When executed by the processor, this computer program enables the processor to implement the satellite information communication method. The internal memory may also store a computer program. When executed by the processor, this computer program enables the processor to implement the satellite information communication method.
[0100] In one embodiment, the satellite information communication method provided herein can be implemented as a computer program that can be run on a computer device as shown in Figure 9. The computer device's memory can store various program templates that comprise the satellite information communication system. For example, 10 represents a first transmitting unit, 20 represents a forwarding unit, and 30 represents a second transmitting unit.
[0101] A computer device comprises a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the computer program, the following steps are implemented:
[0102] S1, sending the communication information that the transmitter needs to send to the communication satellite;
[0103] S2, forwarding the communication information acquired by the communication satellite to a set ground monitoring system;
[0104] S3, when the ground monitoring system determines that the receiving end corresponding to the communication information is not in an online state, the communication information is returned to the communication satellite and sent to the receiving end through the satellite network.
[0105] From the above embodiments, it can be seen that the greatest beneficial effect of the present application is that after the communication information that the transmitter needs to send is sent to the communication satellite through the satellite network, the communication information is forwarded to the set ground monitoring system through the satellite network, and when the receiving end is not online in the cellular network, the communication information is sent to the receiving end through the satellite network, thereby realizing communication transmission between the transmitter and the receiving end only through the satellite network without relying on the cellular network, solving the problem in the prior art that satellite communication can only be achieved when the ground equipment is covered in the cellular network, resulting in the ground equipment being unable to rely on a pure satellite network for communication, and realizing the technical effect that several ground devices can communicate through a pure satellite network.
[0106] The above is only a specific implementation method of the present application, but the scope of protection of the present application is not limited thereto. Any changes or replacements that can be easily thought of by any technician familiar with this technical field within the technical scope disclosed in this application should be covered by the scope of protection of the present application.
Claims
1. A satellite information communication method, wherein, The method includes the following steps: S1, sending the communication information to be sent by the transmitting end to a communication satellite; S2, forwarding the communication information obtained by the communication satellite to a set ground supervision system; S3, when the ground supervision system determines that the receiving end corresponding to the communication information is not in an online state, returning the communication information to the communication satellite and sending it to the receiving end through the satellite network.
2. The satellite information communication method according to claim 1, wherein, The specific steps of step S3 include: S3a, when the satellite operation unit set in the ground supervision system obtains the communication information forwarded by the communication satellite through the satellite network, forwarding the communication information to the forwarding unit set in the ground supervision system through the cellular network; S3b, when the forwarding unit obtains the communication information, temporarily storing the communication information, and when it is determined through the cellular network that the receiving end is not in an online state, returning the communication information to the satellite operation unit through the cellular network; S3c, when the satellite operation unit obtains the communication information returned by the forwarding unit, returning the communication information to the communication satellite through the satellite network; S3d, the communication satellite sending the obtained communication information to the receiving end through the satellite network.
3. The satellite information communication method according to claim 1, wherein, After step S3a, the method further includes: S3e, when the forwarding unit obtains the communication information, temporarily storing the communication information, and when it is determined through the cellular network that the receiving end is in an online state, sending the communication information to the receiving end through the cellular network.
4. The satellite information communication method according to claim 2, wherein, The specific steps of step S3b include: S3f, when the forwarding unit obtains the communication information, temporarily storing the communication information; S3g, obtaining the communication devices covered by the same cellular network as the forwarding unit currently, and recording them as the currently online devices; S3h, when the receiving end is not included in the currently online devices, determining that the receiving end is not in an online state, and returning the communication information to the satellite operation unit through the cellular network.
5. The satellite information communication method according to claim 4, wherein, The specific steps of step S3h include: S3i, obtaining the acquisition time node when the communication satellite obtains the communication information; S3j, when the forwarding unit determines that the receiving end is not included in the currently online devices at the acquisition time node, obtaining a set data pre-storage period for temporarily storing the communication information, and the acquisition time node is included in the data pre-storage period; S3k, when the receiving end is not included in the currently online devices during the data pre-storage period, determining that the receiving end is not in an online state, and returning the communication information to the satellite operation unit through the cellular network.
6. The satellite information communication method according to claim 1, wherein, After step S3, the method further includes: S4, when the forwarding unit set in the ground supervision system obtains the reply message returned by the receiving end, obtaining a set satellite record table for recording the registered satellite devices; S5. When the receiving end exists in the recorded satellite list, the forwarding unit returns the reply message to the ground supervision system and returns it to the sending end via the ground supervision system through the satellite network.
7. The satellite information communication method according to claim 6, wherein, After the step S4, the method further includes: S6. When the receiving end does not exist in the recorded satellite list, the forwarding unit obtains a preset verification code request and sends the verification code request to the receiving end; S7. Obtain the verification code returned by the receiving end, and when the verification code matches the verification code request, return the reply message to the ground supervision system and return it to the sending end via the ground supervision system through the satellite network.
8. A satellite information communication system, wherein, The satellite information communication system includes: A first sending unit, configured to send the communication information that the sending end needs to send to a communication satellite through the satellite network; A forwarding unit, configured to forward the communication information obtained by the communication satellite to a set ground supervision system through the satellite network; A second sending unit, configured to return the communication information to the communication satellite and send it to the receiving end through the satellite network when the ground supervision system determines that the receiving end corresponding to the communication information is not in an online state.
9. The satellite information communication method according to claim 1, wherein, The sending end is a ground device with satellite communication function and capable of emitting satellite signals.
10. The satellite information communication method according to claim 1, wherein, The ground supervision system is a ground base station connecting each communication satellite, and the ground base station itself is also covered in the cellular network and can realize information transmission through the cellular network.
11. The satellite information communication method according to claim 1, wherein, The receiving end is a ground device with satellite communication and cellular network communication functions and capable of emitting satellite signals and cellular network signals.
12. The satellite information communication method according to claim 2, wherein, The satellite operation unit is used to connect to each communication satellite through the satellite network, and the forwarding unit is used to connect to ground devices and the ground supervision system that support cellular network communication functions through the cellular network.
13. The satellite information communication method according to claim 2, wherein, The sending end, the communication satellite, the receiving end, and the satellite operation unit are covered in the satellite network, and the receiving end and the forwarding unit are covered in the cellular network.
14. A computer device, the computer device includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein, The processor implements the satellite information communication method according to any one of claims 1 to 13 when executing the computer program.
15. A computer-readable storage medium storing a computer program, wherein, The computer program implements the satellite information communication method according to any one of claims 1 to 13 when executed by the processor.
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