Breakage-proof communication system for ship
By deploying dual-antenna shielding components and wireless routers below the ship's deck, the problem of poor concealment of single antennas is solved, achieving high concealment and redundancy of the communication system and ensuring communication stability and security.
Patent Information
- Application Number
- CN202520196477.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-08
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-08
AI Technical Summary
In existing marine communication devices, single antennas have poor concealment, low communication security and stability, and are easily damaged, resulting in the inability to communicate with the outside world.
The system employs dual-antenna shielding components, each equipped with a tamper-proof antenna that communicates with a wireless router. The wireless router then transmits the signal to the communication equipment. Furthermore, wireless routers are distributed below the ship's deck to increase communication redundancy.
It improves the concealment of the antenna and the security of the communication system, ensuring stable communication even if some antennas or lines are damaged, and supports the simultaneous use of multiple devices.
Smart Images

Figure CN223798359U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to ship technology field especially relates to a marine anti -damage communication system. BACKGROUND
[0002] With the development of shipping industry, the human disturbance events on the sea will occur from time to time. When the human disturbance events aiming at the ship occur, it will often affect people's safety and also cause certain losses. Therefore, the safety shelter cabin against human disturbance is usually arranged on the ship, which is usually arranged below the deck of the ship, so that the user can wait for support or avoid danger in the safety shelter cabin after the ship is subjected to human disturbance. Since the deck shields the satellite terminal, the user in the safety shelter cabin cannot communicate with the outside world through the terminal self-provided antenna, and needs to connect the external antenna installed on the deck of the ship to communicate with the outside world.
[0003] At present, the marine communication device usually adopts a single antenna communication device, the antenna is installed at a position without signal interference on the deck of the ship, and the antenna is connected to the safety shelter cabin through a communication cable, so that the user terminal in the safety shelter cabin can communicate with the outside world through the connection with the communication cable. The installation position of the antenna in the single antenna communication device is usually a conspicuous position, which is easy to be found and damaged by human, so that the user in the safety shelter cabin cannot contact the outside world. SUMMARY
[0004] The utility model provides a marine anti -damage communication system to realize the communication redundancy of the ship communication system by using double antennas, improve the security of communication system, reach the technical effect of guaranteeing the stability of communication.
[0005] According to an aspect of the utility model, a marine anti -damage communication system is provided, which comprises:
[0006] The wireless router arranged in at least two safety shelter cabins under the deck of the ship, and at least two antenna shelter components located on the deck of the ship; the deployment positions of different antenna shelter components are different; wherein,
[0007] Each antenna shelter component is arranged with an anti -damage antenna, and each anti -damage antenna is in communication with at least one wireless router;
[0008] The anti -damage antenna is used for receiving the signal sent by the external signal sending device and transmitting the signal to the wireless router;
[0009] The wireless router is configured to receive the signal transmitted by the tamper-proof antenna, and transmit the signal to a communication device connected to the wireless router, so that the communication device receives the signal based on the signal received by the tamper-proof antenna.
[0010] Optionally, the ship-based tamper-proof communication system further comprises at least one signal repeater connected to each wireless router.
[0011] The first end of the tamper-proof antenna is connected to the first end of the signal repeater through a first communication cable.
[0012] The first end of the tamper-proof antenna is connected to the first end of the signal repeater through a first communication cable.
[0013] The tamper-proof antenna is configured to transmit a signal to the signal repeater through the first communication cable.
[0014] The signal repeater is configured to receive the signal transmitted by the tamper-proof antenna, amplify the signal, and transmit the amplified signal to the wireless router through the second communication cable.
[0015] The wireless router is configured to receive the amplified signal transmitted by the signal repeater, and transmit the amplified signal to a communication device connected to the wireless router.
[0016] Optionally, the number of tamper-proof antennas is less than the number of safe shelters, each tamper-proof antenna is in communication with a wireless router, each wireless router is connected to a signal repeater, and signal repeaters connected to wireless routers in adjacent safe shelters are connected through a third communication cable.
[0017] The signal repeater is further configured to transmit the amplified signal to a signal repeater connected thereto through the third communication cable.
[0018] The signal repeater is configured to receive the signal transmitted by the signal repeater, amplify the signal, and transmit the amplified signal to the wireless router connected thereto, so that the wireless router receives the amplified signal and transmits the amplified signal to a communication device connected to the wireless router.
[0019] Optionally, the wireless router comprises a wireless local area network device and a wired interface.
[0020] The wired port of the communication device is connected to the wired interface through a data line, so that the communication device and the wireless router are in communication.
[0021] The wireless communication module of the communication device is connected with the wireless local area network device, so that the communication device and the wireless router are in communication.
[0022] Optionally, the ship anti-damage communication system further comprises a charging device.
[0023] The charging device is configured to charge at least one of the communication device, the wireless router and the signal repeater.
[0024] The charging device comprises an uninterruptible power supply and a hand-cranking generator.
[0025] Optionally, the deployment positions comprise a regular position and a concealed position; the antenna shelter component comprises a pseudo-lamp structure; and the concealed position comprises an unobstructed position on a bow mast of the ship.
[0026] The technical scheme of the embodiment of the utility model, through the wireless router is arranged in at least two safe shelter cabin under the deck of the ship, and at least two antenna shelter components are arranged on the deck of the ship, and the deployment positions of different antenna shelter components are different. Each antenna shelter component is arranged with an anti-damage antenna, and each anti-damage antenna is in communication with at least one wireless router. The anti-damage antenna receives the signal sent by the external signal sending device, and transmits the signal to the wireless router. The wireless router receives the signal sent by the anti-damage antenna in the antenna shelter component, and sends the signal to the communication device connected with the wireless router, so that the communication device receives the signal based on the anti-damage antenna, solves the problem that the ship communication device in the prior art communicates with the outside world using a single antenna, and the antenna concealment is poor, and the communication safety and stability are low, realizes that the anti-damage antenna is arranged in the antenna shelter component, the antenna concealment is high, and the communication system safety is ensured. At the same time, the communication redundancy of the ship communication system is realized by using double anti-damage antennas, even if one of the antennas or part of the communication line is damaged, the external communication is not affected, the safety of the communication system is further improved, and the effect of ensuring the communication stability is achieved. At the same time, the wireless router is installed in each safe shelter cabin under the deck of the ship, distributed deployment is realized, and multiple communication devices can be used simultaneously.
[0027] It should be understood that the content described in this part is not intended to identify the key or important features of the embodiments of the utility model, and is not used to limit the scope of the utility model. Other features of the utility model will become easy to understand through the following description. BRIEF DESCRIPTION OF DRAWINGS
[0028] In order to make the technical scheme in the embodiments of the present application clearer, the following will briefly introduce the drawings needed in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor based on these drawings.
[0029] Figure 1 is a structural schematic diagram of a marine anti-damage communication system according to the embodiment one of the present application;
[0030] Figure 2 is a structural schematic diagram of a marine anti-damage communication system according to the embodiment one of the present application;
[0031] Figure 3 is a structural schematic diagram of a marine anti-damage communication system according to the embodiment one of the present application. DETAILED DESCRIPTION
[0032] In order to make the technical scheme in the embodiments of the present application clearer, the following will briefly introduce the drawings needed in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor based on these drawings.
[0033] It should be noted that the terms "first", "second", and the like in the description and claims of the present application and the above drawings are used to distinguish similar objects, and do not have to be used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device that includes a series of steps or units does not have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0034] Embodiment one
[0035] Figure 1 is a structural schematic diagram of a marine anti-damage communication system according to the embodiment one of the present application, and the present embodiment can be applied to the case of using the marine anti-damage communication system for communication.
[0036] As Figure 1As shown, the ship anti-destroying communication system provided by the embodiment comprises: wireless routers 1 arranged in at least two safe shelters under the deck of a ship, and at least two antenna shelter components 2 arranged on the deck of the ship; the arrangement positions of different antenna shelter components 2 are different; wherein,
[0037] Each antenna shelter component 2 is arranged with an anti-destroying antenna 3, and each anti-destroying antenna 3 communicates with at least one wireless router 1;
[0038] The anti-destroying antenna 3 is configured to receive signals transmitted by external signal transmitting devices and transmit the signals to the wireless router 1;
[0039] The wireless router 1 is configured to receive signals transmitted by the anti-destroying antenna 3 in the antenna shelter component 2 and transmit the signals to a communication device 4 connected to the wireless router 1, so that the communication device receives signals based on the anti-destroying antenna 3.
[0040] The safe shelter can be a cabin with anti-piracy function, and the safe shelter can be arranged below the deck of the ship. The arrangement positions include a regular position and a concealed position. For example, the regular position can be an open position without shelter at the bow or stern of the ship, or a position in the middle of the ship body. Installing the antenna in the middle of the ship body can ensure the stability of signal transmission and reduce the interference of ship movement on signals. The antenna shelter component includes a pseudo lamp structure, for example, the antenna shelter component can be a lampshade disguised as a lamp structure. The concealed position includes an open position without shelter on the bow mast of the ship. The external signal transmitting device can be a device that transmits signals using an antenna, for example, the external signal transmitting device can include but is not limited to a satellite, a base station, a radio device, etc. The communication device can include but is not limited to a mobile phone, a walkie-talkie, a satellite phone, a tablet, a television device, a broadcast device, etc.
[0041] In the embodiment, different antenna shelter components can be arranged on the deck of the ship, and each antenna shelter component is provided with an anti-destroying antenna 3. A wireless router 1 is arranged in each safe shelter under the deck of the ship, and each anti-destroying antenna 3 communicates with the wireless router 1 in the corresponding safe shelter. The anti-destroying antenna 3 is configured to receive electromagnetic wave signals transmitted by external signal transmitting devices and transmit the signals to the wireless router 1 in communication therewith. After receiving the signals transmitted by the anti-destroying antenna 3 in the antenna shelter component, the wireless router 1 can transmit the signals to a communication device connected thereto, so that the communication device receives signals based on the anti-destroying antenna 3. It should be noted that the transmitted signals can be audio signals, video signals, positioning signals, etc., and the specific type of signals is not limited.
[0042] The technical scheme of the embodiment of the utility model discloses a marine anti - damage communication system including the wireless router of the arrangement in at least two safe shelter cabin under the ship deck and at least two antenna shelter components on the ship deck, and the arrangement position of different antenna shelter components is different. Each antenna shelter component is arranged with the anti - damage antenna, and each anti - damage antenna is communicated with at least one wireless router. The signal of the signal transmission equipment of external signal receiving equipment is received through the anti - damage antenna, and the signal is transmitted to the wireless router, and the signal of the anti - damage antenna in the antenna shelter component is received through the wireless router, and the signal is sent to the communication equipment connected with the wireless router, so that the communication equipment receives the signal based on the anti - damage antenna receiving, solve the single antenna of the prior art marine communication device and the communication with the outside world, and the problem of poor antenna concealment, communication security and stability are low, realize through the arrangement of the anti - damage antenna in the antenna shelter component, and the antenna concealment is high, and the security of communication system is ensured. At the same time, the communication redundancy of marine communication system is realized by using double anti - damage antenna, even if one of the antenna or part of the communication line is destroyed, still does not affect the external communication, further improves the security of communication system, reaches the effect of guaranteeing the stability of communication. At the same time, the wireless router is installed in each safe shelter cabin under the ship deck, realizes distributed deployment, and supports multiple communication equipment simultaneously.
[0043] Figure 2 It is the structure diagram of the marine anti - damage communication system provided by the embodiment of the utility model, as shown in Figure 2 The marine anti - damage communication system further includes: at least one signal repeater 4 connected with each wireless router 1, wherein,
[0044] The first end of the anti - damage antenna 3 is connected with the first end of the signal repeater 4 through the first communication cable;
[0045] The first end of the anti - damage antenna 3 is connected with the first end of the signal repeater 4 through the first communication cable;
[0046] The anti - damage antenna 3 is used to send the signal to the signal repeater 4 through the first communication cable;
[0047] The signal repeater 4 is used to receive the signal sent by the anti - damage antenna 3, amplify the signal, and transmit the amplified signal to the wireless router 1 through the second communication cable;
[0048] The wireless router 1 is used to receive the amplified signal sent by the signal repeater 4, and send the amplified signal to the communication equipment connected with the wireless router 1.
[0049] The first communication cable and the second communication cable are relative, and the first communication cable and the second communication cable can be the same type or model of communication cable or different types or models of communication cable, and are used for transmitting various electrical signals.
[0050] In the embodiment, each wireless router 1 can be connected with at least one signal repeater 4; the number of the connected signal repeaters 4 can be one or multiple. The first end of each tamper-proof antenna 3 is connected with the first end of one signal repeater 4 through the first communication cable, so that the tamper-proof antenna 3 can communicate with the wireless router 1 through the first communication cable and the signal repeater 4. For example, the number of the tamper-proof antennas 3 is two, and the two tamper-proof antennas 3 are connected with one signal repeater 4 respectively, and each signal repeater 4 is connected with the corresponding wireless router 1 through the second communication cable, so that the two tamper-proof antennas 3 can communicate with the wireless router 1.
[0051] Specifically, the tamper-proof antenna 3 can send the signal to the signal repeater 4 connected with the first communication cable through the first communication cable. After receiving the signal sent by the tamper-proof antenna 3, the signal repeater 4 can amplify the signal, and then transmit the amplified signal to the wireless router 1 connected with the second communication cable through the second communication cable. After receiving the amplified signal sent by the signal repeater 4, the wireless router 1 can send the amplified signal to the communication equipment connected with the wireless router 1.
[0052] The technical scheme provided by the utility model can increase the propagation area of the signal of the tamper-proof antenna while ensuring the signal quality, so that a larger area can accurately receive the signal.
[0053] Figure 3 The structure diagram of the marine tamper-proof communication system provided by the embodiment of the utility model is shown in Figure 3 As shown in the figure, the number of the tamper-proof antennas 3 is less than the number of the safety shelters, and each tamper-proof antenna 3 communicates with one wireless router 1; the number of the signal repeaters 4 is the same as the number of the safety shelters; each wireless router 1 is connected with one signal repeater 4; the signal repeaters 4 connected with the wireless routers 1 in the safety shelters at adjacent positions are connected through the third communication cable; wherein,
[0054] The signal repeater 4 is also used for transmitting the amplified signal to the signal repeater 4 connected with the signal repeater 4 through the third communication cable;
[0055] The signal repeater 4 receives the signal transmitted by the signal repeater 4, amplifies the signal, and transmits the amplified signal to the wireless router 1 connected thereto, so that the wireless router 1 receives the amplified signal and transmits the amplified signal to the communication device connected to the wireless router 1.
[0056] It should be noted that the position of each safety shelter in the ship is different, and a wireless router 1 is arranged in each safety shelter, that is, the positions of different wireless routers 1 are also different. If the number of the damage-proof antennas 3 is less than the number of the safety shelters, it means that the signal repeaters 4 connected to the same damage-proof antenna 3 can be connected to wireless routers 1 in different positions, and there will be a certain loss in the signal transmission process, which will cause the problem that the signal in some safety shelters is weak and the signal in some safety shelters is strong. In order to solve this problem, the wireless router 1 in each safety shelter can be connected to a signal repeater 4. The two signal repeaters 4 connected to the wireless routers 1 in the adjacent safety shelters are connected through the third communication cable, so that the signal of the damage-proof antenna 3 can be transmitted and amplified between the signal repeaters 4, thereby effectively ensuring the signal quality of the wireless router 1 in the safety shelter in different positions.
[0057] Specifically, each damage-proof antenna 3 is connected to a signal repeater 4, the signal repeaters 4 can be connected by the third communication cable, and each signal repeater 4 is connected to a wireless router 1. In this way, the damage-proof antenna 3 can transmit the signal to the signal repeater 4 connected thereto, the signal repeater 4 can amplify the received signal, and then transmit the amplified signal to another signal repeater 4 connected thereto. The other signal repeater 4 receives the signal transmitted by the signal repeater 4 connected thereto, can continue to amplify the received signal, and transmits the amplified signal to the wireless router 1 connected thereto, so that the wireless router 1 receives the amplified signal and transmits the amplified signal to the communication device connected to the wireless router 1. If the other signal repeater 4 is connected to another signal repeater 4, the amplified signal can be continuously transmitted to the other signal repeater 4.
[0058] On the basis of the above scheme, the wireless router 1 comprises a wireless local area network device and a wired interface;
[0059] The wired port of the communication device is connected to the wired interface through a data line, so that the communication device and the wireless router 1 communicate with each other; the wireless communication module of the communication device is connected to the wireless local area network device, so that the communication device and the wireless router 1 communicate with each other.
[0060] The wireless local area network device includes, but is not limited to, Bluetooth, WiFi, etc.
[0061] In the embodiment, the user can use a data line to connect the wired port of the communication device with the wired interface of the wireless router 1, so that the communication device communicates with the wireless router 1. Meanwhile, the wireless communication module of the communication device can also be connected with the wireless local area network device of the wireless router 1, so that the communication device communicates with the wireless router 1.
[0062] The technical scheme provided by the utility model provides two external communication modes of wired and wireless, so that the communication is not limited by fixed positions and single cabins, and further ensures that the user can receive external signals.
[0063] Referring to Figure 3 , the marine anti-damage communication system further includes: a charging device 5; wherein,
[0064] The charging device 5 is used for charging at least one of the communication device, the wireless router 1 and the signal repeater 4; the charging device 5 includes an uninterruptible power supply (UPS) and a hand-cranking generator.
[0065] In the embodiment, the uninterruptible power supply can be powered by the distribution box of the control center, so that the uninterruptible power supply can still supply power to at least one device after being cut off, ensuring the normal operation of the communication system. The hand-cranking generator can also be powered by hand, so that the hand-cranking generator charges at least one device and provides temporary power supply for the communication system.
[0066] Embodiment Two
[0067] As an optional embodiment of the above embodiment, in order to make the skilled in the art further clear the technical scheme of the utility model embodiment, a specific application scene example is given. Specifically, reference can be made to the following specific content.
[0068] The marine anti-damage communication system provided by the embodiment of the utility model can be applied to any ship provided with anti-pirate cabins (i.e. safe shelter cabins), and comprises two antenna shelter components, two anti-pirate antennas (i.e. anti-damage antennas), communication cables, multiple signal repeaters, multiple wireless routers, communication equipment, an uninterruptible power supply and a hand-cranking generator. In the embodiment, the two sets of antenna shelter components provided with the anti-pirate antennas can be placed on the deck surface, one set of the antenna shelter components can be placed in a conventional position nearby, and the other set of the antenna shelter components can be placed in a concealed position far away, such as being disguised as a lamp placed on the bow mast. The deployment condition of the anti-pirate antennas meets the condition that there is no signal obstruction around, so as to maximize the signal search strength, such as no other antennas being arranged on the bow mast, the anti-pirate antennas will not be intentionally damaged, and there are no valuable and portable objects in the bow part of the ship, so the area is easy to be ignored by people.
[0069] Considering that the call signal will be attenuated with the increase of distance, the anti-pirate antennas are connected to the signal repeaters through the communication cables, the communication distance is prolonged by increasing the signal repeaters, and the signal quality is ensured. The signal repeaters are connected to each other through the communication cables, and the signal can be transmitted to a farther distance. Each signal repeater is connected to a wireless router, and the wireless routers are uniformly distributed in the anti-pirate cabin.
[0070] In the embodiment, the communication equipment can be connected to the wireless routers in wired and wireless modes, and distributed connection is realized to realize external communication. When the communication equipment communicates externally, the communication equipment can be freely moved in the wireless mode, connected to the wireless routers, and realize external communication. For the communication equipment without a built-in wireless connection function, the wired connection mode can be adopted to realize wired connection with the wireless routers and realize external communication. Meanwhile, the user in the anti-pirate cabin can also be transferred to other cabins provided with the wireless routers to expand the anti-pirate cabin, contact the outside world and wait for support.
[0071] It should be noted that the communication equipment, the signal repeaters and the wireless routers can be powered by the uninterruptible power supply and the hand-cranking generator. When the uninterruptible power supply normally operates, the uninterruptible power supply can be powered by the 220V distribution box of the control center, and the uninterruptible power supply can still maintain power supply for at least 7 days when the external power supply is cut off.
[0072] The technical scheme of the embodiment of the utility model discloses a wireless router is arranged in at least two safe shelters under the deck of the ship, and at least two antenna shelter components are arranged on the deck of the ship, and the arrangement positions of different antenna shelter components are different.Antenna shelter components each have a damage-proof antenna, and each damage-proof antenna communicates with at least one wireless router.The damage-proof antenna receives signals sent by external signal sending equipment, and transmits the signals to the wireless router.The wireless router receives signals sent by the damage-proof antenna in the antenna shelter component, and sends the signals to the communication equipment connected with the wireless router, so that the communication equipment receives signals received by the damage-proof antenna, solves the problem that the single-antenna marine communication device in the prior art communicates with the outside world, has poor antenna concealment, and has low communication security and stability, realizes that the damage-proof antenna is arranged in the antenna shelter component, the antenna has high concealment, and ensures the security of the communication system.At the same time, the double damage-proof antennas are used to realize the communication redundancy of the ship communication system, so that even if one antenna or part of the communication line is damaged, the external communication is not affected, the security of the communication system is further improved, and the effect of ensuring the stability of communication is achieved.At the same time, the wireless router is installed in each safe shelter under the deck of the ship, distributed arrangement is realized, and multiple communication equipment can be used simultaneously.
[0073] It should be noted that the above is only the preferred embodiment of the utility model and the technical principle applied. Those skilled in the art will understand that the utility model is not limited to the specific embodiments described herein, and those skilled in the art can make various obvious changes, re-adjustments and substitutions without departing from the protection scope of the utility model. Therefore, although the utility model has been described in detail through the above embodiments, the utility model is not limited to the above embodiments, and more other equivalent embodiments can be included without departing from the utility model concept, and the scope of the utility model is determined by the appended claims.
Claims
1. A tamper-resistant communication system for a ship, characterized in that The marine anti-destroying communication system comprises: a plurality of wireless routers arranged in at least two safe shelters arranged under a deck of a ship, and a plurality of antenna shelter components arranged on the deck of the ship; the antenna shelter components are arranged at different positions; wherein, each of the antenna shelter components is arranged with an anti-destroying antenna, and each of the anti-destroying antennas is in communication with at least one of the wireless routers; the anti-destroying antenna is configured to receive a signal transmitted by an external signal transmitting device and transmit the signal to the wireless router; the wireless router is configured to receive the signal transmitted by the anti-destroying antenna in the antenna shelter component and transmit the signal to a communication device connected to the wireless router, so that the communication device receives the signal based on the signal received by the anti-destroying antenna.
2. The anti-tamper communication system for a marine vessel of claim 1, wherein, The marine anti-destroying communication system further comprises at least one signal repeater connected to each of the wireless routers; wherein, a first end of the anti-destroying antenna is connected to a first end of the signal repeater through a first communication cable; a first end of the wireless router is connected to a second end of the signal repeater through a second communication cable; the anti-destroying antenna is configured to transmit a signal to the signal repeater through the first communication cable; the signal repeater is configured to receive the signal transmitted by the anti-destroying antenna and amplify the signal, and transmit the amplified signal to the wireless router through the second communication cable; the wireless router is configured to receive the amplified signal transmitted by the signal repeater and transmit the amplified signal to the communication device connected to the wireless router.
3. The anti-tamper communication system for a marine vessel of claim 2, wherein, The number of the anti-destroying antennas is less than the number of the safe shelters, each of the anti-destroying antennas is in communication with one of the wireless routers, each of the wireless routers is connected to one of the signal repeaters, and the signal repeaters connected to the wireless routers in the safe shelters at adjacent positions are connected through a third communication cable; wherein, the signal repeater is further configured to transmit the amplified signal to the signal repeater connected thereto through the third communication cable; the signal repeater is configured to receive the signal transmitted by the signal repeater, amplify the signal, and transmit the amplified signal to the wireless router connected thereto, so that the wireless router receives the amplified signal and transmits the amplified signal to the communication device connected to the wireless router.
4. The anti-tamper communication system for a marine vessel of claim 1, wherein, The wireless router comprises a wireless local area network device and a wired interface; a wired port of the communication device is connected to the wired interface through a data line, so that the communication device and the wireless router are in communication; a wireless communication module of the communication device is connected to the wireless local area network device, so that the communication device and the wireless router are in communication.
5. The anti-tamper communication system for a marine vessel of claim 1, wherein, The marine anti-destroying communication system further comprises a charging device; wherein, the charging device is configured to charge at least one of the communication device, the wireless router, and the signal repeater; the charging device comprises an uninterruptible power supply and a hand-cranking generator.
6. The anti-tamper communication system for a marine vessel of claim 1, wherein, The deployment positions include a regular position and a concealed position; the antenna shelter component includes a pseudo-lamp structure; the concealed position includes an unobstructed position on a bow mast of the ship.