Red arrow 11 antitank missile simulation terminal
By designing the Red Arrow 11 anti-tank missile simulation terminal, using full-size simulation implementation and multi-optical laser technology, the problem of lack of simulation equipment in military training was solved, efficient training effects and result recording was achieved, and multi-angle launch and acousto-optical effect simulation was supported.
Patent Information
- Application Number
- CN202510562975.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2025-08-01
AI Technical Summary
The troops lack simulated training equipment specifically for training anti-tank missiles, resulting in poor training results and difficult to record results.
A Red Arrow 11 anti-tank missile simulation terminal is designed, adopting a 1:1 full-size, full-weight simulation installation, equipped with a laser transmitter, laser receiver, positioning module and communication module, combined with a pitch adjustment mechanism and an electronic periscope to achieve accurate simulation of launch operations and result recording.
It improves the authenticity and recordability of training, solves the problems related to hit rate and distance, supports multi-angle emission and sound-optical smoke effect simulation, and realizes real-time information interaction with the control background.
Smart Images

Figure CN120403335A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of military training equipment, and particularly relates to a simulation terminal for Hongjian-11 anti-tank missiles. Background Art
[0002] Currently, there is no dedicated simulation training equipment for training anti-tank missiles in actual combat in the military. In order to enable the military to have better training and view training results, a simulation terminal for daily training of Hongjian-11 anti-tank missiles and recording results is provided. Summary of the Invention
[0003] The purpose of the present invention is to solve the above problems. The present application proposes a simulation terminal for Hongjian-11 anti-tank missiles. The simulation terminal adopts a 1:1 full-size and full-weight simulation of the actual equipment, and the launch operation process is consistent with the actual equipment, which can better help military personnel train the operation process of this equipment.
[0004] To achieve the above purpose, the present invention provides the following technical solutions: A simulation terminal for Hongjian-11 anti-tank missiles, including a triangular bracket, a control host, and a battery. A base is provided above the triangular bracket, a pitch adjustment mechanism is provided above the base, a sight and an adjustment handle are provided on the pitch adjustment mechanism, a simulation host is provided above the pitch adjustment mechanism, a simulation missile is provided above the simulation host through a bracket, and the simulation missile includes a hit and launch effect device; A laser transmitter, a laser receiver, a positioning module, and a communication module are provided inside the simulation host, a damage indicator light is provided outside the simulation host, and the laser emission port of the laser transmitter is located outside the simulation host; The control host selects an MCU, and the MCU is respectively connected to a short-range infrared, Zigbee1, Zigbee2, and a firing trigger, receives signals and issues commands. The MCU is connected to a hit delay detection trigger, a sound and light bomb detection trigger, and an indicator light, and sends instructions. The battery powers the MCU.
[0005] Further: The sight adopts an electronic periscope.
[0006] Further: The laser transmitter uses 980 laser emission and different laser modules are used for long, medium, and short-range lasers.
[0007] Further: The Zigbee1 is connected to a single-soldier Zigbee module; the Zigbee2 is connected to the simulation missile in a wireless connection manner.
[0008] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. It is provided with a pitch adjustment mechanism, which can realize the pitch and lateral adjustment of the laser transmitter and is easy to operate; 2. The laser emitter uses 980 laser emission, multi-optical path laser emission and reception processing technology, effectively solving the prominent problem that the shooting hit rate is proportional to the target distance due to the far and near size difference of the laser spot. 3. Through the 4G module or 5G module and the communication base station, the collection information can be uploaded and the instructions can be issued to the control background. The downlink includes exercise parameter configuration instructions, guidance and control instructions, ammunition supply, key issuance, etc.; the uplink includes heartbeat instructions, event message instructions, on-site guidance and other control commands. 4. The set sound and light bomb detection and trigger module can simulate the exposure signs when the weapon is fired through the sound and light bomb; it can simulate the sound, light and smoke effects after the equipment is struck by various effective weapons such as direct aiming, indirect aiming and ground explosion. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only for more clearly illustrating the technical solutions of the embodiments of the present invention or the prior art. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0010] Figure 1 [[ID= / / translate]] is a schematic diagram of the overall structure of the present invention; Figure 2 is a connection diagram of the control host MCU of the present invention; Wherein: 1 - tripod, 2 - base, 3 - pitch adjustment mechanism, 31 - sight, 32 - adjustment handle, 4 - laser emission port, 5 - damage indicator light, 6 - simulation bomb, 7 - simulation host. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0011] In order to enable those skilled in the art to better understand and implement the technical solutions of the present invention, the following further illustrates the present invention with specific embodiments. However, the specific embodiments cited are only for the illustration of the present invention and not for the limitation of the present invention.
[0012] As Figure 1 shown, a Hongjian 11 anti-tank missile simulation terminal includes a triangular bracket 1, a control host, and a battery. A base 2 is provided above the triangular bracket 1. A pitch adjustment mechanism 3 is provided above the base 2. A sight 31 and an adjustment handle 32 are provided on the pitch adjustment mechanism 3. A simulation host 7 is provided above the pitch adjustment mechanism 3. A simulation bomb 6 is provided above the simulation host 7 through a bracket. The simulation bomb 6 includes a hit and launch effect device. A handle for hand-held and a bomb throwing port are provided on the simulation bomb 6. The simulation host 7 is provided with a laser emitter, a laser receiver, a positioning module and a communication module. A damage indicator light 5 is provided on the outer side of the simulation host, and the laser emission port 4 of the laser emitter is located on the outer side of the simulation host.
[0013] The control host selects an MCU. As Figure 2 shown, the MCU is respectively connected to short-range infrared, Zigbee1, Zigbee2, and firing trigger, receives signals and issues commands. The MCU is connected to hit delay detection trigger, sound and light bomb detection trigger and indicator light, and sends instructions. The battery powers the MCU.
[0014] The laser emitter emits 980 lasers and uses different laser modules for long, medium and short-range lasers to solve the problem that when there is one beam of laser, it is large at a long distance and small at a short distance, the hit probability at a short distance is relatively small, and the hit probability at a long distance is relatively large.
[0015] The aiming scope 31 adopts an electronic periscope. After being powered on, the magnification of the periscope can be adjusted arbitrarily, and targets at different distances can be clearly displayed.
[0016] The simulation bullet 6 imitates the actual installed weight, is detachable and convenient to carry. It contains a pyrotechnic trigger mechanism hit and launch effect device, which realistically simulates the sound and light effects during actual installation launch and the smoke effect when being hit.
[0017] The triangular bracket 1 utilizes the stability of the triangle to stably support the entire device without shaking.
[0018] The pitch adjustment mechanism 3 cooperates with the aiming scope 31 to search, discover and track targets. The angle is adjusted through the adjustment handle 32 to ensure that the strike effect meets the requirements.
[0019] Zigbee1 is connected to the individual Zigbee module and bound to the individual equipment to prevent other personnel from using it randomly; Zigbee2 is connected to the simulation bullet by a wireless connection method to trigger the strike sound, light and on-site smoke.
[0020] The damage indicator light 5 is used for display after the control host receives damage information, and the light plays a role in indicating being hit.
[0021] The communication of the present invention uses a 4G module or a 5G module to connect to a 4G base station or a 5G base station, which is used for functions such as network access request, configuration, forwarding, etc., to realize the up and down commands with the control background. The commands cover configuration commands issued by the background, guidance and control commands, damage model update data, RTK calibration messages, etc., and up-going configuration request commands, heartbeat commands, event message commands, on-site guidance and other control commands.
[0022] The structure of the present invention is simple, and the simulation projectile is restored 1:1 with the actual equipment, meeting the needs of daily training. The design of the pitch adjustment mechanism realizes the pitch and lateral adjustment of the laser emitter, enabling multi-angle emission. The laser emitter uses 980 laser emission, multi-optical path laser emission and reception processing technology, effectively solving the prominent problem that the shooting hit rate is proportional to the target distance due to the far and near size difference of the laser spot. Through the 4G module or 5G module and the communication base station, the collection information can be uploaded and the instructions can be sent down to the control background. The downlink includes exercise parameter configuration instructions, guidance control instructions, ammunition supply, key distribution, etc.; the uplink includes heartbeat instructions, event message instructions, on-site guidance and other control commands. The set sound and light bomb detection trigger module can simulate the exposure signs when the weapon is fired through the sound and light bomb. It can simulate the sound, light and smoke effects after the equipment is struck by various effective weapons such as direct aiming, indirect aiming and ground explosion.
[0023] The content not described in detail in the present invention is prior art.
[0024] The above are only the preferred embodiments of the present invention, and are not limited to what is described in the specification and implementation manners. Therefore, any equivalent changes or modifications made according to the structure, features and principles described in the scope of the patent application of the present invention shall be included in the scope of the patent application of the present invention.
Claims
1. A Hongjian-11 anti-tank missile simulation terminal, comprising a triangular bracket (1), a control host, and a battery, characterized in that: Above the triangular support (1) is provided with a base (2), above the base (2) is provided with a pitching adjustment mechanism (3), on the pitching adjustment mechanism (3) are provided with a sight (31) and an adjustment handle (32), above the pitching adjustment mechanism (3) is provided with a simulation host (7), above the simulation host (7) is provided with a simulated bullet (6) through a bracket, and the simulated bullet (6) includes a hit and firing effect device; Inside the simulation host (7) are provided with a laser emitter, a laser receiver, a positioning module and a communication module, outside the simulation host is provided with a damage indicator light (5), and the laser emission port (4) of the laser emitter is located outside the simulation host; The control host selects an MCU, the MCU is respectively interconnected with short-range infrared, Zigbee1, Zigbee2, and a firing trigger to receive signals and issue commands, the MCU is connected to a hit delay detection trigger, a sound and light bullet detection trigger and an indicator light, and sends instructions, and the battery powers the MCU.
2. The simulation terminal of a Hongjian 11 anti-tank missile according to claim 1, wherein: The sight (31) adopts an electronic periscope.
3. A simulation terminal for the Hongjian-11 anti-tank missile according to claim 1, characterized in that: The laser emitter emits 980 laser, and different laser modules are used for long, medium and short range lasers.
4. A simulation terminal for the Hongjian-11 anti-tank missile according to claim 1, characterized in that: Zigbee1 is connected to a single soldier Zigbee module; Zigbee2 is connected to the simulated bullet (6) by a wireless connection method.