Individual combat satellite communication equipment with automatic alarm function
By designing individual combat satellite communication equipment with automatic alarm function, the problems of communication equipment loss of control and untimely rescue in individual combat are solved, and timely rescue and mission safety are achieved.
Patent Information
- Application Number
- CN202422239220.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-09-12
AI Technical Summary
When a soldier is fighting alone, conventional communication means are easily affected by the field environment and cannot reflect their own situation in a timely manner, making it difficult for the control center to provide timely rescue. In addition, loss of control of communication equipment may lead to leaks or interfere with mission decisions.
A single-soldier combat satellite communication device with automatic alarm function is designed. Physiological parameters and distance information are collected through wearable components. Ultrasonic waves trigger the satellite communication module to automatically send back alarm information, and the remote control center can destroy the secrets or revoke the usage permissions.
It improves the timeliness and accuracy of rescue when individual soldiers encounter danger, ensures the safety and concealment of operations, reduces combat casualties, and ensures the safety of the mission.
Smart Images

Figure CN223347409U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of satellite communications, in particular to a single-soldier combat satellite communications device with an automatic alarm function. Background Art
[0002] In today's wartime landscape, individual combat operations, such as special reconnaissance and special operations, remain an indispensable component of our military's operations. Conventional communication methods are susceptible to the complex and ever-changing field environment during individual combat operations. Satellite communications, however, are increasingly widely used due to their wide coverage, high system transmission reliability, long communication distance, and independence from ground environmental conditions. Equipping individual soldiers with satellite communication equipment has become essential. However, individual combat operations are subject to numerous uncertainties and present a high degree of risk. When faced with danger, individual soldiers struggle to promptly report their situation, making it difficult for the control center to implement timely rescue measures based on their specific circumstances. Furthermore, in combat environments such as special operations and special reconnaissance, the risk of injury or capture behind enemy lines can lead to loss of control of individual communication equipment, potentially leaking information or interfering with the control center's mission decisions.
[0003] Therefore, there is an urgent need to research a single-soldier combat satellite communication equipment with automatic alarm function, which can judge the physical condition of the individual soldier and send back distress information in time, provide conditions for the command and control center to carry out rescue in time, reduce combat casualties, and can destroy the equipment or revoke the use authority in time to ensure mission safety. Utility Model Content
[0004] The purpose of the utility model is to provide a satellite communication device for individual combat that can judge the physical condition of an individual soldier, send back distress information in a timely manner, provide conditions for the command and control center to carry out rescue in a timely manner, reduce combat casualties, and can remotely destroy the encryption or remove the use authority of the equipment in a timely manner to ensure the safety of the mission.
[0005] The technical solution for achieving the purpose of the utility model is: a satellite communication device for individual combat with an automatic alarm function, comprising a wearable component, an external configuration module, an ultrasonic receiving and processing module, a satellite communication module, and a remote control center, wherein the wearable component comprises an information processor, a sensor detection module, an emergency one-button alarm module, a power module, and a charging interface;
[0006] The wearable component collects physiological parameter information of the wearer and the distance parameter between the wearer and the wearable component, performs threshold judgment on the physiological parameters and distance parameters, and triggers the satellite communication module through ultrasonic waves to automatically send an alarm back when the judgment threshold is exceeded;
[0007] The external configuration module is used to configure the detection threshold parameters of the wearable component and set the threshold values of the physiological parameters and the distance alarm;
[0008] The information processor is used to receive and process information from each module connected to it, including the distance and wearer's physiological parameter data collected by the sensor detection module, the configuration data of the external configuration module and the alarm command of the emergency one-button alarm module, and trigger the ultrasonic transmitter;
[0009] The sensor detection module is used to use sensors to collect corresponding parameter information, including human physiological parameters and distance parameters between the wearable device and the satellite communication device;
[0010] The emergency one-button alarm module is used to manually trigger a one-button alarm in special emergency situations where the sensor detection threshold is not reached;
[0011] The ultrasonic receiving and processing module is used to receive and process ultrasonic signals, and trigger the satellite communication module to automatically send back alarm information;
[0012] The satellite communication module is used to send alarm information to the remote control center and receive information sent by the remote control center;
[0013] The power module uses a rechargeable lithium battery to provide power for the information processor, sensor detection module, emergency one-button alarm module, ultrasonic receiving and processing module and satellite communication module;
[0014] The charging interface is used to charge the rechargeable lithium battery in the power module;
[0015] The remote control center is used to receive the alarm information sent by the wearable component, display the alarm information, and send a decryption or permission removal operation to the wearable component to ensure the safety of the operation.
[0016] Furthermore, the information processor includes a signal acquisition module, a processor and an ultrasonic transmitter;
[0017] The signal acquisition module is used to receive data detected by the sensor detection module and send signals to the processor;
[0018] The processor is used to receive data from the signal acquisition module;
[0019] The ultrasonic transmitter is used to transmit alarm information through ultrasonic communication, and is composed of ultrasonic transmitters of two frequency bands, corresponding to physiological parameter alarms and equipment mismanagement alarms respectively.
[0020] Furthermore, the sensor detection module includes a physiological parameter sensor and a distance sensor;
[0021] The physiological parameter sensor is used to collect human physiological parameters, including blood pressure, pulse, respiration and body temperature parameters;
[0022] The distance sensor is used to collect distance parameters between the wearable device and the satellite communication device.
[0023] Furthermore, the external configuration module includes a liquid crystal display and button modification, is connected to the wearable component through an external interface, modifies the detection threshold parameters of the wearable component in a wired manner, and sets the threshold values of physiological parameters and distance alarms.
[0024] Furthermore, the external configuration module uses an external module to reduce the weight and volume of the wearable component.
[0025] Furthermore, the emergency one-button alarm module includes a personal one-button alarm function and a device one-button alarm function;
[0026] The personal one-button alarm function is used to manually trigger an alarm in an emergency when the wearer's physiological parameter data does not reach the sensor detection threshold;
[0027] The one-button alarm function of the device is used to manually issue an alarm when the wearable component is about to be lost in an emergency.
[0028] Furthermore, the alarm information refers to the wearable component automatically sending an alarm to the remote control center that the wearer's vital signs are abnormal or the distance between the wearable component and the holder exceeds a specified distance. The alarm content includes the current location information of the wearable component to facilitate rescue by the remote control center.
[0029] Furthermore, the wearable component uses ultrasonic waves beyond the audible range of the human ear as a signal to trigger an alarm.
[0030] Compared with the existing technology, the present invention has the following significant advantages: (1) the present invention can automatically trigger the alarm feedback device by collecting the wearer's physiological parameter information and the distance information between the wearer and the communication device during individual reconnaissance and combat, which makes it convenient for the command center to perform rescue operations on individual soldiers performing tasks, thereby improving the timeliness and accuracy of rescue when individual soldiers encounter danger; (2) when it is detected that the distance between the communication device and the holder is too large and the device is at risk of losing control, the remote control center can destroy the device or revoke the use permission to ensure the safety of the operation; (3) when the device holder determines that the communication device is at risk of being controlled by others, he or she can manually trigger a one-button alarm, thereby improving the safety of the device holder and the communication device; (4) the wearable component of the device adopts a dustproof, rainproof, corrosion-resistant and high-temperature resistant design to meet the needs of special operations; (5) the use of ultrasonic waves beyond the audible range of the human ear as a signal for alarm triggering has the characteristics of being more concealed and safer, thereby ensuring the concealment and safety of individual combat missions. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 The utility model is a structural block diagram of a satellite communication device for individual combat with an automatic alarm function.
[0032] Figure 2 The present invention is a schematic diagram of the working process of a satellite communication device for individual combat with an automatic alarm function provided in an embodiment of the present invention.
[0033] Figure 3 It is a structural schematic diagram of a wearable component in a single-soldier combat satellite communication device with an automatic alarm function provided in an embodiment of the present utility model. DETAILED DESCRIPTION
[0034] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0035] Combine Figure 1 The utility model provides a satellite communication device for individual combat with an automatic alarm function, comprising a wearable component 1, an external configuration module 2, an ultrasonic receiving and processing module 6, a satellite communication module 7, and a remote control center 10. The wearable component 1 includes an information processor 3, a sensor detection module 4, an emergency one-button alarm module 5, a power module 8, and a charging interface 9.
[0036] The wearable component 1 collects the wearer's physiological parameter information and the distance parameter between the wearer and the wearable component 1, and performs threshold judgment on the physiological parameters and the distance parameter. When the judgment threshold is exceeded, the satellite communication module 7 is triggered by ultrasonic waves to automatically send an alarm back;
[0037] The external configuration module 2 is used to configure the detection threshold parameters of the wearable component 1 and set the threshold values of the physiological parameters and the distance alarm;
[0038] The information processor 3 is used to receive and process information from each module connected to it, including the distance and wearer's physiological parameter data collected by the sensor detection module 4, the configuration data of the external configuration module 2 and the alarm command of the emergency one-button alarm module 5, and trigger the ultrasonic emission according to the relevant information;
[0039] The sensor detection module 4 is used to use sensors to collect corresponding parameter information, including human physiological parameters and distance parameters between the wearable device and the satellite communication device;
[0040] The emergency one-button alarm module 5 is used to manually trigger a one-button alarm in special emergency situations where the sensor detection threshold is not reached;
[0041] The ultrasonic receiving and processing module 6 is used to receive and process ultrasonic signals, triggering the satellite communication module 7 to automatically send back alarm information;
[0042] The satellite communication module 7 is used to send alarm information to the remote control center 10 and receive control information sent by the remote control center 10;
[0043] The power module 8 uses a rechargeable lithium battery to provide power for the information processor 3, the sensor detection module 4, the emergency one-button alarm module 5, the ultrasonic receiving and processing module 6 and the satellite communication module 7;
[0044] The charging port 9 is used to charge the rechargeable lithium battery in the power module 8;
[0045] The remote control center 10 is used to receive the alarm information sent by the wearable component 1, display the alarm information, and send a decryption or permission removal operation to the wearable component 1 to ensure the safety of the operation.
[0046] As a specific example, the information processor 3 includes a signal acquisition module, a processor and an ultrasonic transmitter;
[0047] The signal acquisition module is used to receive and process the data detected by the sensor detection module 4, and send the processed signal to the processor for processing;
[0048] The processor is used to receive data from the signal acquisition module and perform further processing;
[0049] The ultrasonic transmitter is used to transmit alarm information through ultrasonic communication, and is composed of ultrasonic transmitters of two frequency bands, corresponding to physiological parameter alarms and equipment mismanagement alarms respectively.
[0050] As a specific example, the sensor detection module 4 includes a physiological parameter sensor and a distance sensor;
[0051] The physiological parameter sensor is used to collect human physiological parameters, including blood pressure, pulse, respiration and body temperature parameters;
[0052] The distance sensor is used to collect distance parameters between the wearable device and the satellite communication device.
[0053] As a specific example, the external configuration module 2 includes a liquid crystal display and button modification, is connected to the wearable component 1 through an external interface, modifies the detection threshold parameters of the wearable component 1 through a wired manner, and sets the threshold values of physiological parameters and distance alarms.
[0054] As a specific example, the external configuration module 2 uses an external module to reduce the weight and volume of the wearable component 1 and ensure that the parameters are not easily changed.
[0055] As a specific example, the emergency one-key alarm module 5 includes a personal one-key alarm function and a device one-key alarm function;
[0056] The personal one-button alarm function is used to manually trigger an alarm in an emergency when the wearer's physiological parameter data does not reach the sensor detection threshold;
[0057] The one-button alarm function of the device is used to manually issue an alarm when the wearable component 1 is about to be lost in an emergency.
[0058] As a specific example, the alarm information refers to the wearable component 1 automatically sending an alarm to the remote control center 10 indicating abnormal vital signs of the person wearing the device or that the distance between the wearable component 1 and the holder exceeds a specified distance. The alarm content includes the current location information of the wearable component 1, which facilitates the remote control center 10 to carry out rescue.
[0059] As a specific example, the wearable component 1 adopts a dustproof, rainproof, corrosion-resistant, and high-temperature resistant design to meet the needs of special operations.
[0060] As a specific example, the wearable component 1 uses ultrasonic waves beyond the audible range of the human ear as a signal to trigger an alarm, so as to ensure the concealment and safety of individual combat missions.
[0061] The present invention will be described in further detail below with reference to the accompanying drawings and specific embodiments. Example
[0062] Combine Figure 1This embodiment provides a single-soldier combat satellite communication device with an automatic alarm function, including a wearable component 1, an external configuration module 2, an ultrasonic receiving and processing module 6, a satellite communication module 7, and a remote control center 10, wherein the wearable component 1 includes an information processor 3, a sensor detection module 4, an emergency one-button alarm module 5, a power module 8, and a charging interface 9;
[0063] The wearable component 1 collects the wearer's physiological parameter information and the distance parameter between the wearer and the wearable component 1, and performs threshold judgment on the physiological parameters and the distance parameter. When the judgment threshold is exceeded, the satellite communication module 7 is triggered by ultrasonic waves to automatically send an alarm back;
[0064] Figure 2 This is a working diagram of the individual combat satellite communication equipment with automatic alarm function provided in this embodiment. Figure 2 As shown, the wearable component 1 of the individual combat satellite communication device with automatic alarm function has three sub-functions: key parameter modification, sensor detection, and emergency one-button alarm. The external configuration module 2 is used to set the judgment parameters such as the human physiological parameter alarm threshold, the device distance alarm threshold, and the parameter abnormality duration. The sensor detection module 4 respectively collects the wearer's physiological parameter information and the distance information between the wearer and the communication device held by the wearer, and uses the collected information to perform real-time comparison with the configured judgment parameters. If the wearer's physiological parameters are abnormal or the device exceeds the controllable distance of the wearer, the corresponding frequency of the ultrasonic wave is automatically triggered to trigger the satellite communication device held by the wearer to alarm. The wearer can also manually use the emergency one-button to trigger the wearable component 1 to emit an ultrasonic signal of a specified frequency to alarm.
[0065] For abnormal physiological parameters and abnormal equipment beyond the controllable range of the wearer, the ultrasonic frequency emitted by the wearable device is different, and the alarm information sent back by the satellite communication device is also different. For abnormal physiological parameters of the wearer, it is mainly used for the remote control center 10 to carry out rescue in time based on the alarm information and positioning information; for the alarm of equipment beyond the controllable range of the wearer, the remote control center 10 determines whether the equipment is out of control based on the number of alarms, the duration of the alarms, etc., and promptly remotely destroys the password of the out-of-control device or cancels the use permission to ensure the safety of the operation;
[0066] The emergency one-button alarm module 5 includes personal alarm and device alarm, which is used for the holder to trigger the alarm when the situation is urgent but the relevant parameters have not reached the detection threshold.
[0067] Figure 3 This is a schematic diagram of the exploded structure of a wearable component 1 of a satellite communication device for individual combat with an automatic alarm function as described in the present invention. Figure 3As shown, the wearable component 1 of the individual combat satellite communication equipment with automatic alarm function provided in this embodiment includes an information processor 3, a sensor detection module 4, an emergency one-button alarm module 5, an external configuration module 2 and a charging interface 9;
[0068] The emergency one-button alarm module 5 has different operation modes, such as long pressing for 3 seconds for personal alarm and pressing three times in a row for device alarm;
[0069] The external configuration module 2 and the charging interface 9 are used to connect to the external configuration module via a wired manner to set the decision threshold parameters in the system and charge the rechargeable lithium battery in the device;
[0070] The wearable component 1 is designed to be dustproof, rainproof, corrosion-resistant, and high-temperature resistant to meet complex and changeable combat conditions.
[0071] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A satellite communication device for individual combat with an automatic alarm function, characterized in that: The device comprises a wearable component (1), an external configuration module (2), an ultrasonic receiving and processing module (6), a satellite communication module (7) and a remote control center (10), wherein the wearable component (1) comprises an information processor (3), a sensor detection module (4), an emergency one-button alarm module (5), a power module (8) and a charging interface (9); The wearable component (1) collects physiological parameter information of the wearer and the distance parameter between the wearer and the wearable component (1), performs threshold judgment on the physiological parameter and the distance parameter, and triggers the satellite communication module (7) through ultrasonic waves to automatically send back an alarm when the judgment threshold is exceeded; The external configuration module (2) is used to configure the detection threshold parameters of the wearable component (1) and set the threshold values of the physiological parameters and the distance alarm; The information processor (3) is used to receive and process information from each module connected thereto, including distance and wearer physiological parameter data collected by the sensor detection module (4), configuration data of the external configuration module (2) and the alarm command of the emergency one-button alarm module (5), and trigger the ultrasonic transmitter; The sensor detection module (4) is used to use sensors to collect corresponding parameter information, including human physiological parameters and distance parameters between the wearable device and the satellite communication device; The emergency one-button alarm module (5) is used to manually trigger a one-button alarm in a special emergency situation where the sensor detection threshold is not reached; The ultrasonic receiving and processing module (6) is used to receive and process ultrasonic signals, and trigger the satellite communication module (7) to automatically transmit warning information back; The satellite communication module (7) is used to send alarm information to the remote control center (10) and receive information sent by the remote control center (10); The power module (8) uses a rechargeable lithium battery to provide power for the information processor (3), the sensor detection module (4), the emergency one-button alarm module (5), the ultrasonic receiving and processing module (6), and the satellite communication module (7); The charging interface (9) is used to charge the rechargeable lithium battery in the power module (8); The remote control center (10) is used to receive the alarm information sent by the wearable component (1), display the alarm information, and send a decryption or permission removal operation to the wearable component (1) to ensure operational safety.
2. The individual combat satellite communication equipment with automatic alarm function according to claim 1 is characterized in that: The information processor (3) includes a signal acquisition module, a processor and an ultrasonic transmitter; The signal acquisition module is used to receive data detected by the sensor detection module (4) and send a signal to the processor; The processor is used to receive data from the signal acquisition module; The ultrasonic transmitter is used to transmit alarm information through ultrasonic communication, and is composed of ultrasonic transmitters of two frequency bands, corresponding to physiological parameter alarms and equipment mismanagement alarms respectively.
3. The individual combat satellite communication equipment with automatic alarm function according to claim 1 is characterized in that: The sensor detection module (4) includes a physiological parameter sensor and a distance sensor; The physiological parameter sensor is used to collect human physiological parameters, including blood pressure, pulse, respiration and body temperature parameters; The distance sensor is used to collect distance parameters between the wearable device and the satellite communication device.
4. The individual combat satellite communication equipment with automatic alarm function according to claim 1 is characterized in that: The external configuration module (2) includes a liquid crystal display and a key modification function, is connected to the wearable component (1) via an external interface, and performs wired modification of the detection threshold parameters of the wearable component (1) to set the threshold values of the physiological parameters and the distance alarm.
5. The individual combat satellite communication equipment with automatic alarm function according to claim 4 is characterized in that: The external configuration module (2) uses an external module to reduce the weight and volume of the wearable component (1).
6. The individual combat satellite communication equipment with automatic alarm function according to claim 1 is characterized in that: The emergency one-button alarm module (5) includes a personal one-button alarm function and a device one-button alarm function; The personal one-button alarm function is used to manually trigger an alarm in an emergency when the wearer's physiological parameter data does not reach the sensor detection threshold; The one-button alarm function of the device is used to manually issue an alarm when the wearable component (1) is about to be lost in an emergency.
7. The individual combat satellite communication equipment with automatic alarm function according to claim 1 is characterized in that: The alarm information refers to the wearable component (1) automatically sending an alarm to the remote control center (10) indicating abnormal vital signs of the wearer or that the distance between the wearable component (1) and the wearer exceeds a specified distance. The alarm content includes the current location information of the wearable component (1), which facilitates the remote control center (10) to carry out rescue.
8. The individual combat satellite communication equipment with automatic alarm function according to claim 1 is characterized in that: The wearable component (1) uses ultrasonic waves beyond the audible range of the human ear as a signal for alarm triggering.