Whole body vital signs sensing module and intelligent device integration system
The whole-body vital signs sensing module, which integrates multi-sensor fusion and hardware security protection, solves the problems of non-contact, long-term monitoring and security, and achieves high-precision, robust vital signs sensing, making it suitable for multi-scenario applications.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 周进江
- Filing Date
- 2026-04-05
- Publication Date
- 2026-06-02
AI Technical Summary
Existing vital sign monitoring equipment is unable to achieve non-contact, long-term continuous monitoring, and lacks security protection mechanisms such as hardware encryption, anti-tampering, and algorithm binding, thus failing to meet the application requirements of high reliability scenarios.
It adopts a multi-sensor fusion sensing unit, a signal processing and health assessment unit, a hardware security protection unit, a standardized interface and full-scenario intelligent device integration unit and an authorization management unit, combined with millimeter-wave radar and a three-dimensional spatial positioning sensing module, to achieve non-contact, long-term continuous monitoring, and has security mechanisms such as hardware encryption, anti-tampering, anti-reverse engineering and anti-cracking.
It achieves high-precision and robust full-body vital sign perception in multiple scenarios, and is suitable for high-requirement scenarios such as medical surgery, intensive care, aerospace, and military, with commercial scalability and industry leadership.
Abstract
Description
Technical Field
[0001] This invention belongs to the field of vital sign monitoring, health assessment, multi-sensor fusion and intelligent device integration technology. Specifically, it relates to a modular, encrypted, and tamper-proof whole-body vital sign sensing system that can be adapted to medical surgery, intensive care, civilian health care, public transportation, aerospace flight, military operations, special enclosed and high-risk working environments. Background Technology
[0002] Most existing vital sign monitoring devices rely on contact sensors, making it difficult to achieve non-contact, long-term continuous monitoring. Some devices lack sufficient lightweight design, hindering efficient integration into various smart terminals. Furthermore, they lack security protection mechanisms such as hardware encryption, tamper protection, and algorithm binding, failing to meet the application requirements of high-reliability scenarios. In special scenarios such as real-time intraoperative monitoring in operating rooms, ICU intensive care, manned spaceflight, military vehicles, underwater submarines, enclosed cabins, and emergency rescue, monitoring devices must possess non-invasiveness, stability, concealment, and security. Traditional solutions cannot simultaneously meet the needs of multi-scenario, high-precision, and highly robust whole-body vital sign sensing. Summary of the Invention
[0003] A whole-body vital signs sensing module and intelligent device integration system, characterized in that it includes: a multi-sensor fusion sensing unit, a signal processing and health assessment unit, a hardware security protection unit, a standardized interface and full-scenario intelligent device integration unit, and an authorization management unit.
[0004] The multi-sensor fusion sensing unit includes a millimeter-wave radar sensing module and a three-dimensional spatial positioning sensing module; the millimeter-wave radar operates in a legally open millimeter-wave frequency band used for monitoring human vital signs; the three-dimensional spatial positioning sensing module includes, but is not limited to, one or more combinations of infrared thermal imaging, LiDAR, depth camera, 3D structured light, and binocular vision.
[0005] The signal processing and health assessment unit is used to fuse and analyze physiological micro-motion signals, human body contours, spatial posture, and thermal distribution information, and output indicators such as heart rate, respiration, blood pressure trends, fatigue level, emotional state, vascular function, physiological state of whole body tissues and organs, risk of physiological tissue damage, systemic dysfunction, and physiological dysfunction trends, and realize whole body health risk assessment and graded early warning.
[0006] The hardware security protection unit has one or more security mechanisms such as hardware encryption, anti-tampering, anti-reverse engineering, and anti-cracking; the module cannot work properly or output valid data after physical disassembly or illegal cracking; the core algorithm is protected by local hardening, encrypted storage, or cloud authorization, and the source code is not open.
[0007] The standardized interface and all-scenario intelligent device integration unit can independently encapsulate and standardize the embedding of sensing modules into various devices and scenarios with intelligent processing capabilities, including but not limited to: smartphones, tablets, smartwatches, bracelets, rings; smart helmets, VR / AR devices, smart glasses; service robots, medical robots, inspection robots; smart beds, smart seats, and health care equipment; vehicles, cockpits, steering wheels, high-speed trains, civil aviation, and ships; operating rooms, ICUs, and wards; manned spacecraft, space capsules, and space stations; fighter jets, armored vehicles, tanks, submarines, and border defense equipment; nuclear power plant compartments, mines, tunnels, and deep-sea space stations; fire rescue, mobile hospitals, and emergency search and rescue.
[0008] The authorization management unit binds modules to devices, accounts, and manufacturers, and supports independent authorization for different scenarios and network integration with third-party data.
[0009] Furthermore, this system can achieve data exchange, model sharing, and joint evaluation with the whole-body vital signs resonance scanning system, forming a full-scenario life monitoring system that integrates large-scale professional equipment with miniaturized terminal modules.
[0010] Beneficial effects
[0011] This system employs a fusion solution of millimeter-wave radar and multiple types of 3D positioning sensors, enabling seamless, non-contact, long-term continuous, and unattended full-body vital sign sensing. It is suitable for demanding scenarios such as medical surgery, intensive care, civilian healthcare, transportation, aerospace, military, special confined spaces, and emergency rescue. The modules are standardized, miniaturized, and embeddable, integrating hardware encryption, anti-tampering, anti-reverse engineering, and algorithm embedding security mechanisms, providing broad protection and making the technical solution difficult to circumvent. This system can operate independently or in conjunction with a full-body vital sign resonance scanning system, covering the entire industry chain from professional medical to consumer terminals, from civilian scenarios to aerospace and defense fields, possessing strong commercial scalability and industry-leading capabilities.
Claims
1. Claims A whole-body vital signs sensing module and intelligent device integration system, characterized in that... include: The system comprises a multi-sensor fusion sensing unit, a signal processing and health assessment unit, a hardware security protection unit, a standardized interface and full-scenario intelligent device integration unit, and an authorization management unit. The multi-sensor fusion sensing unit includes a millimeter-wave radar sensing module and a three-dimensional spatial positioning sensing module. The millimeter-wave radar operates in a legally open millimeter-wave frequency band used for monitoring human vital signs. The three-dimensional spatial positioning sensing module includes, but is not limited to, one or more combinations of infrared thermal imaging, LiDAR, depth camera, 3D structured light, and binocular vision.
2. The system according to claim 1, characterized in that, The signal processing and health assessment unit can analyze heart rate, respiration, blood pressure trends, fatigue, mood, vascular status, physiological status of the whole body's tissues and organs, risk of physiological tissue damage, systemic dysfunction, and physiological dysfunction trends, and output health assessments and graded early warnings.
3. The system according to claim 1, characterized in that, The hardware security protection unit includes one or more of the following: hardware encryption, anti-tampering, anti-reverse engineering, and anti-cracking; the module cannot work properly or output valid data after physical disassembly or illegal cracking.
4. The system according to claim 1, characterized in that, The core algorithm is protected by local hardening, encrypted storage or cloud authorization, and the source code is not open, so it cannot be read, cracked or copied by outsiders.
5. The system according to claim 1, characterized in that, Standardized interfaces and full-scenario intelligent device integration units can embed modules and apply them to: consumer electronics, wearable devices, intelligent robots, smart homes, vehicle transportation, intraoperative monitoring in operating rooms, ICU intensive care, spacecraft, space capsules, space stations, military vehicles, submarines, special sealed cabins, emergency rescue equipment, and medical and health care equipment.
6. The system according to any one of claims 1 to 5, characterized in that, It can achieve data exchange, model sharing, and joint evaluation with the whole body vital signs resonance scanning system.