Millimeter wave radar device, method and system for vital sign monitoring
A technology of millimeter-wave radar and vital signs, which is applied in telemetry patient monitoring, pulse rate/heart rate measurement, diagnostic recording/measurement, etc. It can solve problems such as high cost, difficulty in transmitting and receiving isolation, and poor versatility, so as to avoid secondary Injury, discomfort reduction, small output power effect
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Embodiment 1
[0035] This embodiment is based on the FMCW radar system to realize the detection of the electrocardiographic signal (ECG) of the human body, and obtain the breathing and heart rate parameters of the vital signs of the human body. The millimeter wave radar is the radar that works in the millimeter wave frequency band. -10mm electromagnetic wave, the corresponding frequency range is 30-300GHz; the working frequency of the millimeter-wave radar device is 77-81GHZ, and the maximum bandwidth that can be achieved is 4GHz, which can provide centimeter-level distance resolution, and the higher the frequency, the shorter the wavelength , the higher the resolution and accuracy; the radar transmission power complies with FCC regulations, the maximum EIRP transmission power is 21dBm, and the radiation produced will not cause harm to the human body.
[0036] This embodiment provides a millimeter-wave radar device for monitoring vital signs, including: a power supply module, a millimeter-wa...
Embodiment 2
[0045] This embodiment provides a vital sign monitoring method based on the millimeter-wave radar device for vital sign monitoring described in Embodiment 1. Through the FMCW radar system, the radar echo reflected by the surface of the human body is obtained, and the target point per unit time The calculation of distance information and micro-movement information changes on the surface of the human body realizes the detection of the ECG signal of the human body.
[0046]In the FMCW radar system, the FMCW radar system transmits a chirp signal and captures the signal reflected by objects in its transmission path, such as figure 1 Shown is a simplified block diagram of the main RF components of an FMCW radar, which operates as follows:
[0047] (1) The synthesizer generates a chirp;
[0048] (2) The chirp is transmitted by the transmitting antenna (TX antenna);
[0049] (3) reflection of the chirp by the object generates a reflected chirp captured by the receiving antenna (RX a...
Embodiment 3
[0073] This embodiment provides a vital sign monitoring system, including a millimeter-wave radar device and a cloud server, and the millimeter-wave radar device communicates with the cloud server through a wireless communication module; Figure 4 as shown,
[0074] In this implementation, the mobile terminal is used to configure the WIFI network, such as Figure 5 As shown, the main workflow of WIFI distribution network includes:
[0075] (1) The device enters the initialization state and listens to nearby WiFi data packets;
[0076] (2) After the mobile terminal sets the WiFi name and password, it sends a UDP broadcast packet;
[0077] (3) The device obtains the configuration information through the UDP packet (length), switches the network mode, connects to the WiFi network, and the configuration is completed.
[0078] After the millimeter wave radar device successfully communicates with the cloud server, such as Image 6 As shown, the workflow specifically includes:
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