Light awakening control system based on sleep staging
A control system and sleep staging technology, applied in the sleep field, can solve problems such as unfavorable health, impact, and affect on learning and work emotions, and achieve the effects of less basic data types, simple calculation and classification processes, and improved wake-up experience
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Embodiment 1
[0049] This embodiment provides a lighting wake-up control system based on sleep stages.
[0050] Such as figure 1 The system shown consists of a basic data collector, a processor, and a wake-up device. The basic data collector acquires the user's basic data through a portable wearable device, and the basic data collector is equipped with an electrical signal acquisition component; the processor receives the basic data from the basic data collector, obtains the user's sleep state through calculation, and The sleep state forms a real-time control signal sent to the wake-up device, records the real-time control signal and forms a reference base value, and the reference base value provides a calculation basis for obtaining the next set of real-time control signals; the wake-up device receives the real-time control signal and generates an application Light stimulation for the user's eyes.
[0051] In this embodiment, the basic data collector is glasses 1 with a data collection a...
Embodiment 2
[0095] Compared with the first embodiment, this embodiment provides another decision tree structure.
[0096] As an alternative to the second node, at the second node, a threshold value Num-LCZ-Threshold is set, and when Num-LCZ>Num-LCZ-Threshold, the single-frame data packet is judged as an artifact, and passed The processor outputs the sleep state obtained when processing the last single frame data packet, otherwise, transfers to the third node.
[0097] Specifically, when artifacts appear, the number of times the waveform crosses the x-axis in each waveform graph will increase significantly. By comparing the value of the parameter Num-LCZ with the corresponding threshold Num-LCZ-Threshold, it is determined whether artifacts are generated , specifically, when Num-LCZ>Num-LCZ-Threshold, the single-frame data packet is determined to be an artifact, the single-frame data packet is invalidated, and the sleep state obtained when the last single-frame data packet is sent out , on...
Embodiment 3
[0100] Compared with the first embodiment, this embodiment provides another basic data collector.
[0101] Such as Figure 5 As shown, the basic data collector is an eye mask 7, the eye mask 7 includes a mask body and a strap, and the EEG signal acquisition assembly includes a frontal reference electrode 10 arranged in the middle of the mask body and a left frontal electrode 10 arranged at both ends of the mask body. pole electrode 8 and right frontal pole electrode 9.
[0102] When in use, the eye mask 7 is fixed at a preset position through a strap, so that the mask body fits the user's forehead. The eye mask 7 collects relevant basic data through the left frontal electrode 8 , the right frontal electrode 9 and the frontal reference electrode 10 attached to the user's body surface, and sends them to the processor. Specifically, the left frontal electrode 8, the right frontal electrode 9, and the frontal reference electrode 10 are attached to the left frontal electrode, the...
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