Lighting method and intelligent lighting control system for improving study work efficiency
A technology of work efficiency and lighting method, applied in the field of lighting, can solve problems such as low work efficiency, and achieve the effect of improving learning work efficiency and realizing work efficiency
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Embodiment 1
[0062] The lighting method for improving learning work efficiency provided by the embodiment of the present invention may also be an indoor lighting method for improving learning work efficiency, such as figure 1 As shown, the methods include:
[0063] S11: Obtain the user's job data and brain wave data.
[0064] S12: Obtain the operation error rate and operation speed according to the operation data, and obtain brainwave θ and β wave data according to the brainwave data.
[0065] S13: Obtain the mental work ability index IMC according to the operation error rate and operation speed, combined with brain wave θ, β wave, Karolinska Sleepiness Scale (KSS for short) and Dundee Stress State Scale (Dundee Stress State Questionnaire (DSSQ for short) test results to determine the light environment parameters to improve learning work efficiency.
[0066] S14: Control several LED lamps for lighting according to the light environment parameters.
[0067] The existing lighting methods ...
Embodiment 2
[0070] The embodiment of the present invention provides a lighting method for improving learning work efficiency, such as figure 2 shown, including:
[0071] S21: Obtain the user's operation data and brain wave data according to the preset operation information and the collected images.
[0072] S22: Obtain an operation error rate and an operation speed according to the operation data. Acquire brain wave θ and β wave data according to the brain wave data.
[0073] In this step, according to the data obtained by the dose assignment method, the error rate and word reading speed of students and staff in completing visual assignment tasks are counted and analyzed. Among them, the error rate can reflect the inhibition process of the cerebral cortex; the reading speed can reflect the excitation process of the cerebral cortex. θ wave, the frequency range is 4-8Hz, and this wave usually appears when the human body is in a drowsy state. β waves, with a frequency range of 14-30 Hz,...
Embodiment 3
[0106] The embodiment of the present invention provides an intelligent lighting control system that improves learning work efficiency, such as Figure 11 As shown, the intelligent lighting control system 3 for improving learning work efficiency includes: an acquisition unit 31 , an analysis unit 32 , a determination unit 33 and a control unit 34 .
[0107] Preferably, the acquisition unit is used to acquire user job data. The analysis unit is used to obtain the operation error rate and the operation speed according to the operation data. The determination unit is used to determine the mental work ability index IMC based on the operation error rate and operation speed, through the wave θ and β wave data in the brain wave combined with the Karolinska Alertness Scale KSS and the Dundee Stress State Scale DSSQ. Light environment parameters to improve learning work efficiency. The control unit is used for controlling several LED lamps for lighting according to light environment p...
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