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Lighting intelligence relies on advanced smart lamps or smart switch technology to achieve fine adjustment of light brightness, ranging from very low illumination to high light intensity, to meet the visual needs of different environments. For example, in the daytime when the indoor natural lighting is sufficient, the light brightness can be adjusted to a lower level to supplement the lighting of the local shadow area and achieve energy saving; while in the night reading or working scenes, the brightness can be accurately raised to the value suitable for reading, and at the same time, combined with the results of the research on the visual comfort of the human eye, the colour temperature can be precisely adjusted.
for example, the colour temperature can be set at between 4000 – 5000K to simulate the characteristics of the natural light, which effectively reduces the visual impact caused by prolonged eye use, and reduces the visual impact caused by long time eye use. The colour temperature is set between 4000 – 5000K to simulate the characteristics of natural light, effectively reducing visual fatigue caused by prolonged eye use.
The intelligent lighting system can preset various lighting scene modes according to the user’s living habits and specific scene requirements. Take ‘Movie Watching Mode’ as an example, through system commands, the lights can be automatically dimmed to a specific illumination level, retaining only an appropriate amount of ambient light, such as footlights or the weak decorative light on the sofa back wall, to create a low illumination, high contrast visual environment similar to that of a movie theatre, and to enhance the sense of immersion in the cinema; under ‘Party Mode’, the lights can be switched to a different lighting mode, which is similar to that of a movie theatre. In ‘Party Mode’, the lights can be switched to dynamic modes, such as flashing, colour changing or moving according to specific rhythms, to match the rhythm of music or the party atmosphere, to enhance spatial activity and interest, fully reflecting the excellent ability of lighting intelligence in creating diversified spatial atmospheres.
The intelligent lighting system can preset various lighting scene modes according to the user’s living habits and specific scene requirements. Take ‘Movie Watching Mode’ as an example, through system commands, the lights can be automatically dimmed to a specific illumination level, retaining only an appropriate amount of ambient light, such as footlights or the weak decorative light on the sofa back wall, to create a low illumination, high contrast visual environment similar to that of a movie theatre, and to enhance the sense of immersion in the cinema; under ‘Party Mode’, the lights can be switched to a different lighting mode, which is similar to that of a movie theatre. In ‘Party Mode’, the lights can be switched to dynamic modes, such as flashing, colour changing or moving according to specific rhythms, to match the rhythm of music or the party atmosphere, to enhance spatial activity and interest, fully reflecting the excellent ability of lighting intelligence in creating diversified spatial atmospheres.
The environmental sensors (such as light sensors, human body sensors, temperature and humidity sensors, etc.) in the whole-house intelligent system work together with lighting intelligence to achieve dynamic lighting adaptation based on environmental awareness. In the morning wake-up scenario, when the human body sensor in the bedroom detects the user’s wake-up action, and the light sensor senses that the indoor light is dark, the intelligent lighting system will be linked with the intelligent curtain control system to slowly open the curtains to bring in natural light, and at the same time, gradually light up the bedroom lights, and real-time adjustment of light brightness based on the ambient light brightness, to create a soft and comfortable wake-up atmosphere, so that the lighting intelligence is deeply integrated into every aspect of the user’s daily life, enhancing the lighting intelligence based on environmental perception. The lighting intelligence is deeply integrated into all aspects of the user’s daily life, improving the overall quality of life and intelligent experience.
Through the interconnection with smart meters and other energy monitoring equipment, the whole-house intelligent system can obtain real-time data on the overall electricity consumption of the family and carry out refined regulation of the lighting intelligent system based on these data. For example, in areas with large differences in peak and valley electricity prices, the system can, according to the preset electricity price time strategy, appropriately increase the overall brightness of indoor lights during the low price hours to meet the diversified lighting needs of users; and during the peak price hours, in addition to guaranteeing the necessary safety lighting (e.g., corridors, staircases, and other areas), it automatically reduces or switches off other non-essential lighting equipment, such as decorative lamps and lanterns, and auxiliary lighting in some rooms, etc.
so as to achieve home lighting power consumption. etc., so as to achieve intelligent and optimal management of home lighting and electricity consumption, effectively reduce home electricity expenditure and improve energy efficiency and economic benefits without affecting the basic quality of life of users.
The lighting intelligent system has its own energy consumption monitoring function, which can count the power consumption and usage hours of each lighting device in real time and feedback these data to the whole-house intelligent management platform. Users can view the energy consumption report and historical data trend analysis of the lighting system through mobile APP or home intelligent central control panel to understand the distribution of energy consumption in different lighting scenes and different time periods, so as to further optimise the lighting habits and scene settings. For example, if the lighting energy consumption of a room is found to be too high, the type of lamps and lanterns, frequency of use, control mode and other factors of the room can be analysed to adjust the configuration of lamps and lanterns, optimise the scene presets or strengthen the education of users’ awareness of energy saving, so as to achieve continuous improvement and optimisation of the lighting intelligent system in terms of energy management.