The practical value of this work lies in creating an accessible and affordable solution for home use. Unlike large enterprises, ordinary consumers are constrained by budgets, so the development is focused on maximum cost-effectiveness and simplicity. The main emphasis is on creating a system that any family can easily afford and use in daily life during power outages without significant expenses.
The aim of the project is to develop an energy-efficient automated lighting control system that ensures an automatic transition to an emergency power source during a blackout and optimizes energy consumption to maximize autonomous operation time.
The proposed solution is based on the principle of directly powering LED devices from the low-voltage ports of a portable power station, which prevents inefficient energy losses. To maximize charge conservation, the system is equipped with sensitive presence and ambient light sensors. The device automatically analyzes room conditions and detects human presence, even if a person remains completely motionless. Artificial lighting smoothly turns on only when genuinely needed and automatically turns off when the user leaves the room.
The result of the project is the creation of a reliable, comfortable, and financially affordable household system. Its implementation allows for the complete automation of the lighting control process, improves everyday user comfort, and extends the autonomous operation time of lighting from a single charging station by several times during prolonged emergency blackouts.
Research advisor: I.Lysenko