Abstract
With the widespread application of smart homes, the study and design of control systems for smart electric stoves, an indispensable part of kitchen life, have garnered significant attention. This research is dedicated to exploring the theoretical foundations and practical applications of smart electric stove control systems, aiming to enhance the user experience of smart stoves while focusing on energy efficiency and environmental impact, thus contributing to the sustainable development of smart kitchens. Various algorithms have been employed for temperature control and energy management to achieve precise control and energy saving. In the design and implementation phases, this research has taken into account multiple factors such as hardware selection, software programming, and system integration, ensuring the reliability and efficiency of the smart electric stove control system. Future research will continue to optimize the control system and explore additional smart features, with the goal of providing users with a more comfortable and convenient kitchen experience while also contributing to environmental protection and energy conservation. This research not only enriches the theoretical study of smart electric stove control systems but also provides valuable references for the design and application of smart electric stoves, holding significant practical significance and long-term research value.
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