Perancangan Sitem Kompor Listrik dengan Fitur Pengaturan Suhu Otomatis untuk Meningkatkan Efesiensi Energi
DOI:
https://doi.org/10.62951/router.v2i4.289Keywords:
electric stove, automatic temperature control, energy efficiency, temperature sensor, microcontrollerAbstract
Efficient energy use in household appliances has become a primary concern as awareness of environmental sustainability grows. Smart electric stoves with automatic temperature control features offer an innovative solution to enhance energy efficiency while ensuring comfort and safety during use. This study aims to design and develop a smart electric stove system based on a microcontroller with automatic temperature control algorithms. The system employs temperature sensors to detect real-time temperature changes and a Proportional-Integral-Derivative (PID) algorithm to maintain stable temperatures as set by the user. A simple and intuitive user interface is designed to facilitate operation, while the automation feature allows the system to shut off the heating element independently when the temperature exceeds a safe threshold. Test results demonstrate that the designed system can reduce energy consumption by up to 25% compared to conventional electric stoves without automatic controls. Therefore, this research significantly contributes to the development of energy-efficient and safe smart kitchen appliances.
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References
Ahmad, F., & Zaman, K. (2020). Energy efficiency in household appliances: The role of automatic temperature control. Energy Reports, 6, 35-45.
Chen, B., & Xu, F. (2020). Design and performance evaluation of an automatic temperature control system for cooking appliances. IEEE Transactions on Industrial Electronics, 67(9), 7940-7949.
Denny, G. (2019). Design of microcontroller-based automatic temperature control systems. Journal of Electronics and Electrical Engineering, 48(2), 88-95.
Green, P., & Martinez, E. (2020). Optimization of cooking energy consumption in electric stoves. Energy Procedia, 158, 311-318.
Johnson, T., & Liu, X. (2021). A study on the use of sensors for home appliance energy management. International Journal of Energy Research, 45(3), 340-350.
Kumar, R., & Sharma, P. (2018). Development of energy-efficient cooking systems using advanced sensors and microcontrollers. International Journal of Energy and Environmental Engineering, 9(1), 22-29.
Lee, J., & Chang, S. (2021). Energy efficiency improvements in home cooking appliances using smart sensor technologies. Energy and Buildings, 248, 111215.
Liang, C., & Wang, S. (2017). Automatic temperature regulation in electrical cooking appliances. Journal of Applied Thermal Engineering, 114, 78-85.
Raj, P., & Khurana, R. (2018). Development of an intelligent temperature control system for electric cooking appliances. International Journal of Electrical Engineering & Technology, 9(2), 50-58.
Smith, J., & Bell, K. (2022). Smart home technology for energy optimization: A review of the state of the art. Renewable and Sustainable Energy Reviews, 152, 222-234.
Sutabri, T. (2012). Analisis Sistem Informasi . Yogyakarta:Andi Offset.
Sutabri, T. (2012).Konsep Sistem informasi.Yogyakarta:Andi Offset.
Tan, Z., & Zhang, Y. (2020). An innovative approach to energy saving in household electrical appliances. Energy Efficiency, 13(4), 849-861.
Toh, S., & Tan, J. (2018). Control system design for temperature regulation in cooking devices. Journal of Control Engineering Practice, 75, 92-99.
Zhang, L., & Zhao, X. (2021). Energy-saving design and optimization of electric stoves based on intelligent temperature control systems. Energy Conversion and Management, 229, 113759.
Zubair, A., & Lee, S. (2019). A review on energy-saving techniques in electrical cooking appliances. Journal of Cleaner Production, 241, 118255.
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