This article explores the development of an advanced smart home system which includes integration of IoT-enabled technologies and smart materials. This enhances the user interaction and environmental adaptability. The focus is based on creating a living environment for the user where light, temperature, and space configuration can be adjusted dynamically in response to external conditions and peoples’ preferences. A system is designed which utilizes sensors, electrochromic windows, phase change materials (PCMs), and motorized furniture. This optimizes space utilization, comfort, and energy efficiency for the people living in a smart home. Sensors are placed throughout the home both indoor and outdoors which monitors sunlight intensity and temperature. It helps in controlling the PCM placed in the walls and also the electrochromic windows as they automatically adjust their properties for optimal thermal and lighting conditions. Motorized furniture reconfigured living spaces according to the user's demand. A central hub which contains Wi-Fi, ZigBee, or Z-Wave protocols is used in coordinating all devices like the sensors, the actuators, and different materials used. It processes real-time data coming from the sensors so that it can make intelligent adjustments to the materials.

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A Scalable and Fault-Tolerant Smart Home Multi-user Model for Urbanized Space

  • Aloukik Pati,
  • Ayushi Praharaj,
  • Sushruta Mishra,
  • Mohammed Al-Farouni

摘要

This article explores the development of an advanced smart home system which includes integration of IoT-enabled technologies and smart materials. This enhances the user interaction and environmental adaptability. The focus is based on creating a living environment for the user where light, temperature, and space configuration can be adjusted dynamically in response to external conditions and peoples’ preferences. A system is designed which utilizes sensors, electrochromic windows, phase change materials (PCMs), and motorized furniture. This optimizes space utilization, comfort, and energy efficiency for the people living in a smart home. Sensors are placed throughout the home both indoor and outdoors which monitors sunlight intensity and temperature. It helps in controlling the PCM placed in the walls and also the electrochromic windows as they automatically adjust their properties for optimal thermal and lighting conditions. Motorized furniture reconfigured living spaces according to the user's demand. A central hub which contains Wi-Fi, ZigBee, or Z-Wave protocols is used in coordinating all devices like the sensors, the actuators, and different materials used. It processes real-time data coming from the sensors so that it can make intelligent adjustments to the materials.