This article explores the integration of Building Management Systems (BMS) and Light Fidelity (Li-Fi) technologies within a Direct Current (DC) network design to optimize connectivity, data transfer, and energy efficiency in smart buildings. A unique method for enhancing the general dependability and efficiency of smart building systems is to take advantage of Li-Fi’s potential in a DC setting. In addition to outlining quantifiable goals to assess the integration’s efficacy, the article offers a thorough investigation of the possible advantages of it. Intelligent buildings can achieve continuous connectivity throughout their premises by utilizing Li-Fi’s inherent advantages, which include enhanced security, improved coverage, and resistance to electromagnetic interference. Moreover, the integration with BMS enables real-time data sharing and centralized control over a range of building functions while optimizing energy consumption and enhancing occupant comfort.

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Smart Building Optimization Using LiFi-BMS Integration for Efficient Lighting

  • Devanth Mallikarjunaiah,
  • S. Neha,
  • Nidhi Sridhar,
  • Niranjan M. Nadiger,
  • N. Venugopal

摘要

This article explores the integration of Building Management Systems (BMS) and Light Fidelity (Li-Fi) technologies within a Direct Current (DC) network design to optimize connectivity, data transfer, and energy efficiency in smart buildings. A unique method for enhancing the general dependability and efficiency of smart building systems is to take advantage of Li-Fi’s potential in a DC setting. In addition to outlining quantifiable goals to assess the integration’s efficacy, the article offers a thorough investigation of the possible advantages of it. Intelligent buildings can achieve continuous connectivity throughout their premises by utilizing Li-Fi’s inherent advantages, which include enhanced security, improved coverage, and resistance to electromagnetic interference. Moreover, the integration with BMS enables real-time data sharing and centralized control over a range of building functions while optimizing energy consumption and enhancing occupant comfort.