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Liczba wyników
2023 | z. 189 Współczesne zarządzanie = Contemporary management | 747--758
Tytuł artykułu

The Usage of Smart Lighting in Smart Home

Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: The purpose of this publication is to present the usage of smart lighting in smart home.

Design/methodology/approach: Critical literature analysis. Analysis of international literature from main databases and polish literature and legal acts connecting with researched topic.

Findings: The integration of smart lighting systems in smart homes signifies a paradigm shift, revolutionizing how individuals engage with and manage the lighting environment in their living spaces. Beyond traditional lighting solutions, smart lighting offers a plethora of advantages, enhancing comfort, energy efficiency, and overall convenience. Remote control capabilities through dedicated mobile applications empower users to make dynamic adjustments based on preferences and daily routines. The adaptability and versatility of smart lighting enable personalized environments tailored to specific activities or moods, further contributing to a transformative user experience. Noteworthy contributions to energy efficiency, automation facilitated by motion sensors, and seamless integration with other smart home devices underscore the system's impact on home automation and security. Despite challenges such as interoperability issues and privacy concerns, the advantages of smart lighting position it as a cornerstone in the broader smart home ecosystem, offering hands-free operation, security integration, and the potential for future innovations. The ongoing evolution of smart homes and advancements in smart lighting technology promise an intelligent, adaptable, and user-centric future, shaping the way individuals perceive and interact with illumination in a more sophisticated, sustainable, and connected living experience.

Originality/Value: Detailed analysis of all subjects related to the problems connected with the usage of smart lighting in smart home.(original abstract)
Twórcy
  • Silesian University of Technology, Poland
  • The Pennsylvania State University, State College, USA
Bibliografia
  • 1. Afroz, A., Khamari, S.S., Behera, R.K. (2024). Solar Powered Smart Home Automation and Smart Health Monitoring with IoT. Lecture Notes in Networks and Systems, 728 LNNS, 169-182.
  • 2. Alsaedi, M.K., Riccio, R.E., Sharma, A., Romero, L.M., Sonkusale, S. (2023). Smart sensing flexible sutures for glucose monitoring in house sparrows. The Analyst, 148(22), 5714-5723.
  • 3. Ameur, A., Berrada, A., Emrani, A. (2023). Intelligent energy management system for smart home with grid-connected hybrid photovoltaic/gravity energy storage system. Journal of Energy Storage, 72, 108525.
  • 4. Basarir-Ozel, B., Nasir, V.A., Turker, H.B. (2023). Determinants of smart home adoption and differences across technology readiness segments. Technological Forecasting and Social Change, 197, 122924.
  • 5. Chaudhari, R.R., Joshi, K.K., Joshi, N., Pandey, A.K. (2023). Smart and ecofriendly intelligent house based on IoT and simulation using a Cisco networking simulator. Intelligent Sensor Node-Based Systems: Applications in Engineering and Science, 259-273.
  • 6. Chen, H., Zhang, Y., Wang, L. (2023). A study on the quality evaluation index system of smart home care for older adults in the community --based on Delphi and AHP. BMC Public Health, 23(1), 411.
  • 7. Dhaou, I.B. (2023). Design and Implementation of an Internet-of-Things-Enabled Smart Meter and Smart Plug for Home-Energy-Management System. Electronics, 12(19), 4041.
  • 8. Douha, N.Y.-R., Renaud, K., Taenaka, Y., Kadobayashi, Y. (2023). Smart home cybersecurity awareness and behavioral incentives. Information and Computer Security, 31(5), 545-575.
  • 9. Gajdzik, B., Wolniak, R., Nagaj, R. Grebski, W, Romanyshyn, T. (2023). Barriers to Renewable Energy Source (RES) Installations as Determinants of Energy Consumption in EU Countries. Energies, 16(21), 7364.
  • 10. Gøthesen, S., Haddara, M., Kumar, K.N. (2023). Empowering homes with intelligence: An investigation of smart home technology adoption and usage. Internet of Things (Netherlands), 24, 100944.
  • 11. Huda, N.U., Ahmed, I., Adnan, M., Ali, M., Naeem, F. (2024). Experts and intelligent systems for smart homes' Transformation to Sustainable Smart Cities: A comprehensive review. Expert Systems with Applications, 238, 122380.
  • 12. Hussain, S., Azim, M.I., Lai, C., Eicker, U. (2023). New coordination framework for smart home peer-to-peer trading to reduce impact on distribution transformer. Energy, 284, 129297.
  • 13. Hussain, S., Imran Azim, M., Lai, C., Eicker, U. (2023). Multi-stage optimization for energy management and trading for smart homes considering operational constraints of a distribution network. Energy and Buildings, 301, 113722.
  • 14. Jonek-Kowalska, I., Wolniak, R. (2021). Economic opportunities for creating smart cities in Poland. Does wealth matter? Cities, 114, 1-6.
  • 15. Jonek-Kowalska, I., Wolniak, R. (2022). Sharing economies' initiatives in municipal authorities' perspective: research evidence from Poland in the context of smart cities' development. Sustainability, 14(4), 1-23.
  • 16. Olabode, S., Owens, R., Zhang, V.N., Shi, L., Chambers, D. (2023). Complex online harms and the smart home: A scoping review. Future Generation Computer Systems, 149, 664-678.
  • 17. Patheja, P.S., Kalra, Y., Tyagi, A., Patheja, P.S., Kalra, Y., Tyagi, A. (2023). Intelligent Sensor Node-Based Systems: Applications in Engineering and Science, 155-175.
  • 18. Raff, S., Rose, S., Huynh, T. (2024). Perceived creepiness in response to smart home assistants: A multi-method study. International Journal of Information Management, 74, 102720.
  • 19. Ramanujam, E., Kalimuthu, S., Harshavardhan, B.V., Perumal, T. (2024). Improvement in Multi-resident Activity Recognition System in a Smart Home Using Activity Clustering. IFIP Advances in Information and Communication Technology, 683. AICT, 316-334.
  • 20. Rohde, F., von Andrian, N., Lange, S. (2023). Threat, fixable or opportunity? Contested smart home futures in the German social media debate. Energy Research and Social Science, 106, 103306.
  • 21. Sobhani, A., Khorshidi, F., Fakhredanesh, M. (2023). DeePLS: Personalize Lighting in Smart Home by Human Detection, Recognition, and Tracking. SN Computer Science, 4(6), 773.
  • 22. Tong, Z., Mansouri, S.A., Huang, S., Rezaee Jordehi, A., Tostado-Véliz, M. (2023). The role of smart communities integrated with renewable energy resources, smart homes and electric vehicles in providing ancillary services: A tri-stage optimization mechanism. Applied Energy, 351, 121897.
  • 23. Valencia-Arias, A., Cardona-Acevedo, S., Gómez-Molina, S., Gonzalez-Ruiz, J.D., Valencia, J. (2023). Smart home adoption factors: A systematic literature review and research agenda. PLoS ONE, 18(10 October), e0292558.
  • 24. Wu, D., Feng, W., Li, T., Yang, Z. (2023). Evaluating the intelligence capability of smart homes: A conceptual modeling approach. Data and Knowledge Engineering, 148, 102218
Typ dokumentu
Bibliografia
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Identyfikator YADDA
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