Synkro - Smart Society OS: An AI and IoT Powered Approach to Intelligent Community Management

  • Unique Paper ID: 186560
  • PageNo: 4596-4598
  • Abstract:
  • Applications for modern apartment communities mainly include features related to billing, maintenance, and notifications. However, important factors like conflict resolution, optimization of resources, safety, and inclusivity go unnoticed. This can lead to unresolved disputes, wastage of utilities, late action in emergencies, and low engagement among the residents. To overcome such limitations, this paper proposes Synkro – Smart Society OS, an integrated platform using Artificial Intelligence and the Internet of Things. Synkro offers automatic conflict resolution, real-time resource monitoring, eco-gamification for sustainable living, emergency management at an advanced level, and inclusivity features for all types of residents. The system essentially acts as a smart community's digital backbone, enhancing transparency, cooperation, security, and sustainability. The research elaborates on the design, modular architecture, and implementation model of the system while assessing its impact on operational efficiency, resident satisfaction, and long-term viability. Simulation results show that Synkro can significantly reduce resource wastage, improve safety and transparency, and enhance social harmony in residential societies. The scalability, economic feasibility, and future potential for integrating Synkro with larger smart city ecosystems are discussed in conclusion.

Copyright & License

Copyright © 2026 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

BibTeX

@article{186560,
        author = {Reet Kaur Nahal and Yash Deshpande and Aditya Gaidhani and Mitesh Thakkar},
        title = {Synkro - Smart Society OS: An AI and IoT Powered Approach to Intelligent Community Management},
        journal = {International Journal of Innovative Research in Technology},
        year = {2025},
        volume = {12},
        number = {6},
        pages = {4596-4598},
        issn = {2349-6002},
        url = {https://ijirt.org/article?manuscript=186560},
        abstract = {Applications for modern apartment communities mainly include features related to billing, maintenance, and notifications. However, important factors like conflict resolution, optimization of resources, safety, and inclusivity go unnoticed. This can lead to unresolved disputes, wastage of utilities, late action in emergencies, and low engagement among the residents. To overcome such limitations, this paper proposes Synkro – Smart Society OS, an integrated platform using Artificial Intelligence and the Internet of Things. Synkro offers automatic conflict resolution, real-time resource monitoring, eco-gamification for sustainable living, emergency management at an advanced level, and inclusivity features for all types of residents.
The system essentially acts as a smart community's digital backbone, enhancing transparency, cooperation, security, and sustainability. The research elaborates on the design, modular architecture, and implementation model of the system while assessing its impact on operational efficiency, resident satisfaction, and long-term viability. Simulation results show that Synkro can significantly reduce resource wastage, improve safety and transparency, and enhance social harmony in residential societies. The scalability, economic feasibility, and future potential for integrating Synkro with larger smart city ecosystems are discussed in conclusion.},
        keywords = {},
        month = {November},
        }

Cite This Article

Nahal, R. K., & Deshpande, Y., & Gaidhani, A., & Thakkar, M. (2025). Synkro - Smart Society OS: An AI and IoT Powered Approach to Intelligent Community Management. International Journal of Innovative Research in Technology (IJIRT), 12(6), 4596–4598.

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