Research Article
BibTex RIS Cite

Software-Defined Metaverse (SDM) Architecture

Year 2024, Volume: 4 Issue: 2, 146 - 156
https://doi.org/10.57019/jmv.1541821

Abstract

The metaverse, a vast virtual shared space that integrates enhanced physical reality with persistent virtual environments, has the potential to revolutionize digital interaction by providing deeply immersive and interactive experiences. Leveraging cutting-edge technologies such as virtual reality (VR), augmented reality (AR), blockchain, artificial intelligence (AI), and cloud computing, the metaverse aims to harmonize the physical and digital worlds. However, existing metaverse architectures face significant challenges related to scalability, security, and efficiency. This paper introduces a novel Software-Defined Metaverse (SDM) Architecture, which uniquely addresses these challenges through a three-layered structure: the Application Layer, Control Layer, and Physical Layer. These layers are interconnected via standardized APIs, enabling efficient communication and data exchange. The architecture’s innovative centralization of control within the Control Layer not only enhances resource management but also significantly improves performance, scalability, and user experience. The modular design of the SDM Architecture facilitates seamless integration with emerging technologies, ensuring adaptability and long-term sustainability. By addressing critical technical hurdles and providing a robust, scalable framework, this work lays a strong foundation for future developments in the evolving digital landscape, positioning the SDM Architecture as a key enabler for the next generation of digital experiences.

References

  • Joshua, J. (2017). Information bodies: computational anxiety in neal stephenson's snow crash. Interdisciplinary Literary Studies, 19(1), 17-47.‏
  • Hamad, A., & Jia, B. (2022). How virtual reality technology has changed our lives: an overview of the current and potential applications and limitations. International journal of environmental research and public health, 19(18), 11278.‏
  • Chen, C., Zhang, K. Z., Chu, Z., & Lee, M. (2024). Augmented reality in the metaverse market: the role of multimodal sensory interaction. Internet Research, 34(1), 9-38.‏
  • Gadekallu, T. R., Wang, W., Yenduri, G., Ranaweera, P., Pham, Q. V., da Costa, D. B., & Liyanage, M. (2023). Blockchain for the metaverse: A review. Future Generation Computer Systems, 143, 401-419.‏
  • Zhang, Z., Song, X., Liu, L., Yin, J., Wang, Y., & Lan, D. (2021). Recent advances in blockchain and artificial intelligence integration: Feasibility analysis, research issues, applications, challenges, and future work. Security and Communication Networks, 2021(1), 9991535.‏
  • Song, C., Shin, S. Y., & Shin, K. S. (2023). Exploring the key characteristics and theoretical framework for research on the metaverse. Applied Sciences, 13(13), 7628.‏
  • Huawei, H., Qinnan, Z., Taotao, L., Qinglin, Y., Zhaokang, Y., Junhao, W., ... & Zheng, Z. (2023). Economic systems in the metaverse: Basics, state of the art, and challenges. ACM Computing Surveys, 56(4), 1-33.‏
  • Hennig-Thurau, T., Aliman, D. N., Herting, A. M., Cziehso, G. P., Linder, M., & Kübler, R. V. (2023). Social interactions in the metaverse: Framework, initial evidence, and research roadmap. Journal of the Academy of Marketing Science, 51(4), 889-913.‏
  • Aloqaily, M., Bouachir, O., Karray, F., Al Ridhawi, I., & El Saddik, A. (2022). Integrating digital twin and advanced intelligent technologies to realize the metaverse. IEEE Consumer Electronics Magazine, 12(6), 47-55.‏
  • Karaarslan, E., & Yazici Yilmaz, S. (2023). Metaverse and Decentralization. In Metaverse: Technologies, Opportunities and Threats (pp. 31-44). Singapore: Springer Nature Singapore.‏
  • Benzekki, K., El Fergougui, A., & Elbelrhiti Elalaoui, A. (2016). Software‐defined networking (SDN): a survey. Security and communication networks, 9(18), 5803-5833.‏
  • Sahu, H., & Singh, N. (2018). Software-defined storage. In Innovations in Software-Defined Networking and Network Functions Virtualization (pp. 268-290). IGI Global.‏
  • Darabseh, A., Al-Ayyoub, M., Jararweh, Y., Benkhelifa, E., Vouk, M., & Rindos, A. (2015, August). SDDC: A software defined datacenter experimental framework. In 2015 3rd international conference on future internet of things and cloud (pp. 189-194). IEEE.‏
  • Yang, Z., Cui, Y., Li, B., Liu, Y., & Xu, Y. (2019, July). Software-defined wide area network (SD-WAN): Architecture, advances and opportunities. In 2019 28th International Conference on Computer Communication and Networks (ICCCN) (pp. 1-9). IEEE.‏
  • Moubayed, A., Refaey, A., & Shami, A. (2019). Software-defined perimeter (sdp): State of the art secure solution for modern networks. IEEE Network, 33(5), 226-233.‏
  • Paillisse, J., Portoles, M., Lopez, A., Rodriguez-Natal, A., Iacobacci, D., Leong, J., ... & Hooda, S. (2020, November). SD-access: practical experiences in designing and deploying software defined enterprise networks. In Proceedings of the 16th International Conference on Emerging Networking EXperiments and Technologies (pp. 496-508).‏
  • Abbasi, A. A., Abbasi, A., Shamshirband, S., Chronopoulos, A. T., Persico, V., & Pescapè, A. (2019). Software-defined cloud computing: A systematic review on latest trends and developments. IEEE Access, 7, 93294-93314.‏
  • Zhang, X., Min, G., Li, T., Ma, Z., Cao, X., & Wang, S. (2023). AI and blockchain empowered metaverse for web 3.0: Vision, architecture, and future directions. IEEE Communications Magazine, 61(8), 60-66.‏
  • Chu, N. H., Hoang, D. T., Nguyen, D. N., Phan, K. T., Dutkiewicz, E., Niyato, D., & Shu, T. (2023). Metaslicing: A novel resource allocation framework for metaverse. IEEE Transactions on Mobile Computing, 23(5), 4145-4162.‏
  • Kabanda, G., Chipfumbu, C. T., & Chingoriwo, T. (2022). A Cybersecurity Model for a Roblox-based Metaverse Architecture Framework. British Journal of Multidisciplinary and Advanced Studies, 3(2), 105-141.‏
  • Nguyen, C. T., Hoang, D. T., Nguyen, D. N., & Dutkiewicz, E. (2022, June). Metachain: A novel blockchain-based framework for metaverse applications. In 2022 IEEE 95th Vehicular Technology Conference:(VTC2022-Spring) (pp. 1-5). IEEE.‏
  • Ren, Y., Lv, Z., Xiong, N. N., & Wang, J. (2024). HCNCT: A cross-chain interaction scheme for the blockchain-based metaverse. ACM Transactions on Multimedia Computing, Communications and Applications, 20(7), 1-23.‏
  • Yang, Q., Zhao, Y., Huang, H., Xiong, Z., Kang, J., & Zheng, Z. (2022). Fusing blockchain and AI with metaverse: A survey. IEEE Open Journal of the Computer Society, 3, 122-136.‏
  • Yang, K., Zhang, Z., Youliang, T., & Ma, J. (2023). A secure authentication framework to guarantee the traceability of avatars in metaverse. IEEE Transactions on Information Forensics and Security, 18, 3817-3832.‏
  • Wang, Y., Su, Z., Zhang, N., Xing, R., Liu, D., Luan, T. H., & Shen, X. (2022). A survey on metaverse: Fundamentals, security, and privacy. IEEE Communications Surveys & Tutorials, 25(1), 319-352.‏
Year 2024, Volume: 4 Issue: 2, 146 - 156
https://doi.org/10.57019/jmv.1541821

Abstract

References

  • Joshua, J. (2017). Information bodies: computational anxiety in neal stephenson's snow crash. Interdisciplinary Literary Studies, 19(1), 17-47.‏
  • Hamad, A., & Jia, B. (2022). How virtual reality technology has changed our lives: an overview of the current and potential applications and limitations. International journal of environmental research and public health, 19(18), 11278.‏
  • Chen, C., Zhang, K. Z., Chu, Z., & Lee, M. (2024). Augmented reality in the metaverse market: the role of multimodal sensory interaction. Internet Research, 34(1), 9-38.‏
  • Gadekallu, T. R., Wang, W., Yenduri, G., Ranaweera, P., Pham, Q. V., da Costa, D. B., & Liyanage, M. (2023). Blockchain for the metaverse: A review. Future Generation Computer Systems, 143, 401-419.‏
  • Zhang, Z., Song, X., Liu, L., Yin, J., Wang, Y., & Lan, D. (2021). Recent advances in blockchain and artificial intelligence integration: Feasibility analysis, research issues, applications, challenges, and future work. Security and Communication Networks, 2021(1), 9991535.‏
  • Song, C., Shin, S. Y., & Shin, K. S. (2023). Exploring the key characteristics and theoretical framework for research on the metaverse. Applied Sciences, 13(13), 7628.‏
  • Huawei, H., Qinnan, Z., Taotao, L., Qinglin, Y., Zhaokang, Y., Junhao, W., ... & Zheng, Z. (2023). Economic systems in the metaverse: Basics, state of the art, and challenges. ACM Computing Surveys, 56(4), 1-33.‏
  • Hennig-Thurau, T., Aliman, D. N., Herting, A. M., Cziehso, G. P., Linder, M., & Kübler, R. V. (2023). Social interactions in the metaverse: Framework, initial evidence, and research roadmap. Journal of the Academy of Marketing Science, 51(4), 889-913.‏
  • Aloqaily, M., Bouachir, O., Karray, F., Al Ridhawi, I., & El Saddik, A. (2022). Integrating digital twin and advanced intelligent technologies to realize the metaverse. IEEE Consumer Electronics Magazine, 12(6), 47-55.‏
  • Karaarslan, E., & Yazici Yilmaz, S. (2023). Metaverse and Decentralization. In Metaverse: Technologies, Opportunities and Threats (pp. 31-44). Singapore: Springer Nature Singapore.‏
  • Benzekki, K., El Fergougui, A., & Elbelrhiti Elalaoui, A. (2016). Software‐defined networking (SDN): a survey. Security and communication networks, 9(18), 5803-5833.‏
  • Sahu, H., & Singh, N. (2018). Software-defined storage. In Innovations in Software-Defined Networking and Network Functions Virtualization (pp. 268-290). IGI Global.‏
  • Darabseh, A., Al-Ayyoub, M., Jararweh, Y., Benkhelifa, E., Vouk, M., & Rindos, A. (2015, August). SDDC: A software defined datacenter experimental framework. In 2015 3rd international conference on future internet of things and cloud (pp. 189-194). IEEE.‏
  • Yang, Z., Cui, Y., Li, B., Liu, Y., & Xu, Y. (2019, July). Software-defined wide area network (SD-WAN): Architecture, advances and opportunities. In 2019 28th International Conference on Computer Communication and Networks (ICCCN) (pp. 1-9). IEEE.‏
  • Moubayed, A., Refaey, A., & Shami, A. (2019). Software-defined perimeter (sdp): State of the art secure solution for modern networks. IEEE Network, 33(5), 226-233.‏
  • Paillisse, J., Portoles, M., Lopez, A., Rodriguez-Natal, A., Iacobacci, D., Leong, J., ... & Hooda, S. (2020, November). SD-access: practical experiences in designing and deploying software defined enterprise networks. In Proceedings of the 16th International Conference on Emerging Networking EXperiments and Technologies (pp. 496-508).‏
  • Abbasi, A. A., Abbasi, A., Shamshirband, S., Chronopoulos, A. T., Persico, V., & Pescapè, A. (2019). Software-defined cloud computing: A systematic review on latest trends and developments. IEEE Access, 7, 93294-93314.‏
  • Zhang, X., Min, G., Li, T., Ma, Z., Cao, X., & Wang, S. (2023). AI and blockchain empowered metaverse for web 3.0: Vision, architecture, and future directions. IEEE Communications Magazine, 61(8), 60-66.‏
  • Chu, N. H., Hoang, D. T., Nguyen, D. N., Phan, K. T., Dutkiewicz, E., Niyato, D., & Shu, T. (2023). Metaslicing: A novel resource allocation framework for metaverse. IEEE Transactions on Mobile Computing, 23(5), 4145-4162.‏
  • Kabanda, G., Chipfumbu, C. T., & Chingoriwo, T. (2022). A Cybersecurity Model for a Roblox-based Metaverse Architecture Framework. British Journal of Multidisciplinary and Advanced Studies, 3(2), 105-141.‏
  • Nguyen, C. T., Hoang, D. T., Nguyen, D. N., & Dutkiewicz, E. (2022, June). Metachain: A novel blockchain-based framework for metaverse applications. In 2022 IEEE 95th Vehicular Technology Conference:(VTC2022-Spring) (pp. 1-5). IEEE.‏
  • Ren, Y., Lv, Z., Xiong, N. N., & Wang, J. (2024). HCNCT: A cross-chain interaction scheme for the blockchain-based metaverse. ACM Transactions on Multimedia Computing, Communications and Applications, 20(7), 1-23.‏
  • Yang, Q., Zhao, Y., Huang, H., Xiong, Z., Kang, J., & Zheng, Z. (2022). Fusing blockchain and AI with metaverse: A survey. IEEE Open Journal of the Computer Society, 3, 122-136.‏
  • Yang, K., Zhang, Z., Youliang, T., & Ma, J. (2023). A secure authentication framework to guarantee the traceability of avatars in metaverse. IEEE Transactions on Information Forensics and Security, 18, 3817-3832.‏
  • Wang, Y., Su, Z., Zhang, N., Xing, R., Liu, D., Luan, T. H., & Shen, X. (2022). A survey on metaverse: Fundamentals, security, and privacy. IEEE Communications Surveys & Tutorials, 25(1), 319-352.‏
There are 25 citations in total.

Details

Primary Language English
Subjects Information Technology in Design
Journal Section Research Articles
Authors

Noha Abd Elkareem 0000-0002-0941-8513

Mazen Selim This is me 0000-0001-5366-9515

Ahmed Shalaby 0000-0002-7326-2701

Early Pub Date November 25, 2024
Publication Date
Submission Date September 1, 2024
Acceptance Date November 20, 2024
Published in Issue Year 2024 Volume: 4 Issue: 2

Cite

APA Abd Elkareem, N., Selim, M., & Shalaby, A. (2024). Software-Defined Metaverse (SDM) Architecture. Journal of Metaverse, 4(2), 146-156. https://doi.org/10.57019/jmv.1541821

Journal of Metaverse
is indexed and abstracted by
Scopus and DOAJ

Publisher
Izmir Academy Association
www.izmirakademi.org