A hierarchical software architecture for smart firefighting platform

Zixiang Zhang, Nady Slam, Zhengqiang Di, Yu Zhu
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Abstract

To enhance the fire service system, many countries have conducted extensive research on “Smart Firefighting” platform architecture and achieved significant results. However, there are still numerous challenges that persist in the field. To address the challenges related to storage, computing, security, and scalability of large-scale data in the "Smart Firefighting" domain, we have conducted an in-depth study and comparison of existing "Smart Firefighting" platform architectures. Based on the analysis, we propose a novel architectural for the "Smart Firefighting" platform, which combines the strengths of traditional hierarchical architecture with the Cloud-Edge-End architectural, this integration effectively preserves the key features of both architectural styles, and the proposed fusion model is able to satisfy the computation and storage of large amounts of firefighting data while guaranteeing security. This architectural model can serve as a reference for the construction of highly available, high-performance, and more secure and stable "Smart Firefighting" platforms and holds significant importance in accelerating the development and maintenance of "Smart Firefighting" to ensure long-term social stability and security.
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智能消防平台的分层软件架构
为了加强消防系统,许多国家对 "智慧消防 "平台架构进行了广泛研究,并取得了显著成果。然而,该领域仍然存在诸多挑战。针对 "智慧消防 "领域中大规模数据的存储、计算、安全和可扩展性等方面的挑战,我们对现有的 "智慧消防 "平台架构进行了深入研究和比较。在分析的基础上,我们提出了一种新颖的 "智慧消防 "平台架构,该架构结合了传统分层架构和云-边-端架构的优点,这种融合有效地保留了两种架构风格的主要特点,所提出的融合模型能够在保证安全的前提下满足海量消防数据的计算和存储。该架构模型可为构建高可用、高性能、更安全稳定的 "智慧消防 "平台提供参考,对加快 "智慧消防 "的发展和维护,确保社会长治久安具有重要意义。
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