发展中国家智慧城市战略的战略分类

IF 5.4 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY Engineering Science and Technology-An International Journal-Jestech Pub Date : 2025-01-01 Epub Date: 2025-01-08 DOI:10.1016/j.jestch.2024.101936
Mesut Samasti , Emre Cakmak , Alper Ozpinar
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引用次数: 0

摘要

智慧城市代表了技术创新与城市管理相结合的前沿,以提高生活质量和城市环境的可持续性。虽然现有的研究主要集中在单个智慧城市的评估上,但在处理发展中国家不确定和不完整数据的系统分类方法方面存在显著差距。随着城市人口的持续增长,智能技术在城市规划和管理中的战略性整合变得至关重要,需要更复杂的评估方法。这些技术通过提高效率、经济增长和公民参与,为应对城市挑战提供了有希望的解决方案。本研究提出了一个新的框架,将区间值嗜中性集(IVNS)与EDAS方法结合起来,解决了这一差距,该框架专门用于处理发展中国家环境中固有的复杂性和不确定性。该研究广泛审查了在类似情况下应用的现有文献和方法,确定了当前方法的主要局限性,并建立了一个结合新标准和既定标准的强大框架。通过在多个城市环境中系统地应用IVNS-EDAS方法,本研究开发了一个综合分类系统,该系统考虑了智慧城市能力的定量指标和定性评估。研究结果展示了一个动态分类框架,该框架有效地处理了数据的不确定性,同时为城市规划者和政策制定者提供了清晰、可操作的见解。本文最后通过涉及不同利益相关者的详细计算研究验证了所提出方法的有效性,确认了其在全球范围内完善智慧城市战略的适用性和实用性,特别是在数据可靠性和完整性可能具有挑战性的发展中国家背景下。该研究为每个城市分类提供了具体的政策指导方针,为政策制定者提供了资源配置和战略规划的结构化框架,范围从新兴城市的基础设施发展到大都市地区的先进技术整合。
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Strategic classification of smart city strategies in developing countries
Smart cities represent the forefront of combining technological innovation with urban management to enhance the quality of life and sustainability of urban environments. While existing studies have focused on individual smart city evaluations, there is a notable gap in systematic classification approaches that can handle uncertain and incomplete data in developing countries. As urban populations continue to grow, the strategic integration of smart technologies in city planning and management becomes crucial, necessitating more sophisticated evaluation methodologies. These technologies offer promising solutions to urban challenges by improving efficiency, economic growth, and citizen engagement. This research addresses this gap by proposing a novel framework that combines Interval Valued Neutrosophic Sets (IVNS) with the EDAS Method, specifically designed to handle the complexities and uncertainties inherent in developing country contexts.
The study extensively reviews existing literature and methodologies applied in similar contexts, identifying key limitations in current approaches and building a robust framework that incorporates both new and established criteria. Through the systematic application of IVNS-EDAS methodology across multiple urban environments, this study develops a comprehensive classification system that accounts for both quantitative metrics and qualitative assessments of smart city capabilities. The results showcase a dynamic classification framework that effectively handles data uncertainty while providing clear, actionable insights for urban planners and policymakers. The paper concludes by validating the effectiveness of the proposed approach through a detailed computational study involving diverse stakeholders, confirming its applicability and utility in refining smart city strategies globally, particularly in developing country contexts where data reliability and completeness may be challenging.
The study provides specific policy guidelines for each city classification, offering policymakers a structured framework for resource allocation and strategic planning, ranging from foundational infrastructure development in emerging cities to advanced technology integration in metropolitan areas.
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来源期刊
Engineering Science and Technology-An International Journal-Jestech
Engineering Science and Technology-An International Journal-Jestech Materials Science-Electronic, Optical and Magnetic Materials
CiteScore
11.20
自引率
3.50%
发文量
153
审稿时长
22 days
期刊介绍: Engineering Science and Technology, an International Journal (JESTECH) (formerly Technology), a peer-reviewed quarterly engineering journal, publishes both theoretical and experimental high quality papers of permanent interest, not previously published in journals, in the field of engineering and applied science which aims to promote the theory and practice of technology and engineering. In addition to peer-reviewed original research papers, the Editorial Board welcomes original research reports, state-of-the-art reviews and communications in the broadly defined field of engineering science and technology. The scope of JESTECH includes a wide spectrum of subjects including: -Electrical/Electronics and Computer Engineering (Biomedical Engineering and Instrumentation; Coding, Cryptography, and Information Protection; Communications, Networks, Mobile Computing and Distributed Systems; Compilers and Operating Systems; Computer Architecture, Parallel Processing, and Dependability; Computer Vision and Robotics; Control Theory; Electromagnetic Waves, Microwave Techniques and Antennas; Embedded Systems; Integrated Circuits, VLSI Design, Testing, and CAD; Microelectromechanical Systems; Microelectronics, and Electronic Devices and Circuits; Power, Energy and Energy Conversion Systems; Signal, Image, and Speech Processing) -Mechanical and Civil Engineering (Automotive Technologies; Biomechanics; Construction Materials; Design and Manufacturing; Dynamics and Control; Energy Generation, Utilization, Conversion, and Storage; Fluid Mechanics and Hydraulics; Heat and Mass Transfer; Micro-Nano Sciences; Renewable and Sustainable Energy Technologies; Robotics and Mechatronics; Solid Mechanics and Structure; Thermal Sciences) -Metallurgical and Materials Engineering (Advanced Materials Science; Biomaterials; Ceramic and Inorgnanic Materials; Electronic-Magnetic Materials; Energy and Environment; Materials Characterizastion; Metallurgy; Polymers and Nanocomposites)
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