smart citiesurban dataurban governanceurban mobilityurban simulation
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Abstract (AI)
Here we sketch the rudiments of what constitutes a smart city which we define as a city in which ICT is merged with traditional infrastructures, coordinated and integrated using new digital technologies. We first sketch our vision defining seven goals which concern: developing a new understanding of urban problems; effective and feasible ways to coordinate urban technologies; models and methods for using urban data across spatial and temporal scales; developing new technologies for communication and dissemination; developing new forms of urban governance and organisation; defining critical problems relating to cities, transport, and energy; and identifying risk, uncertainty, and hazards in the smart city. To this, we add six research challenges: to relate the infrastructure of smart cities to their operational functioning and planning through management, control and optimisation; to explore the notion of the city as a laboratory for innovation; to provide portfolios of urban simulation which inform future designs; to develop technologies that ensure equity, fairness and realise a better quality of city life; to develop technologies that ensure informed participation and create shared knowledge for democratic city governance; and to ensure greater and more effective mobility and access to opportunities for urban populations. We begin by defining the state of the art, explaining the science of smart cities. We define six scenarios based on new cities badging themselves as smart, older cities regenerating themselves as smart, the development of science parks, tech cities, and technopoles focused on high technologies, the development of urban services using contemporary ICT, the use of ICT to develop new urban intelligence functions, and the development of online and mobile forms of participation. Seven project areas are then proposed: Integrated Databases for the Smart City, Sensing, Networking and the Impact of New Social Media, Modelling Network Performance, Mobility and Travel Behaviour, Modelling Urban Land Use, Transport and Economic Interactions, Modelling Urban Transactional Activities in Labour and Housing Markets, Decision Support as Urban Intelligence, Participatory Governance and Planning Structures for the Smart City. Finally we anticipate the paradigm shifts that will occur in this research and define a series of key demonstrators which we believe are important to progressing a science of smart cities. Graphical abstract
Key Findings
1
A smart city is defined as one where ICT is merged with traditional infrastructures and coordinated through new digital technologies.
2
Seven proposed project areas include integrated urban databases, sensing and social media, network-performance modeling, and related smart-city research domains.
3
Six research challenges emphasize infrastructure management and optimization, cities as innovation laboratories, urban simulation, equity, democratic participation, and improved mobility.
4
Six smart-city development scenarios include newly planned smart cities, regeneration of older cities, science and technology hubs, ICT-enabled services, urban intelligence functions, and online participation.
5
The paper identifies seven goals spanning urban problem understanding, technology coordination, multiscale urban data use, communication, governance, critical urban systems, and risk assessment.
Research Object
Smart cities (urban systems adopting ICT-enabled services, sensing, networking, and participatory governance)
Research Subject
the goals, research challenges, scenarios, and project areas for understanding, coordinating, modeling, governing, and improving smart-city infrastructure, technologies, data, mobility, and quality of urban life
Publication Details
Publication Date
2012-11-01
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