可持续城市:先进技术发展趋势

Q4 Computer Science
Yifu Wang
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引用次数: 0

摘要

根据联合国人类住区规划署(人居署)的数据,按城市规模划分的人口分布如下:100万至500万中等城市;500万至1000万-大城市;以及1000万或更多的特大城市。市场情报与咨询研究所(MIC)估计,2025年台湾较大城市的人口将如下:新北市410万;台中市280万;高雄市260万;台北市250万;桃园市230万;台南市有180万人。根据联合国的定义,所有这些城市都被归类为中等城市。从区域规划的角度来看,台北基隆都会区可以算是一个特大城市。“城市化”已成为当今空间发展的必然趋势。然而,它带来了许多问题,如基础设施不足,无法满足需求;集约开发造成的各种污染(空气、水、土壤、噪音等);垃圾倾倒、资源浪费和稀缺,以及社会不平等等其他现象。“可持续城市”的概念是为了防止现有问题的恶化和新问题的形成。“可持续发展”是指在不影响子孙后代需求的情况下,满足当代人民需求的发展方法。“可持续城市”的定义是在不增加后代负担的情况下,提高城市的生活质量,包括环境、经济、政治和社会组成部分。考虑到这一点,本研究将当今可持续城市的技术范围定义为以信息通信技术为基础,在能源、资源、交通、防灾、医疗、教育、社会平等等领域建设宜居便利的城市。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainable Cities: Advanced Technological Development Trends
According to the United Nations Human Settlements Programme (UN-HABITAT), the population distribution by city size is categorized as follows: 1 to 5 million - medium-sized cities; 5 to 10 million - large cities; and 10 million or more - mega cities. The Market Intelligence & Consulting Institute (MIC) estimates that the populations of Taiwan's bigger cities in 2025 will be as follows: 4.1 million in New Taipei City; 2.8 million in Taichung City; 2.6 million in Kaohsiung City; 2.5 million in Taipei City; 2.3 million in Taoyuan City; and 1.8 million in Tainan City. All of them are classified as medium-sized cities, based on the UN definition. The Taipei-Keelung metropolitan area can be considered as a mega city from the perspective of regional planning."Urbanization" has become an inevitable trend in the development of today's space. However, it has brought about many problems, such as inadequate infrastructure that is unable to meet demands; various types of pollution (air, water, soil, noise, etc.) resulting from the intensive development; waste dumping, resource wasting and scarcity, and other phenomena such as social inequality. The concept of the "sustainable city" was developed to prevent the worsening of the existing problems and the formation of new ones. "Sustainable development" refers to a method of development that meets the needs of the people in the contemporary era without compromising the needs of future generations. A "sustainable city" is defined as improving the quality of life in a city, including environmental, economic, political, and social components, without increasing the burden on future generations. With this in mind, this study defines the technological scope of present-day sustainable cities as grounded in information communication technology to build livable and convenient cities, in the areas of energy, resources, transportation, disaster prevention, healthcare, education, social equality, and other fields.
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来源期刊
International Journal of Automation and Smart Technology
International Journal of Automation and Smart Technology Engineering-Electrical and Electronic Engineering
CiteScore
0.70
自引率
0.00%
发文量
0
审稿时长
16 weeks
期刊介绍: International Journal of Automation and Smart Technology (AUSMT) is a peer-reviewed, open-access journal devoted to publishing research papers in the fields of automation and smart technology. Currently, the journal is abstracted in Scopus, INSPEC and DOAJ (Directory of Open Access Journals). The research areas of the journal include but are not limited to the fields of mechatronics, automation, ambient Intelligence, sensor networks, human-computer interfaces, and robotics. These technologies should be developed with the major purpose to increase the quality of life as well as to work towards environmental, economic and social sustainability for future generations. AUSMT endeavors to provide a worldwide forum for the dynamic exchange of ideas and findings from research of different disciplines from around the world. Also, AUSMT actively seeks to encourage interaction and cooperation between academia and industry along the fields of automation and smart technology. For the aforementioned purposes, AUSMT maps out 5 areas of interests. Each of them represents a pillar for better future life: - Intelligent Automation Technology. - Ambient Intelligence, Context Awareness, and Sensor Networks. - Human-Computer Interface. - Optomechatronic Modules and Systems. - Robotics, Intelligent Devices and Systems.
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