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The Sustainable City and the Smart City: measuring urban entropy first

机译:可持续城市和智能城市:首先测量城市熵

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It is quite difficult to define what the Smart City is: some studies try to understand urban smartness by considering a set of variables inside the urban system. Most likely, a different method can be found, starting from the assumption that the city could be considered as a complex system. In a way, we can say that the Smart City is a physical space in which technology is widespread, available and inclusive and supports a new growth of social capital, the renewal of the material urban dimension and allows the development of new functional systems throughout the "virtualization" of some urban activities. The process towards the knowledge of "urban smartness" is conditioned to a first step, which is a common phase in the two new dimensions of modern urban planning: sustainable planning and smart planning. Both of these two dimensions try to manage the evolution of the urban system and drive it towards a future state that should be compatible with the available resources as well as sustainable considering the future needs of human beings as well as the planet. In order to initiate the management of territorial transformation, there is one first obligatory step in common with all new urban planning: the reduction of urban entropy. Urban entropy represents the main obstacle to starting new sustainable processes of urban planning and corresponds to all the kinds of urban dyscrasia that can occur within the urban subsystems. In order to reduce urban entropy, we first need to develop a way to identify and to measure it inside the different city sub-systems. This paper proposes a useful method which can be used to measure it and to envisage urban actions aimed at reducing negativity of the city by using new technologies.
机译:确定智能城市是非常困难的:一些研究通过考虑城市系统内的一组变量来试图了解城市智能性。最有可能的是,从假设可以被视为复杂系统的假设开始,可以找到不同的方法。在某种程度上,我们可以说,智能城市是一种物理空间,其中技术广泛,可用和包容性,并支持社会资本的新增长,更新材料城市维度,并允许在整个过程中开发新的功能系统一些城市活动的“虚拟化”。 “城市智能性”的过程的过程是一个第一步,这是现代城市规划两种新维度的常见阶段:可持续规划和智能规划。这两种维度都试图管理城市系统的演变,并将其推向一个应该与可用资源兼容的未来状态,以及考虑到人类的未来需求以及地球的需求。为了启动领土转型的管理,与所有新城市规划有一个共同的一项义务迈出:城市熵的减少。城市熵代表了开展城市规划新可持续发展过程的主要障碍,并对应于城市子系统内可能发生的所有城市多克拉斯。为了减少城市熵,我们首先需要开发一种方法来识别和测量不同的城市子系统。本文提出了一种可用于衡量它的有用方法,并设想旨在通过使用新技术降低城市消极性的城市行动。

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