scholarly journals Prognostic Modelling for Smart cities using Smart Agents and IoT: A Proposed Solution for Sustainable Development

Author(s):  
Shafqat Ahsaan ◽  
Ashish Mourya
2021 ◽  
Vol 13 (2) ◽  
pp. 769
Author(s):  
Mona Treude

Cities are becoming digital and are aiming to be sustainable. How they are combining the two is not always apparent from the outside. What we need is a look from inside. In recent years, cities have increasingly called themselves Smart City. This can mean different things, but generally includes a look towards new digital technologies and claim that a Smart City has various advantages for its citizens, roughly in line with the demands of sustainable development. A city can be seen as smart in a narrow sense, technology wise, sustainable or smart and sustainable. Current city rankings, which often evaluate and classify cities in terms of the target dimensions “smart” and “sustainable”, certify that some cities are both. In its most established academic definitions, the Smart City also serves both to improve the quality of life of its citizens and to promote sustainable development. Some cities have obviously managed to combine the two. The question that arises is as follows: What are the underlying processes towards a sustainable Smart City and are cities really using smart tools to make themselves sustainable in the sense of the 2015 United Nations Sustainability Goal 11? This question is to be answered by a method that has not yet been applied in research on cities and smart cities: the innovation biography. Based on evolutionary economics, the innovation biography approaches the process towards a Smart City as an innovation process. It will highlight which actors are involved, how knowledge is shared among them, what form citizen participation processes take and whether the use of digital and smart services within a Smart City leads to a more sustainable city. Such a process-oriented method should show, among other things, to what extent and when sustainability-relevant motives play a role and which actors and citizens are involved in the process at all.


2021 ◽  
Author(s):  
Arodh Lal Karn ◽  
Sharnil Pandya ◽  
Abolfazl Mehbodniya ◽  
Farrukh Arslan ◽  
Dilip Kumar Sharma ◽  
...  

2019 ◽  
Vol 8 (3) ◽  
pp. 133 ◽  
Author(s):  
Vaidehi Daptardar ◽  
Manasi Gore

The concept of Sustainable development underlines the long lasting development of an economy by an efficient resource use fulfilling the economic, social and environmental aspects together. The SDGs by the UNDP focus  on 17 goals for all countries to end poverty, protect the planet and ensure that all people enjoy peace and prosperity.The mission of Smart Cities in India is to promote cities that provide core infrastructure and give a decent quality of life to its citizens, a clean and sustainable environment and application of ‘Smart’ Solutions. The focus is on sustainable and inclusive development of the Mega cities, an indispensable outcome of the development process and urbanization implied in it. During the course of economic development over last 70 years in India, many cities have emerged as unsustainable and highly vulnerable to manmade calamities.This paper would elaborate on the details of Smart city project in India in the light of Sustainable development. The Smart cities mission though aims at sustainable development, this path is full of challenges along with some opportunities in disguise. The paper would suggest some policy implications such as developing smart villages along with these smart cities to bridge the gap between the rural and urban India.   Keywords: Smart city mission, Sustainable development, Smart villages, Sustainable Development Goals (SDGs)


Author(s):  
Natalia Vukovic ◽  
Ulyana Koriugina ◽  
Daria Illarionova ◽  
Daria Pankratova ◽  
Polina Kiseleva ◽  
...  

This study aims to estimate and explore the experience of introducing renewable energy use in the context of the world’s smart cities. In this regard, the study points out that the use of green energy is an important part of sustainable development. Environmental problems are a matter of global concern. Hence sustainable development is one of the approaches to end the harmful anthropogenic impact. The work includes quantitative assessment methods, for example, statistics, quantitative analysis, analogy, and synthesis. As a result, the analysis confirms that the effective development of a smart green city is impossible without the introduction of several renewable energy sources, the integrated use of which will reduce the likelihood of problems with the city’s energy supply. Likewise, the outcome accentuates that the desire to fully switch to renewable energy sources (RES) can be accompanied by several problems as the creation of RES technologies does not always take the risk of abnormal situations into account. In conclusion, the research findings are recommended to be taken into consideration by researchers in the field of smart and sustainable cities development, as well as urbanists and economists for designing future smart green cities based on renewable energy sources.


Author(s):  
Olga Burmatova

This chapter is devoted to the study of the role of ecological subsystem in the structure of the sustainable development program of smart city. The author suggests the logic of building the environmental strategy of the city as a long-term landmark of its sustainable development including the environmental mission, vision of the future, goals and priorities, programs and their implementation, target indicators for assessing results, and consequences of realization programs. Certain attention is paid to the city as an object of research with a focus on environmental problems. The characteristics of the factors affecting the development of the ecological situation in the city are shown. A system of criteria and indicators that can be used to assess the impact of the planned environmental activities is proposed.


2022 ◽  
pp. 216-232
Author(s):  
Ayfer Gedikli ◽  
Cihan Yavuz Taş ◽  
Nur Billur Taş

Increasing greenhouse effects and global warming have been threatening the environment. Cities have directed their development strategies towards smart policies aiming to improve the quality of life of their inhabitants through sustainable environment and energy resources. Therefore, it became a very critical strategy to redefine urban energy sources and apply green technologies in all means of city lives for sustainable cities and reaching Sustainable Development Goals. In this chapter, background information for the role of cities in climate change and environmental pollution globally will be explained. Then a theoretical framework for smart cities and their important features focusing on technology innovation, smart governance, energy efficiency, waste management, as well as green buildings, smart grid-smart lighting, and smart mobility will be analyzed. Finally, sustainable development policy suggestions for sustainable plans and programs at the urban level within the current legislative framework will be put forth.


2019 ◽  
Vol 11 (24) ◽  
pp. 7179
Author(s):  
Daniel S. Oh

As the smart city concept and applications continue to evolve, traditional architects and urban designers are facing an increasingly uncertain future. This paper outlines an innovative educational format to bolster and perpetuate the interdisciplinary nature of architects and urban designers that resonates with both sustainable development (SD) and smart cities (SCs). By applying ‘connective knowledge’ to the concept of interdisciplinarity education, a method was established that uses the SC concept to expand upon and create a bridge between distant disciplines in the context of higher education sustainable development (HESD). As a complementary educational pedagogy to the ‘whole institution approach’ to reduce barriers in higher education institutions (HEIs), this paper highlights an opportunity to apply the SC concept as a basis to construct an interdisciplinary design workshop to focus on building inter-personal competence, targeting university-level students majoring in architecture and urban design. The design workshop used microcontrollers and sensors as these are scalable and easily learnt building blocks of the Internet of Things and SCs. The inter-disciplinary workshop ran for 16 weeks with 14 students majoring in architecture and urban design and electrical engineering. Based on interviews and course evaluations, the experiment was vetted using capacities of inter-personal competence in sustainable development. A series of insights and findings from the design workshop indicated positive initial outcomes that were used to form a set of working criteria for the interdisciplinary design workshop. Future work will include structuring empirical data collection and analysis and expanding collaborations with other distant disciplines such as public administration and social innovation, as delineated by the SC concept.


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