scholarly journals SMART SPECIALISATION DEVELOPMENT OPPORTUNITIES IN THE PIERIGAS REGION (LATVIA)

Author(s):  
Baiba RIVŽA ◽  
Ligita ĀZENA

There are two widely used “smart” concepts, often considered to be synonymous with one another - “smart city” and “smart specialisation”. The origin and initial meaning of each concept is different, although there are certain similarities. On the city level, multiple policy initiatives are oriented towards the concept of a “smart city”, which originally developed around the ICT infrastructure as a means to connect cities and thus provide opportunity for development. Recently the term “smart” has also found its way in regional policy. Therefore, it is necessary to interpret both concepts in a wider sense not limiting them only to meanings associated with technology. There is an empirical connection between smart specialisation development (in a wider sense) and introduction of smart cities (in a wider sense). But it does not mean that all regions (especially those with low manufacturing development index) should follow a strategy of research and development and/or hi-tech manufacturing. Smart development is a multi-dimensional concept, consisting of sustainable economic growth and sustainable city or regional development, based on the advantages of sustainable competition. It is also perceived as means to increase overall quality of life. This means that social and environmental capital also plays an important role together with infrastructural and ICT development.

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 ◽  
pp. 237-252
Author(s):  
Elena Laudante

The paper focuses on the importance of robotics and artificial intelligence inside of the new urban contexts in which it is possible to consider and enhance the different dimensions of quality of life such as safety and health, environmental quality, social connection and civic participation. Smart technologies help cities to meet the new challenges of society, thus making them more livable, attractive and responsive in order to plan and to improve the city of the future. In accordance with the Agenda 2030 Program for sustainable development that intends the inclusive, safe, resilient and sustainable city, the direction of growth and prosperity of urban environments is pursued by optimizing the use of resources and respecting the environment. In the current society, robotic technology is proposed as a tool for innovation and evolution in urban as well as industrial and domestic contexts. On the one hand the users-citizens who participate dynamically in the activities and on the other the new technological systems integrated in the urban fabric. Existing urban systems that are “amplified” of artificial and digital intelligence and give life to smart cities, physical places that allow new forms of coexistence between humans and robots in order to implement the level of quality of life and define “human centered” innovative solutions and services thus responding to the particular needs of people in an effective and dynamic way. The current city goes beyond the definition of smart city. In fact, as said by Carlo Ratti, it becomes a "senseable city", a city capable of feeling but also sensitive and capable of responding to citizens who define the overall performance of the city. The multidisciplinary approach through the dialogue between designers, architects, engineers and urban planners will allow to face the new challenges through the dynamics of robot integration in the urban landscape. The cities of the future, in fact, will be pervaded by autonomous driving vehicles, robotized delivery systems and light transport solutions, in response to the new concept of smart mobility, on a human scale, shared and connected mobility in order to improve management and control of the digitized and smart city. Automation at constant rates as the keystone for urban futures and new models of innovative society. Through the identification of representative case studies in the field of innovative systems it will be possible to highlight the connections between design, smart city and "urban" robotics that will synergically highlight the main "desirable" qualities of life in the city as a place of experimentation and radical transformations. In particular, parallel to the new robotic solutions and human-robot interactions, the design discipline will be responsible for designing the total experience of the user who lives in synergy with the robots, thus changing the socio-economic dynamics of the city.


2018 ◽  
Vol 245 ◽  
pp. 16002 ◽  
Author(s):  
Anatolijs Borodinecs ◽  
Aleksandrs Korjakins ◽  
Aleksandrs Zajacs ◽  
Anna Iufereva

Rapid urbanization leads to the cities expansion in both dimensions: horizontal and vertical. Thus causing significant increase of energy consumption and reduction of environment quality. Nowadays European Initiative on Smart Cities development becomes a very popular across the globe. The aim of this initiative is to insure sustainable city development taking into consideration quality of life and reduction of carbon emissions. Residential sector is one of biggest energy consumers and carbon emission production in Latvia. Also, city transport is a crucial carbon emission producers. In scope of this study the city development potential is analyzed. The increase of energy efficient scale is taking into consideration.


2020 ◽  
Vol 170 ◽  
pp. 05002
Author(s):  
Chaitanya Gokhale

To take the initiative of smart cities to new heights is a responsibility of every citizen. Bona fide progress will be seen when people's approach towards their city will change through awareness and education about the prevalent systems. This paper focuses on improving the cultural aspects of a smart city, especially visually, and on improving governance with reference to the 21st century. A majority of the information deals with the must-haves of smart city, later moving on to more specific problems. In the following paper, evaluation, analysis, ideas, innovative solutions along with comparisons and examples from life have been suggested with a view of enhancing the pre-existent, and further developing the cultural infrastructure of a smart city. This is proposed in a way that will help old traditions and historical heritage keep pace with modernism and other urban developments in the age of internet without changing their essence. This, in turn, will lead to touristic developments. Attention has also been paid to heritage restoration and its methods. Special focus has been given to the aesthetics of proposed, self-designed signage systems of the city. It is hoped that the insights presented herewith encourage greater enthusiasm towards art and encourage appreciation towards the culture and heritage of a smart city. This will add value to the quality of life of its citizens.


2021 ◽  
Vol 11 (17) ◽  
pp. 8198 ◽  
Author(s):  
Mauricio A. Ramírez-Moreno ◽  
Sajjad Keshtkar ◽  
Diego A. Padilla-Reyes ◽  
Edrick Ramos-López ◽  
Moisés García-Martínez ◽  
...  

Experts confirm that 85% of the world’s population is expected to live in cities by 2050. Therefore, cities should be prepared to satisfy the needs of their citizens and provide the best services. The idea of a city of the future is commonly represented by the smart city, which is a more efficient system that optimizes its resources and services, through the use of monitoring and communication technology. Thus, one of the steps towards sustainability for cities around the world is to make a transition into smart cities. Here, sensors play an important role in the system, as they gather relevant information from the city, citizens, and the corresponding communication networks that transfer the information in real-time. Although the use of these sensors is diverse, their application can be categorized in six different groups: energy, health, mobility, security, water, and waste management. Based on these groups, this review presents an analysis of different sensors that are typically used in efforts toward creating smart cities. Insights about different applications and communication systems are provided, as well as the main opportunities and challenges faced when making a transition to a smart city. Ultimately, this process is not only about smart urban infrastructure, but more importantly about how these new sensing capabilities and digitization developments improve quality of life. Smarter communities are those that socialize, adapt, and invest through transparent and inclusive community engagement in these technologies based on local and regional societal needs and values. Cyber security disruptions and privacy remain chief vulnerabilities.


2019 ◽  
Vol 4 (1) ◽  
pp. 1-10
Author(s):  
Etin Indrayani ◽  
Gatiningsih Gatiningsih

Abstract This study aims to analyze the implementation of Smart City that integrates villages and cities in Purwakarta Regency, identify and analyze any inhibiting factors that influence the development process of the City of Purwakarta towards the Smart City, identify and analyze the efforts of the Purwakarta Regency government in realizing Smart City. The research method used in this study is a qualitative research method with a descriptive approach.. The results showed that the smart city that was implemented in Purwakarta Regency focused more on the use of information technology to improve services to the community, meaning this concept was more accurately referred to as a digital city. Some programs that have been implemented by the Regional Government are the first steps to realize Purwakarta Regency as a smart city. Barriers and obstacles faced include: not yet comprehensive existing policies to accommodate the problems faced in the implementation of smart cities, ICT human resources are still limited both in quantity and quality, budget limitations cause the existing infrastructure is not optimal, especially in villages, interoperability is not optimal, and blueprint has not been prepared comprehensively. Efforts that have been made by the Purwakarta Regency government include: Several legal products both regent regulations and regent instructions have been issued to support the implementation of smart city, ICT competency enhancement, application interoperability in each OPD, budgeting for device maintenance, Budgeting for developing systems, and budgeting for improving the welfare of ICT employees. Keywords: Village and City Integration, Implementation of Smart City, Digital City, ICT Infrastructure


Author(s):  
Yasmin Mohd Adnan ◽  
Hasniyati Hamzah ◽  
Melasutra Md. Dali ◽  
Md Nasir Daud ◽  
Anuar Alias

Smart Cities have grown in prominence due to advancement in ICT and the new paradigm of sustainable city management and development. Whilst many authors have proposed guidelines and framework for Smart City implementation, less attention has been given to the assessment of Smart City performance. The mainstream Smart City assessment framework generally entails the quantitative assessment of factors, elements and initiatives categorised under the Smart City dimensions. However, this approach is problematic and impractical because it requires a large amount of different baseline data that is often at times unavailable due to various reasons. This paper describes an alternative framework for smart city assessment, one that is based on the modification of Giffmger’s to make it amenable to leaner data. The proposed assessment framework was adopted to assess the smart city performances of Seoul, Singapore, and Iskandar Malaysia which were then compared. With the use of the framework for the performance assessment, the city that has performed better than the others is able to be identified.


Author(s):  
C. Ellul ◽  
V. Coors ◽  
S. Zlatanova ◽  
R. Laurini ◽  
M. Rumor

<p><strong>Abstract.</strong> Simply defined, a Smart City is a city overlaid by a digital layer, which is used for the governance of the city. A Smart City uses intelligent technology to enhance our quality of life in urban environments, bringing together people and data from disparate sources such as sensors, demographics, topographic and 3D mapping, Building Information Models and many more. Increasingly, Smart Cities use this data in a variety of ways, to address key challenges related to transportation, communications, air quality, noise, well-being of the citizens, decision making relating to education and health and urban planning, as well as in relation to initiatives such as startups and fostering economic growth and employment within the city. As more data becomes available, the challenges of storing, managing and integrating such data are also multiplied.</p><p> This increasing interest in Smart Cities world-wide, along with a growing understanding of the importance of integrating “Smart” data with other data and wider applications for the benefit of citizens, made the choice of hosting the third Smart Data, Smart Cities conference in Delft – in conjunction with three other conferences – a very natural one. Together the four conferences were held during the week of 1st–5th October 2018, and alongside SDSC participants were invited to attend the ISPRS Technical Commission IV Symposium, the 13th 3D GeoInfo Conference and the 6th International FIG Workshop on 3D Cadastres. Participant interaction – and the ability to attend sessions across the four events – was particularly encouraged. SDSC 2018 itself was organised by the Urban Data Management Society (UDMS www.udms.net), ISPRS and TU Delft (the Delft University of Technology), and Professor Volker Coors Chaired the SDSC committee.</p><p> As in previous years, three key conference themes were proposed to represent the Smart Cities: <b>Smart Data</b> (sensor network databases, on-the-fly data mining, geographic and urban knowledge modeling and engineering, green computing, urban data analytics and big data, big databases and data management), <b>Smart People</b> (volunteered information, systems for public participation) and <b>Smart Cities</b> (systems of territorial intelligence, systems for city intelligence management,3D modeling of cities, internet of things, social networks, monitoring systems, mobility and transportation, smart-city-wide telecommunications infrastructure, urban knowledge engineering, urban dashboard design and implementation, new style of urban decision-making systems, geovisualization devoted to urban problems, disaster management systems).</p><p> This volume consists of 18 papers, which were selected from 34 submissions on the basis of double blind review, with each paper being reviewed by a minimum of three reviewers. These papers present novel research concerning the use of spatial information and communication technologies in Smart Cities, addressing different aspects of Smart Data and Smart Citizens. The selected papers tackle different aspects of Smart Cities: 3D; Citizen Engagement; transport, sustainable mobility; dashboards and web GIS; citizen engagement and participation; sensors; urban decision making.</p><p> The editors are grateful to the members of the Scientific Committee for their time and valuable comments, which contributed to the high quality of the papers. Reviews were contributed by: Giorgio Agugiaro, Maria Antoniabrovelli, Ken Arroyoohori, Martina Baucic, Michela Bertolotto, Pawel Boguslawski, Azedine Boulmakoul, Caesar Cardenas, Ofelia Cervantes, Volker Coors, Isabel Cruz, Vincenzo Delfatto, Claire Ellul, Tarun Ghawana, Gesquiere Gilles, Gerhard Groeger, Eberhard Gulch, Jan-Henrik Haunert, Stephen Hirtle, Umit Isikdag, Martin Kada, Snjezana Knezic, Robert Laurini, Liu Liu, Ed Manley, Viviana Mascardi, Marco Minghini, Raul Monroy, Regina Motz, Beniamino Murgante, Marco Painho, Dev Paudyal, Alenka Poplin, Ivana Racetin, Ismail Rakip Karas, Preston Rodrigues, David Sol, Wei Tu, Wei Tu, Genoveva Vargas, Kavita Vemuri, Edward Verbree, Mingshu Wang, Maribel Yasminasantos, Sisi Zlatanova. We are also grateful to the work of the local organising committee at TU Delft, without whom this conference would not have been possible. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume IV-4/W7, 2018 3rd International Conference on Smart Data and Smart Cities, 4–5 October 2018, Delft, The Netherlands</p>


2020 ◽  
Vol 5 (3) ◽  
Author(s):  
Sukmo Pinuji ◽  
Wahyuni Wahyuni

The concept of Smart City (SC) has been popular recently, and has been adopted by many cities in the world with various implementation and development. As the world most population now concentrates on urban area, a sustainable city planning and management become important. As the population keeps growing,pressure and tension on a city arise: space for living, waste management, traffic congestion, sufficient clean water resources, and other issues. Beginning in around 2009, the concept of SC was designed to solve problems related to city growth in a sustainable manner. By using technology, Internet of Things (IoT), and community participation, SC aims to make the city a livable place for its inhabitants, putting people as the center of interest and in quality of life in sustainable manners as ultimate goal. This paper aimed to deliver a study on the trend of SC adopted by two cities: Amsterdam and Jakarta. The study was conducted through literature review. The data were analyzed to compare the concept of SC in each city from different parameters, focusing on the developmentprocess, technological adoption, political and institutional arrangement and implementation. The results show that each city has specif ic strategy to implement SC, based on their economic, social, environment and demographic characteristics. It is also important to underline that the main concept of SC is to attract related stakeholders in taking charge of their roles for the success of SC. Furthermore, both cities has a sharing vision in putting environment as the main framework of the development of SC.


2021 ◽  
Vol 30 (30 (1)) ◽  
pp. 61-70
Author(s):  
Darie Gavrilut ◽  
Diana Teodora Trip ◽  
Carmen Florina Fagadar ◽  
Daniel Badulescu

The term smart city is often associated with the desire for accelerated modernization of space and urban social interactions, especially based on Information and Communications Technologies. Smart cities are creative and sustainable areas that bring improvements on the quality of life, a friendlier environment and where the prospects of/for economic development are stronger. Such cities are to be considered as the sum of the various improvements in urban infrastructure, the quality of services provided to citizens, the operational costs of public administration. Romania has several key cities that have begun their pivot from regular and only digitized cities, to smart cities. According to information from the Romanian Smart City Association (ARSC), in 2018, at Romanian national level, 24 cities could be considered smart, the following cities being most visible in terms of how many projects have been undertaken so as to develop a smart city: Alba Iulia city has 60 such projects, Cluj-Napoca city has 10, Arad has 9, Sibiu and Oradea each have 8 projects, and Bucharest has started six such projects. At 2020 level, we notice an increase in the number of projects in the following way: Alba-Iulia now has 106 projects, Cluj-Napoca has 54 projects, Timisoara 26, Arad and Iasi have each 19 projects, Brasov and Bucuresti (Sector 4) have 18 projects each, Oradea 17, Sibiu 15, and Piatra Neamț 15 projects. The main areas of interest being Smart Mobility, Smart Governance, Smart Living, Smart Economy, Smart Environment, and Smart People. Having set goals of cutting energy costs by 30% in the field of public transportation and an increase of 45% in terms of innovation products that are to be sourced locally, the city of Oradea has attracted project worth 369 million euros, and this entire sum has been achieved through EU funded grants.


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