Methodology for objects selection and classification of the urban planning system on the basis of voluntary geographic information

2021 ◽  
Author(s):  
A. V. Ignatyev
2021 ◽  
Vol 13 (14) ◽  
pp. 7576
Author(s):  
Ana Mitić-Radulović ◽  
Ksenija Lalović

In recent years, nature-based solutions have been increasingly promoted as a climate change adaptation instrument, strongly advocated to be co-created. Achieving clear, coherent, and ambitious urban greening strategies, embedded in urban planning and developed in a co-creative, participatory and inclusive manner, is highly challenging within the EU enlargement context. In this article, such challenges are studied through two recent urban development initiatives in Belgrade, the Capital of Serbia: the first initiative focuses on planning the new Linear Park, within the framework of the CLEVER Cities Horizon 2020 project; the second initiative envisages the transformation of the privatised Avala Film Complex in the Košutnjak Urban Forest, primarily led by private interests but supported by the local authorities. The multiple-case study research method is applied, with an exploratory purpose and as a basis for potential future research on evaluation of co-creation processes for NBS implementation. The theoretical basis of this article is founded in the research on sustainability transitions, focusing on multi-level perspective (MLP) framework. The urban planning system in Belgrade and Serbia is observed as a socio-technical regime of the MLP. In such framework, we recognize co-creative planning of the Linear Park as a niche innovation. We interpret opposition towards planning of the Avala Film Complex as escalation, or an extreme element of the socio-technical landscape, comprised of civic unrests and political tensions on one side, combined with the climate crisis and excessive pollution on the other side. Moreover, the article examines informal urban planning instruments that can be implemented by the practitioners of niche innovations, that could support urban planners and NBS advocates in the Serbian and EU enlargement contexts to face the challenges of motivating all stakeholders to proactively, constructively and appropriately engage in co-creation.


2011 ◽  
Vol 4 (3) ◽  
pp. 163-170 ◽  
Author(s):  
Reazul Ahsan ◽  
Sadasivam Karuppannan ◽  
Jon Kellett

2018 ◽  
Vol 7 (4.38) ◽  
pp. 1146
Author(s):  
V. K. Kalichkin ◽  
A. I. Pavlova ◽  
A. F. Petrov ◽  
V. A. Smolyakov

The article proposes the methodology for the automated classification of uplands using Geographic Information System (GIS) and Neural Expert System (NES). Quantitative indicators of topography are used as the basis of the proposed classification. A database consisting of topographic, soil, and land use maps was created using ArcGIS 10 geographic information system. A topologically correct digital elevation model (DEM) was created by the ANUDEM interpolation method. The DEM contains the following maps: hypsometric, steepness and slopes exposure, plan, profile, common curvature of the ground surface, and cumulative runoff maps. The boundaries of elementary surfaces (ES), which are homogeneous morphological formations, are established. Parameters characterizing the Stream Power Index (SPI) are taken into account. The essence of the proposed classification consists in attributing of ES to a certain group of lands based on aggregate of features. To do this, partial scales were created, containing indicators of topography, soil cover, land drainage conditions, as well as the degree of erosion development. The authors formed knowledge base for traning the NES using GIS database and partial scales of estimates. Teaching of neural network was carried out. The classification and topology of land was carried out by means of the NES. The uplands are distributed in flat and slightly convex areas. They are characterized by the following indicators: the curvature of the ground surface: plan curvature (0 – 0.03), profile curvature (0 – 0.15), common curvature (0 – 0.22); slope angles (less than 1.5о); horizontal dissection in elevation (less than 0.5 km/km2), vertical dissection (less than 5 m); and SPI (from -13.80 to -6.47). Electronic map of uplands of LLC «Salair» land-use area was created in the ArcGIS 10 environment.  


Author(s):  
Diego Fernando Castellanos Barrero

Resumen El ordenamiento territorial como disciplina ha venido aplicándose alrededor del mundo desde hace ya mucho tiempo; evidentemente sus procesos se han optimizado, y han evolucionado no solo técnica sino conceptualmente. Sin embargo, la velocidad a la que crecen actualmente las ciudades genera una brecha cada vez mayor con los procesos de planificación, que difícilmente pueden producir políticas o acciones urbanísticas que lleguen a tiempo a los territorios.La aparición en escena de los Sistemas de Información Geográfica ha ofrecido una nueva variedad de métodos y herramientas que en concordancia con los acelerados procesos de desarrollo urbano, han fortalecido la cultura de la planeación en la reducción de sus tiempos de análisis, la adquisición de datos y fundamentalmente en la toma de decisiones. En ese sentido, este artículo plantea la aplicabilidad de los SIG en el Ordenamiento Territorial, con base en la profunda relación existente entre los componentes básicos del primero y las metodologías de trabajo del segundo, y mediante ejemplos de algunas de las aplicaciones prácticas que se le pueden dar a esta nueva tecnología en el ámbito del urbanismo. Palabras ClavePlanificación urbana, Urbanismo, Relaciones Espaciales, Territorio. Abstract Urban planning as a discipline has been used around the world since long time ago; obviously it´s processes have improved and it has evolved not only technically but conceptually. However, the accelerated growth process of the cities is producing an every time bigger breach with the planning processes, that hardly produce on time policies or urban actions to apply on the territories. The appearance of the Geographic Information Systems has offered a new variety of methods and tools that according with the strong urban growth, has helped to improve the planning culture reducing the duration of its analyzing processes, the data acquisition, and mainly the decision making. In that order, this paper set up some of the application methods of GIS in Urban Planning, based on the deep relation that exist between the basic components of the first and the work methodologies of the second one, and using examples about some of the practical uses that may have this new technology at the urbanism field.KeywordsUrban Planning, Urbanism, Spatial Relations, Territory.


2017 ◽  
Vol 19 (1) ◽  
pp. 1
Author(s):  
Beny Harjadi

Work criteria and indicator of Catchments Area need to be determined because the success and the failure of cultivating Catchments Area can be monitored and evaluated through the determined criteria. Criteria Indicators in utilizing land, one of them is determined based on the erosion index and the ability of utilizing land, for analyzing the land critical level. However, the determination of identification and classification of land critical level has not been determined; as a result the measurement of how wide the real critical land is always changed all the year. In this study, it will be tried a formula to determine the land critical/eve/ with various criteria such as: Class KPL (Ability of Utilizing Land) and the difference of the erosion tolerance value with the great of the erosion compared with land critical level analysis using remote sensing devices. The aim of studying land critical level detection using remote sensing tool and Geographic Information System (SIG) are:1. The backwards and the advantages of critical and analysis method2. Remote Sensing Method for critical and classification3. Critical/and surveyed method in the field (SIG) Collecting and analyzing data can be found from the field survey and interpretation of satellite image visually and using computer. The collected data are analyzed as:a. Comparing the efficiency level and affectivity of collecting biophysical data through field survey, sky photo interpretation, and satellite image analysis.b. Comparing the efficiency level and affectivity of land critical level data that are found from the result of KPL with the result of the measurement of the erosion difference and erosion tolerance.


2015 ◽  
Vol 1 (1) ◽  
pp. 85
Author(s):  
Sonila Xhafa ◽  
Albana Kosovrasti

Geographic information systems can be defined as a intelligent tool, to which it relates techniques for the implementation of processes such as the introduction, recording, storage, handling, processing and generation of spatial data. Use of GIS in urban planning helps and guides planners for an orderly development of settlements and infrastructure facilities within and outside urban areas. Continued growth of the population in urban centers generates the need for expansion of urban space, for its planning in terms of physical and social infrastructures in the service of the community, based on the principles of sustainable development. In addition urbanization is accompanied with numerous structural transformations and functional cities, which should be evaluated in spatial context, to be managed and planned according to the principles of sustainable development. Urban planning connects directly with land use and design of the urban environment, including physical and social infrastructure in service of the urban community, constituting a challenge to global levels. Use of GIS in this field is a different approach regarding the space, its development and design, analysis and modeling of various processes occurring in it, as well as interconnections between these processes or developments in space.


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