Abstract

The 20th century brought about major social challenges related to civil and human rights, triggering changes in urban environments and gradually adjusting the spatial and functional performances of cities to the needs of all users. In this article, the concept of Universal Urban Design (i.e., “Design for All”) is regarded as a sustainable placemaking process which enables the higher accessibility and usability of cities for all people, regardless of their age or (dis)abilities. The pilot project “Creating Accessible Pedestrian Corridors by the Limitless GIS Application” conduced in Serbia from 2017 to 2019 by the Faculty of Architecture at the University of Belgrade and the Non-Governmental Organization (NGO) Limitless proposes an innovative approach to urban design. Based on information and communication technology (ICT) adaptation, it is focused on the alternative concept-design of buildings, provision of ICT-based infrastructure, socioeconomic integration of all users, and ultimately on overall urban sustainability. The main outcome of the project was the development of a Geographic Information System (GIS) android application and an e-platform for adaptive placemaking. The project also provides a set of accessibility criteria based on Universal Urban Design, criteria that enable the mapping of locations based on the type of use, a set of recommendations for identified problems, as well as a brief analysis of the latest technological solutions for overcoming detected physical barriers. The Limitless GIS android application differs from the existing ones since it primarily identifies two target groups: (1) people with disabilities who could upload necessary data by established criteria; and (2) employees in the public sector (city authorities and municipalities) in charge of planning alternative routes and setting priorities and investment costs based on the identified problems. Pilot results of the project have revealed that in the current Serbian practice, there is still a lack of planned, consistent and continuous movement routes in urban areas. Terrain configuration represents a serious limitation for people with disabilities, while lifting platforms are recognized as a better solution than ramps (both for paraplegics and quadriplegics), due to their higher efficiency and minimized spatial requirements. Therefore, the android application and e-platform presented in this article contribute to the detection of actual problems at the local level as well as to the overall improvement of planning/design practice in Serbian cities.

Highlights

  • The 20th century brought about major social challenges related to civil and human rights, triggering changes in urban environments and gradually adjusting the spatial and functional performances of cities to the needs of all users, regardless of their age orabilities

  • The main criteria of accessibility were defined according to the information input provided by the Serbian Alliance of Paraplegics and Quadriplegics (Table 1), as the main advisor related to the issues of accessibility and the needs of users with disabilities

  • The Limitless Geographic Information System (GIS) application was created by the compailer cordova android studies using js, php, html, css and SQL (Structured Query Language)

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Summary

Introduction

The 20th century brought about major social challenges related to civil and human rights, triggering changes in urban environments and gradually adjusting the spatial and functional performances of cities to the needs of all users, regardless of their age or (dis)abilities. Claiming that “everyone should have access to, or as extensively as possible, be able to use public services by designing products, programs and services without special adjustments and specialized design solutions” [2], this approach could be considered as a placemaking process. It should be interdisciplinary, systematic, comprehensive and innovative, based on a collaborative model supported by the use of smart ICT solutions and instruments [3]. Most of the offered solutions are physical and with limited application (e.g., ramps, grab-bars, wider doors, lifts, handles and switches, textured footpaths, hydraulic lifts to trains and buses, vibrating plates at traffic lights, audio warnings, etc.)

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