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UID:pretalx-foss4g-2022-GPN87Y@talks.staging.osgeo.org
DTSTART;TZID=CET:20220826T123000
DTEND;TZID=CET:20220826T123500
DESCRIPTION:The challenges posed to the current urban mobility model by pol
 lution-related and urbanisation issues have resulted in significantly incr
 easing the importance of urban resilience. Mobility management\, pandemics
 ’ spreading\, equal access to services and climate crisis are just some 
 of the crucial issues that falls within the definition of urban resilience
 .\nOne very promising solution aiming to solve many of these issues has be
 en presented in 2016 by Professor Carlos Moreno under the name of “15-mi
 nutes city”. The paradigm is based on the idea that every citizen should
  be able to reach the essential services (supermarkets\, shops\, parks\, e
 tc) walking not more than 15 minutes from their home. The model is being t
 ested in some metropolitan cities around the world (e.g. Paris).\nHowever\
 , reorganizing the city so that it presents a 15-minutes structure is not 
 an easy task. It requires large resources and a careful planning based on 
 data\, to make sure that the project undertaken will actually have a posit
 ive effect on the urban mobility and no asset is wasted on useless project
 s.\nThe Business Innovation team of Dedagroup Public Services used Open St
 reet Map data to develop an index to detect the local level of proximity w
 ithin the city\, showing both the areas that already conform to the 15 min
 utes model and the ones that do not\, where taking action would improve th
 e quality of life of the citizens living there.\nThe presentation will be 
 focused on this proximity index\, describing the assumptions behind its de
 finition\, such as the choice of city services to be considered essential\
 , the nature of the road network used to compute walking distances and the
  area tiling chosen for the task.\nThe index will be then showcased on the
  city of Florence\, together with an analysis of the city from a proximity
  point of view and a what if scenario: how would the index change if the m
 unicipality (and other relevant stakeholders) decided to make intervention
 s on low proximity areas?\nThe case of Ferrara will be also presented to s
 how that the proximity index can be the basis for further analyses: coupli
 ng the index with resident population count can help to spot the areas tha
 t are both under-served and highly populated\, that are the ones where mor
 e people would benefit from improvements.
DTSTAMP:20260404T205933Z
LOCATION:Modulo 0
SUMMARY:How much “15-minutes” is your city? Using open data to measure 
 walking proximity - Piergiorgio Cipriano\, Beatrice Olivari
URL:https://talks.staging.osgeo.org/foss4g-2022/talk/GPN87Y/
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UID:pretalx-foss4g-2022-SCZWUM@talks.staging.osgeo.org
DTSTART;TZID=CET:20220826T144500
DTEND;TZID=CET:20220826T151500
DESCRIPTION:In the city of Ferrara (Italy) Dedagroup Public Services and ot
 her partners are involved in AIR-BREAK project (https://airbreakferrara.ne
 t/) to implement a set of geo-ICT tools for supporting an improved identif
 ication and monitoring of urban air quality.\nDifferent datasets from hete
 rogeneous sources have been already interconnected and integrated in the S
 patial Data Infrastructure of the Municipality of Ferrara\, based on (geo)
 standard protocols for data interchange sourced by:\n•	173 authoritative
  AQ monitoring stations from 3 regional environmental agencies\, ARPAE Emi
 lia-Romagna (52)\, ARPA Veneto (33) and ARPA Lombardia (88)\, for their ow
 n whole regional areas\;\n•	2 private AQ monitoring stations managed by 
 private companies located in Ferrara\;\n•	14 new AQ monitoring stations 
 installed by Lab Service Analytica (project partner) in the territory of F
 errara \nFor integrating and sharing dynamic hourly data about air quality
  and other themes\, we adopted the OGC Sensor Things APIs (STA) as the ref
 erence standard protocol [1].\nSTA is based on the OGC/ISO 19156:2011 [2] 
 and provides an open and unified framework to interconnect IoT sensing dev
 ices\, data\, and applications over the Web. It is an open standard addres
 sing the syntactic interoperability and semantic interoperability of the I
 nternet of Things. It complements the existing IoT networking protocols su
 ch CoAP\, MQTT\, HTTP\, 6LowPAN. While the above-mentioned IoT networking 
 protocols are addressing the ability for different IoT systems to exchange
  information\, STA is addressing the ability for different IoT systems to 
 use and understand the exchanged information. \nIn AIR-BREAK project\, FRO
 ST solution (FRaunhofer Opensource SensorThings-Server) [3] has been deplo
 yed in the GIS server farm of the Municipality of Ferrara to complement Ge
 oserver and other technologies already providing services for viewing/acce
 ssing data based on OGC standards.\nIndeed\, among the final objectives of
  the project\, the implementation of a standard-based Air Quality Data Inf
 rastructure focuses on:\n1.	creating a bi-lateral and cooperative communic
 ation systems between authorities and citizens about air quality and its p
 erception\;\n2.	defining and implementing a multi-stakeholder Data Infrast
 ructure on Air Quality to integrate existing/heterogeneous/dynamic data fr
 om both authoritative sources and crowdsourced by citizens (Rete di Monito
 raggio Ambientale Partecipativo [4])\;\n3.	providing such dynamic air qual
 ity data to local authorities involved monitoring (i.e. Municipality of Fe
 rrara\, ARPAE\, Regione Emilia-Romagna) and to citizens\, through standard
  APIs (STA) and with open licenses through the upcoming open data portal o
 f Ferrara (June 2022)\;\n4.	testing and validating innovative solutions fo
 r air quality monitoring using in-situ IoT sensors and satellite remote se
 nsing (e.g. Copernicus)\n\nReferences:\n[1] https://en.wikipedia.org/wiki/
 SensorThings_API\n[2] https://www.iso.org/standard/32574.html \n[3] https:
 //github.com/FraunhoferIOSB/FROST-Server \n[4] https://rmap.cc/
DTSTAMP:20260404T205933Z
LOCATION:Room Limonaia
SUMMARY:SensorThings API in practice: the AIR-BREAK project in Ferrara - Pi
 ergiorgio Cipriano
URL:https://talks.staging.osgeo.org/foss4g-2022/talk/SCZWUM/
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