Difference between revisions of "1718t2is415T2 G3 MyHawker ProjectDetails"
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− | | [[File:Multiple dates.png|100px|frameless|center| | + | | [[File:Multiple dates.png|100px|frameless|center|Subzone Selection]] || Selection of subzone for analysis on accessibility of hawker centres |
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− | | [[File:Segment.png|150px|frameless|center| | + | | [[File:Segment.png|150px|frameless|center|Buffer Range]] || Adjust accessibility to hawker centres with a default distance of 100m |
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− | | [[File:Internal.png|150px|frameless|center| | + | | [[File:Internal.png|150px|frameless|center|Hansen Accessibility]] || Accessibility of hawker centres from residential houses or bus stop using the Hansen Potential Model |
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− | | [[File:K.png|150px|frameless|center|K | + | | [[File:K.png|150px|frameless|center|Legend]] || Display of legend for accessibility to hawker centers and uploaded spatial data |
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+ | | [[File:K.png|150px|frameless|center|Zoom]] || Zoom in and out of the map with default showing the whole of Singapore | ||
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+ | | [[File:K.png|150px|frameless|center|Popup]] || A popup description of the location | ||
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+ | | [[File:K.png|150px|frameless|center|Choropleth Point Marker]] || Visualization of accessibility of Hawker centres | ||
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+ | | [[File:K.png|150px|frameless|center|Nearest Neighbor Index Histogram]] || Visualizing the randomness of the distribution of Hawker centres | ||
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+ | | [[File:K.png|150px|frameless|center|Distance Histogram]] || Visualizing the accessibility to hawker centres as a histogram | ||
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Revision as of 01:51, 11 April 2018
Visualizing The Accessibility of Hawker Centres
Motivation
Hawker centres are a unique aspect of Singaporean culture, where people from all walks of life are able to enjoy local food. Besides offering delicacies from different cultures and having a clean and hygienic environment for the comfort of everyone, it is important for hawker centres to be situated at accessible locations. Furthermore, with the ageing population in Singapore, ensuring that hawker centres are accessible (i.e. is within walkable distance and is connected to public transport) is even more beneficial to them. With NEA being the main regulator our hawker centres, they have announced plans to build 20 new hawker centres in Singapore[1]. With this in mind, we thought about how we could provide value to their planning through analysis and evaluations of current and future developments.
Current GIS software tools are only able to provide basic analytics capability, our team believes that we are able to develop a better solution that is able to provide more insights for urban planners to make better decisions. Our team will be using R to develop a customized web tool using and Hansen Accessibility Index to help achieve our objectives.
Objectives
We set out to achieve three simple objectives by assisting urban planners to:
- Measure accessibility of hawker centres in Singapore by analyzing current locations of Hawker centres, residential areas and enable easy visualization of the accessibility on the map
- Find out if there is a shortage or surplus of hawker centres in certain areas
- Propose possible areas for future hawker centre developments
Data Sources
Sources
- Subzone planning zone with population data, taken from (https://data.gov.sg/dataset/singapore-residents-by-subzone-and-type-of-dwelling-june-2016)
- Location of public hawker centres, taken from (https://data.gov.sg/dataset/hawker-centres)
- Location of private hawker centres, taken from (http://www.kopitiam.biz/search-results/; https://www.foodjunction.com/outlets/; http://www.koufu.com.sg/casual-dining/koufu-singapore)br/>
- Location of private and public residential homes, taken from (http://download.bbbike.org/osm/bbbike/Singapore/)
- Location of bus stops, taken from (https://www.mytransport.sg/content/mytransport/home/dataMall/static-data.html)
Cleaning and Processing:
- 42 data points of private hawker centres automatically scrapped (http://webscraper.io/), geocoded from a website (https://www.doogal.co.uk/BatchGeocoding.php), converted to SVY21 (http://dominoc925.blogspot.com/p/svy21-coordinate-converter.html), included column of point of interest and seating capacity.
- 115 data points of public hawker centres obtained from shapefile, geocoded to SVY21 using QGIS, included column of point of interest and seating capacity in csv.
- 4,861 data points of bus stops obtained from shapefile, geocoded to SVY21 using QGIS, included column of subzone name using subzone planning with population data.
- 12,578 data points of residential obtained from shapefile, included centroid and geocoded to SVY21 using QGIS, included column of subzone name and population using subzone planning zone with population data.
System Architecture
Application Functions
Overview of functions
Image | Explanation | ||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Selection of subzone for analysis on accessibility of hawker centres | |||||||||||||||||
Adjust accessibility to hawker centres with a default distance of 100m | |||||||||||||||||
Accessibility of hawker centres from residential houses or bus stop using the Hansen Potential Model | |||||||||||||||||
Display of legend for accessibility to hawker centers and uploaded spatial data | |||||||||||||||||
Zoom in and out of the map with default showing the whole of Singapore | |||||||||||||||||
A popup description of the location | |||||||||||||||||
Visualization of accessibility of Hawker centres | |||||||||||||||||
Visualizing the randomness of the distribution of Hawker centres | |||||||||||||||||
Visualizing the accessibility to hawker centres as a histogram
Timeline and Milestones
Key Challenges
Tools and Technologies
Future Works
References
Comments
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