Smart Chicago: how smart city initiatives are helping meet urban challenges

Outside a Chicago theatre, with a huge 'Chicago' sign outside

By Steven McGinty

Home to former President Barack Obama, sporting giants the Chicago Bulls, and the culinary delicacy deep dish pizza, Chicago is one of the most famous cities in the world. Less well known is Chicago’s ambition to become the most data-driven city in the world.

A late convert to the smart city agenda, Chicago was lagging behind local rivals New York and Boston, and international leaders Barcelona, Amsterdam, and Singapore.

But in 2011, Chicago’s new Mayor Rahm Emanuel outlined the important role technology needed to play, if the city was to address its main challenges.

Laying the groundwork – open data and tech plan

In 2012, Mayor Rahm Emanuel issued an executive order establishing the city’s open data policy. The order was designed to increase transparency and accountability in the city, and to empower citizens to participate in government, solve social problems, and promote economic growth. It required that every city agency would contribute data to it and established reporting requirements to ensure agencies were held accountable.

Chicago’s open data portal has nearly 600 datasets, which is more than double the number in 2011. The city works closely with civic hacker group Open Chicago, an organisation which runs hackathons (collaborations between developers and businesses using open data to find solutions to city problems).

In 2013, the City of Chicago Technology Plan was released. This brought together 28 of the city’s technology initiatives into one policy roadmap, setting them out within five broad strategic areas:

  • Establishing next-generation infrastructure
  • Creating smart communities
  • Ensuring efficient, effective, and open government
  • Working with innovators to develop solutions to city challenges
  • Encouraging Chicago’s technology sector

 Array of Things

The Array of Things is an ambitious programme to install 500 sensors throughout the city of Chicago. Described by the project team as a ‘fitness tracker for the city’, the sensors will collect real-time data on air quality, noise levels, temperature, light, pedestrian and vehicle traffic, and the water levels on streets and gutters. The data gathered will be made publicly available via the city’s website, and will provide a vital resource for the researchers, developers, policymakers, and citizens trying to address city challenges.

This new initiative is a major project for the city, but as Brenna Berman, Chicago’s chief information officer, explains:

If we’re successful, this data and the applications and tools that will grow out of it will be embedded in the lives of residents, and the way the city builds new services and policies

Potential applications for the city’s data could include providing citizens with information on the healthiest and unhealthiest walking times and routes through the city, as well as the areas likely to be impacted by urban flooding.

The project is led by the Urban Center for Computation and Data of the Computation Institute  a joint initiative of Argonne National Laboratory and the University of Chicago. However, a range of partners are involved in the project, including several universities, the City of Chicago who provide an important governance role and technology firms, such as Product Development Technologies, the company who built the ‘enclosures’ which protect the sensors from environmental conditions.

A series of community meetings was held to introduce the Array of Things concept to the community and to consult on the city’s governance and privacy policy. This engagement ranged from holding public meetings in community libraries to providing online forms, where citizens could provide feedback anonymously.

In addition, the Urban Center for Computation and Data and the School of the Art Institute of Chicago ran a workshop entitled the “Lane of Things”, which introduced high school students to sensor technology. The workshop is part of the Array of Things education programme, which aims to use sensor technology to teach students about subjects such as programming and data science. For eight weeks, the students were given the opportunity to design and build their own sensing devices and implement them in the school environment, collecting information such as dust levels from nearby construction and the dynamics of hallway traffic.

The Array of Things project is funded by a $3.1 million National Science Foundation grant and is expected to be complete by 2018.

Mapping Subterranean Chicago

The City of Chicago is working with local technology firm, City Digital, to produce a 3D map of the underground infrastructure, such as water pipes, fibre optic lines, and gas pipes. The project will involve engineering and utility workers taking digital pictures as they open up the streets and sidewalks of Chicago. These images will then be scanned into City Digital’s underground infrastructure mapping (UIM) platform, and key data points will be extracted from the image, such as width and height of pipes, with the data being layered on a digital map of Chicago.

According to Brenna Berman:

By improving the accuracy of underground infrastructure information, the platform will prevent inefficient and delayed construction projects, accidents, and interruptions of services to citizens.

Although still at the pilot stage, the technology has been used on one construction site and an updated version is expected to be used on a larger site in Chicago’s River North neighbourhood. Once proven, the city plans to charge local construction and utility firms to access the data, generating income whilst reducing the costs of construction and improving worker safety.

ShotSpotter

In January, Mayor Rahm Emanuel and Chicago Police Department commanders announced the expansion of ShotSpotter – a system which uses sensors to capture audio of gunfire and alert police officers to its exact location. The expansion will take place in the Englewood and Harrison neighbourhoods, two of the city’s highest crime areas, and should allow police officers to respond to incidents more rapidly.

Chicago Police Superintendent Eddie Johnson highlights that although crime and violence presents a complex problem for the city, the technology has resulted in Englewood going “eight straight days without a shooting incident”, the longest period in three years.

ShotSpotter will also be integrated into the city’s predictive analytics tools, which are used to assess how likely individuals are to become victims of gun crime, based on factors such as the number of times they have been arrested with individuals who have become gun crime victims.

Final thoughts

Since 2011, Chicago has been attempting to transform itself into a leading smart city. Although it’s difficult to compare Chicago with early adopters such as Barcelona, the city has clearly introduced a number of innovative projects and is making progress on their smart cities journey.

In particular, the ambitious Array of Things project will have many cities watching to see if understanding the dynamics of city life can help to solve urban challenges.


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Smart-eco cities: how technology is addressing sustainability challenges in the UK

Looking down on densely packed buildings of New York

By Steven McGinty

As cities realise the need to improve sustainability, many are turning to innovative technologies to address challenges such as traffic congestion and air pollution. Here, the ‘smart agenda’, with its focus on technology and urban infrastructure, overlaps with the ‘sustainability agenda’ – usually associated with energy, waste management, and transport.

In 2015, an international research project – coordinated by the University of Exeter and involving teams from the UK, China, the Netherlands, France, and Germany – was launched to investigative how smart-eco initiatives can be used to promote the growth of the green economy. As part of this work, the report ‘Smart-eco cities in the UK: trends and city profiles 2016 was published.

Below we’ve highlighted some interesting case studies from this report.

Glasgow

Glasgow’s smart city approach has been described as ‘opportunistic’ (as opposed to strategy-led) by the report’s authors. New initiatives are often linked to creative organisations/individuals and competition funding, such as Future City Glasgow, which was awarded £24 million by the Technology Strategy Board (now Innovate UK).

Nonetheless, this has helped Glasgow become a smart city leader, not just in the UK, but globally.

Almost half of the £24 million Innovate UK funding was spent on the Operations Centre, located in Glasgow’s east end.  The new state-of-the-art facility integrates traffic and public safety management systems, and brings together public space CCTV, security for the city council’s museums and art galleries, traffic management and police intelligence. As well as helping the police and emergency services, the centre can prioritise buses through traffic (when there are delays) and has recently supported the Clean Glasgow initiative, a project to tackle local environmental issues, such as littering.

Intelligent street lighting was also a major part of Future City Glasgow. Three sections of the city have been fitted with new lighting: a walkway along the River Clyde; a partly pedestrianised section of Gordon Street; and Merchant City, a popular retail and leisure district. The new lighting includes built-in sensors which provide real-time data on sound levels, air quality, and pedestrian footfall. ‘Dynamic’ lights, which use motion sensors to vary lighting – increasing levels when pedestrians walk by – have also been introduced.

London

London’s smart city programme is linked to the challenges it faces as a leading global city. Its need for continuous growth and remaining competitive has to be balanced with providing infrastructure, services, and effective governance.

The Greater London Authority (GLA) is behind both the strategy, through the Smart London Board, and the practical delivery of various activities. Much of their work focuses on encouraging collaboration between business, the technology sector, and the residents of London. For example, the London Datastore, which includes over 650 governmental (and some non-governmental) data sets, plays an important role in ensuring the city’s data is freely available to all. Visitors can view a wide variety of statistics and data graphics, on areas such as recycling rates, numbers of bicycles hired, and carbon dioxide emission levels by sector.

In 2014, the Smart London District Network was established to explore how technology could be used in four regeneration projects: Croydon; Elephant & Castle; Imperial West; and the London Olympic Park. To support this, the Institute for Sustainability was commissioned to run a competition asking technology innovators to pitch innovative ideas for these projects. Winners of this competition included the company Stickyworld, who created an online platform which supports stakeholder engagement through a virtual environment, and Placemeter, who developed an intelligent online platform which analyses the data taken from video feeds and provides predictive insights.

Manchester

Recently, the City of Manchester Council consolidated their smart city initiatives into the Smarter City Programme. The Smart-eco cities report explains that the programme draws on the city’s 2012 submission to the ‘Future Cities Demonstrator’ competition, focusing on the development of Manchester’s Oxford Road ‘Corridor’ around five main themes:

  • enhanced low carbon mobility
  • clean energy generation and distribution
  • more efficient buildings
  • integrated logistics and resource management
  • community and citizen engagement

Manchester’s approach to becoming a smarter city involves a wide range of partners. For instance, Triangulum is a €25m European Commission project involving Manchester and two other cities (Eindhoven and Stavanger) to transform urban areas into ‘smart quarters’.

In Manchester, the council-led project will integrate mobility, energy, and informations and communications technology (ICT) systems into the infrastructure along the Corridor. It will introduce a range of technologies into assets such as the University of Manchester Electrical Grid, with the aim of showing their potential for supplying, storing and using energy more effectively in urban environments. Data visualisation techniques, based on the use of real-time data, will also be developed.

In 2016, Manchester launched CityVerve, a £10 million collaborative project to demonstrate internet of things technologies. The project will involve several smart city initiatives, including:

  • talkative bus stops, which use digital signage and sensors, to provide information to passengers and provide data to bus operators on the numbers waiting for buses
  • air quality sensors in the street furniture
  • ‘Community Wellness’ sensors in parks, along school and commuter routes, to encourage exercise
  • a ‘biometric sensor network’, to help people manage their chronic respiratory conditions

Final thoughts

There is great excitement about the potential for smart city technologies. However, as is highlighted by the smart-eco cities report, many are limited in scale, short term, and based on competition funding. If we want to create sustainable cities, which meets challenges of the future, greater investment will be needed from both public and private sector.


Follow us on Twitter to see what developments in public and social policy are interesting our research team. If you found this article interesting, you may also like to read our other smart cities articles.