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Installation Company for Voice Evacuation Systems SBF 2018

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Installation Company for Voice Evacuation Systems SBF 2018 Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Company certification under SBF 2018 for voice evacuation systems is a vital tool for ensuring quality and competence among companies that install evacuation alarms with spoken messages.

Purpose/Benefit:

With certification according to SBF 2018, issued by the Swedish Fire Protection Association, your company demonstrates compliance with industry standards for quality and expertise in the installation of voice evacuation systems.

The certification includes requirements for organization, personnel, and operations—everything needed to design, install, and maintain fire and evacuation alarm systems in accordance with current norms and regulations.

Certification under SBF 2018 guarantees that your delivery meets the highest standards of quality and reliability, providing your customers with confidence and peace of mind.

Method (what/which methods are used to perform the service):

The certification process includes an initial audit, annual follow-up audits, and a recertification audit every five years. These are conducted in accordance with the guidelines and authorization of the issuing standards body.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

By choosing RISE as your certification body, you gain a long-term partner for growth. In addition to company certification, we offer a wide range of certification services—from management systems and personal certification to product certification.
For example, we certify security products such as IoT solutions, digital locks, and alarm systems

RISE also supports critical societal functions, civil defense, and Sweden’s national preparedness.

Area: Certification Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Mattias Hopkins, Tjänsteansvarig Säkerhet och Brand
Jonas Svanborg, TIC-ingenjör
Field measurements: No Price type: 1 Division: Do not use - Division Built Environment Preparation: No preparation required Certification and marking: Company certification in safety and fire Type of service: Certification Instrument: Not applicable General area: Not applicable Delivery level: Non-accredited
mattias.hopkins@ri.se,jonas.svanborg@ri.se
/en/about-rise/operations/mission-governance/policy-documents/privacy-policy
More information:

Take the next step toward becoming a leading player in fire safety—contact us today to begin your certification journey!

Purpose - Header: Purpose Metod - Header: Process Delivery - Header: Why Certify with RISE? More information - Header: Contact Us
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Physical protection and safety
Construction
Tjänstetyp tagg: Certifiering

Measuring and optimizing the utilization of shared residential spaces

MOUSERS
 a large shared kitchen from Ecovillage at Ithaca (USA)

MOUSERS is a four-year research project investigating how residents of Swedish households use common spaces. The goal is to guide future building designs that encourage more circular and optimal use of space through sharing.

coordinator
Active
Circular transition
4 years
SEK 11,999,997
Division: Do not use - Division Built Environment

Residents in Sweden have access to more living space per capita than residents in almost every other country in Europe. At the same time, Sweden's population is growing and Swedes are more likely to move than residents of any other European country in a given year. Today, housing and construction account for 22% of the country's total carbon dioxide emissions and 40% of all waste generated in Sweden. Although carbon dioxide emissions per square metre of living space have decreased in recent years, total carbon dioxide emissions from buildings have continued to increase as the population lives in larger homes, often alone. It is clear that structural changes in the use of living space are needed to meet Sweden's ambitious goals for carbon neutrality (net zero by 2045) and for waste from the construction sector (collection of 70% of non-hazardous waste by 2025). In this project, we want to investigate how Sweden's housing needs can be met while reducing the physical expansion of housing. We want to do this by investigating the use of existing common living spaces, such as laundry rooms, entrances, courtyards, and recreation rooms. Developing and improving these spaces could be a way to reduce the demand for living space in existing and future residential buildings. There is little knowledge about how these spaces are used today and about the cost and consequences of increasing their use.

Our hypothesis is that increasing the functionality and utilization rate of public spaces that are currently underutilized, as well as finding creative solutions to encourage more sharing of spaces, can lead to a significant reduction in the need for new residential space in Sweden. The project consists of two main phases over a period of four years:

Phase 1 consists of benchmarking i) how often, ii) under what circumstances, iii) by whom, iv) for what purposes different types of shared spaces in residential buildings are used. This is done through two main data collections: The first looks at the big picture by conducting a national survey that asks a large and representative sample of Swedes how they use spaces such as lobbies, laundry rooms, courtyards, recreation rooms, and rooftop terraces. The survey will also follow participants if they move to a new home and observe whether individuals who currently have access to shared spaces are more or less likely to move to homes with shared spaces. In short, we want to know whether access to shared spaces in residential buildings reduces or increases the need for more private space for individuals and how factors such as income, age, and family situation affect their housing.

Phase 2 will use data collected during Phase 1 to create a vision for how shared spaces can be redesigned for optimal use in the future. Through discussions with property owners, we will investigate how shared spaces can be optimized to be both circular and profitable for builders and developers. We will also use life cycle analyses to understand how the optimized use of shared spaces affects environmental indicators, such as resource use and carbon dioxide emissions. Finally, we will develop new metrics and standards that can be used by architects and policymakers to effectively measure and communicate the benefits of shared spaces in existing residential buildings and future renovation projects.

This project is being carried out by an interdisciplinary group of researchers from RISE Research Institutes of Sweden, with expertise in urban planning, consumption and climate psychology, property management and architecture, life cycle analysis, business economics, and circular business models. The project collaborates with a reference group consisting of Swedish architectural firms, interest groups for housing issues, and housing developers, who will be involved in several phases of the project, including the design of surveys, scenario building, and policy development.

Robert Boyer

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+46 73 084 21 27 Read more about Robert
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11. Sustainable cities and communities
Projekt logo: MOUSERS logo (tillfällig) Project end date: Construction Sekundär områdes navigation:
Circular transition
Resource-efficient cities
Social sustainability in urban development

Installation Company for Kitchen Fire Suppression Systems SBF 2025

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Installation Company for Kitchen Fire Suppression Systems SBF 2025 Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Company certification under SBF 2025 for kitchen fire suppression systems is a vital tool for ensuring quality and competence among companies that install these systems.

Purpose/Benefit:

With certification according to SBF 2025, issued by the Swedish Fire Protection Association, your company demonstrates compliance with industry standards for quality and expertise in the installation of kitchen fire suppression systems.

The certification includes requirements for organization, personnel, and operations—everything needed to design, install, and maintain fire and evacuation alarm systems in accordance with current norms and regulations.

Certification under SBF 2025 guarantees that your delivery meets the highest standards of quality and reliability, providing your customers with confidence and peace of mind.

Method (what/which methods are used to perform the service):

The certification process includes an initial audit, annual follow-up audits, and a recertification audit every five years. These are conducted in accordance with the guidelines and authorization of the issuing standards body.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

By choosing RISE as your certification body, you gain a long-term partner for growth. In addition to company certification, we offer a wide range of certification services—from management systems and personal certification to product certification.
For example, we certify security products such as IoT solutions, digital locks, and alarm systems.

RISE also supports critical societal functions, civil defense, and Sweden’s national preparedness.

Area: Certification Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Mattias Hopkins, Tjänsteansvarig Säkerhet och Brand
Jonas Svanborg, TIC-ingenjör
Field measurements: No Price type: 1 Division: Do not use - Division Built Environment Preparation: No preparation required Certification and marking: Company certification in safety and fire Type of service: Certification Instrument: Not applicable General area: Not applicable Delivery level: Non-accredited
mattias.hopkins@ri.se,jonas.svanborg@ri.se
/en/about-rise/operations/mission-governance/policy-documents/privacy-policy
More information:

Take the next step toward becoming a leading player in fire safety—contact us today to begin your certification journey!

Purpose - Header: Purpose Metod - Header: Process Delivery - Header: Why Certify with RISE? More information - Header: Contact Us
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Health and life science
Tjänstetyp tagg: Certifiering

Installation Company for Fire Alarms SBF 1008

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Installation Company for Fire Alarms SBF 1008 Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Company certification under SBF 1008 for fire alarm installation is a vital tool for ensuring quality and competence among companies that install fire alarm systems.

Purpose/Benefit:

With certification according to SBF 1008, issued by the Swedish Fire Protection Association, your company demonstrates compliance with industry standards for quality and expertise in fire alarm installation.

The certification includes requirements for organization, personnel, and operations—everything needed to design, install, and maintain fire and evacuation alarm systems in accordance with current norms and regulations.

Certification under SBF 1008 guarantees that your delivery meets the highest standards of quality and reliability, providing your customers with confidence and peace of mind.

Method (what/which methods are used to perform the service):

The certification process includes an initial audit, annual follow-up audits, and a recertification audit every five years. These are conducted in accordance with the guidelines and authorization of the issuing standards body.

 

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

By choosing RISE as your certification body, you gain a long-term partner for growth. In addition to company certification, we offer a wide range of certification services—from management systems and personal certification to product certification.
For example, we certify security products such as IoT solutions, digital locks, and alarm systems.

RISE also supports critical societal functions, civil defense, and Sweden’s national preparedness.

Area: Certification Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Mattias Hopkins, Tjänsteansvarig Säkerhet och Brand
Jonas Svanborg, TIC-ingenjör
Field measurements: No Price type: 1 Division: Do not use - Division Built Environment Preparation: No preparation required Certification and marking: Company certification in safety and fire Type of service: Certification Instrument: Not applicable General area: Not applicable Delivery level: Non-accredited
mattias.hopkins@ri.se,jonas.svanborg@ri.se
/en/about-rise/operations/mission-governance/policy-documents/privacy-policy
More information:

Take the next step toward becoming a leading player in fire safety—contact us today to begin your certification journey!

Purpose - Header: Purpose Metod - Header: Process Delivery - Header: Why Certify with RISE? More information - Header: Contact Us
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Fire safety Sekundär områdes navigation: Construction Tjänstetyp tagg: Certifiering

Semi-Transparent and Light Adaptive Luminescent Solar Concentrator PV

SmartPV
SmartPV Technological Concept

The SmartPV project will innovate and demonstrate new energy and resource-efficient smart glazing technologies that merges photovoltaic (PV) and smart window approaches for both localized electricity production and enhanced energy savings.

RISE är deltagare
Active
Energy
3 year
>20 milj
Division: Do not use - Division Built Environment
This research was funded by CETPartnership, the Clean Energy Transition Partnership under the 2023 joint call for research proposals, co-funded by the European Commission (GA N°101069750) and with the funding organizations Swedish Energy Agency, Agencia Estatal de Investigación, and Ministero dell'Università e della Ricerca.

The project aims to increase the European competitiveness and innovation in the renewable energy sector, and suggests business models for new active glazing technologies that can be used in any industrial and end-user sector that uses transparent glazing. The project builds on a cross-disciplinary approach that will contribute to all aspects of the CETP Joint Call 2023 program by combining PV, photonics, glazing and chromogenic technologies, as well as commercialization and user perspectives. The project will develop semi-transparent smart glazing that utilizes solar radiation falling onto the glazing to produce electricity while allowing for sufficient transparency. A “smart” glazing in this context is a glazing that has the ability to dynamically adjust its optical properties depending on environmental conditions and demand, thus ensuring thermal comfort while minimizing cooling and heating expenses. The smart glazing will also be able to regulate visible transmission to prevent glare, ensuring optimal visual comfort, and making unnecessary awnings, coatings and blinds.

 

Eva-Lotta Kurkinen

Enhetschef
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3. Good health and well-being
7. Affordable and clean energy
9. Industry, innovation and infrastructure
11. Sustainable cities and communities
Mercene Labs AB Kungliga Tekniska Högskolan CIEMAT (Centro de Investigaciones Energéticas, Medioambientales y Tecnológicas) UMB (University of Milano-Bicocca)
Project publications
Attach document: Funders without URL:
CETPartnership Joint Call 2023
Agencia Estatal de Investigacon
MUR
Project end date: Solar energy Sekundär områdes navigation:
Construction
Advanced electronics
Materials and durability

Good air quality in bathing facilities with focus on Trichloramine

Trichloramine exposure
Drops of Water

Requirements for lower climate impact and energy use will affect bathing facilities in the future, but it has not been well studied how these affect air quality and the work environment.

Projekt partner
Active
Work environment
2 år
Division: Division Materials and Industry

The purpose of the project is to document and evaluate the effects and potential risks related to work, indoor environment, and moisture safety in a newly built swimming pool facility under various energy saving measures. The effect on air quality with a focus on trichloramine under different operating cases with reduced ventilation combined with pool coverage and changes in the operation of the water treatment system will be evaluated and compared to more traditional operation of a swimming pool facility.

Eva Emanuelsson

Forskare
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Project end date: Construction Sekundär områdes navigation:
Risk and security
Health and life science

Energy-efficient swimming facilities

Less energy
Drops of Water

Operating swimming pools requires a lot of energy

Projekt partner
Active
Water
2 år
Division: Division Materials and Industry

The purpose of the project is to document and evaluate the energy saving potential and possible risks of reduced ventilation combined with pool coverage and changes in the operation of the water treatment system in a swimming pool facility. The project will also study how different operating cases affect water treatment plants (need for chemicals), energy use, and indoor climate (temperature, RH and trichloramine content in the air) to get a holistic view of the effects of energy savings.

 

 

 


 

Eva Emanuelsson

Forskare
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Project end date: Sekundär områdes navigation:
Water
Construction
Health and life science

Design Technology: Digital Ability for Architectural Practice

Design Technology
A network graph of design technologies connected by interoperability

This project aims to strengthen architects' ability to use and develop design technologies for a more efficient, sustainable, and business-oriented architectural practice.

Coordinartor and project manager
Active
Built environment
Not applicable
36 months
8 000 000 kr
Division: Do not use - Division Built Environment

Climate change, resource scarcity, and increased demands for sustainability and efficiency drive transformation in the construction industry, where new methods and technologies are becoming crucial. Small and medium-sized architectural firms contribute with diversity and innovation capacity but often lack the resources to keep pace with rapid digitalisation. A lack of effective methods for collaboration and exchange on digital development limits the potential of new technologies, leading to inefficiencies and missed opportunities. At the same time, evolving business models and industry structures do not always support innovation or long-term value creation.

Design technologies refer to tools and platforms deeply integrated into the design and planning process, enabling architects to develop new working methods in their daily practice, including BIM, computational design, and a wide range of AI-supported applications.

We seek to enhance architectural firms' digital development capability by streamlining workflows, exploring new business models, and improving conditions for digital innovation. The collaborative nature of the project will also foster synergies among partners during the project period to establish a long-term and growing network, which will strengthen the competitiveness of architectural firms and their ability to contribute to a more sustainable built environment with a reduced climate impact in the construction sector.

Throughout the project, we will conduct methodological development, interdisciplinary collaboration, and pilot studies with direct applications in the participating firms' ongoing work in, among other things, the reuse of materials, material optimisation, and generative design processes. Outcomes will include reusable digital workflows, a strategic framework for digital development, and examples of business models that promote innovation and sustainability in strengthened architectural practice. Knowledge exchange and dissemination will be done through seminars, scientific publications, and educational materials to enable the broad implementation of the project's goals.

RISE lead the project with the KTH School of Architecture. It involves 13 architectural firms, two engineering consultants, and three digital development companies.

Camilla Berggren-Tarrodi

Projektledare
+46 10 516 50 41 Read more about Camilla
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11. Sustainable cities and communities
Project end date: Architecture and planning Sekundär områdes navigation:
Construction
Artificial intelligence
Design
Service innovation

Swedish shower innovation type-approved and ready for the market

Water jet in shower with tiled walls

Showers are one of the biggest energy guzzlers in the home. But now, the technology to change this has been given the green light. With type approval and the go-ahead from industry bodies for its heat-recovery floor drain, the start-up company Enduce is ready to enter the market.

I Sverige är vi generellt sett duktiga på att energieffektivisera fastigheter. Ventilationsluft värmeåtervinns, högeffektiva fönster installeras, drag tätas och vindar tilläggsisoleras. Men än finns det mer att göra.

– Hushållets i särklass mest effektslukande och energikrävande aktivitet, att duscha, har ingen gjort något åt. En genomsnittlig dusch drar motsvarande mängd effekt som en elbil i motorvägsfart, och den energin spolar vi ut i avloppet, säger Henrik Hagman, grundare av startupbolaget Enduce.

Energiåtervinning integrerad i golvbrunn

Hans idé om en golvbrunn som återvinner värmeenergi medan vi duschar för att förvärma inkommande kallvatten, har stegvis utvecklats sedan 2008. Den patenterade tekniken är relativt enkel i sin utformning. Inga pumpar, ingen elektronik, inga sensorer – det är gravitationen som får golvbrunnen att fungera. Målet har varit att ta fram en produkt som ligger nära en vanlig golvbrunn, med en värmeväxlare och integrerad energiåtervinning som den stora skillnaden. Enligt oberoende mätningar hos RISE möjliggör Enduce golvbrunn en energibesparing på upp till 75 procent, jämfört med en traditionell golvbrunn.

– Vi vill transformera branschen och bli vad LED-lampan har blivit för den traditionella glödlampan. Vi ser att det inte längre finns någon anledning att spola ut stora mängder energi utan återvinning, säger Henrik Hagman.

Enduce fick en första större finansiering 2021 från Energimyndigheten, och i ett senare skede puttade myndigheten in ytterligare tre miljoner för att möjliggöra vidareutveckling och kommersialisering.

– När vi tog kontakt med RISE 2022 hade vi redan gjort ett stort antal iterationer för att komma fram till en teknik som faktiskt kunde typgodkännas. Antalet beräkningar, dokument, registreringar och formulär som man behöver fylla i när man utvecklar och marknadsintroducerar en ny produkt har faktiskt varit bortom min vildaste fantasi. Typgodkännandet har varit den enskilt största delen, säger Henrik Hagman.

We want to transform the industry and become what the LED has become to the traditional light bulb. We see that there is no longer any reason to waste large amounts of energy without recycling.

Henrik Hagman, founder of the start-up company Enduce

One product – three categories of building regulations

A type approval is proof that a product complies with the Swedish National Board of Housing, Building and Planning's building regulations. From July 2025, updated rules will apply to "promote new technical solutions and open up the use of new materials and methods". The Swedish National Board of Housing, Building and Planning writes on its website that the previous rules meant that construction was locked into existing solutions.

When the Enduce floor drain had to be tested and approved, the rules had not yet changed. Anders Rosendahl, certification engineer at RISE, explains that the project required unique preparation:

– There is nothing like this on the market, so at an early stage our product certification experts carried out a requirements survey to see which parts of the Swedish National Board of Housing, Building and Planning's building regulations needed to be taken into account when investigating what this product should be tested for. Enduce had to meet the requirements for a floor drain, but also the requirements for a wet room installation product, he says.

– The requirements cover everything from the fact that the heated water must not be allowed to stagnate, as this can lead to bacterial growth, to ensuring that cleaning functions are in place to prevent blockages and leaks.

– There are many aspects that this product both meets and has been tested for, says Anders Rosendahl.

"The people at RISE have been outstanding without exception"

– Developing a technology that works and creates benefits is one thing, but getting it approved by any kind of regulatory system can be a very long journey, as we have seen. My understanding is that the process is designed for innovations to come from established, profitable companies that have three years to introduce a new product. For a start-up company, the product itself is what you are seeking approval for, and it will form the revenue base, so you have to rely on financial support during the process, says Henrik Hagman, who continues:

– Having said that, the people we have had contact with at RISE have without exception been excellent. Benevolent, competent, responsive, objective people who have helped to move this difficult process forward.

Next challenge: Large scale distribution

With type approval and the long-awaited green light from industry organisations such as Säker Vatten, and a place in the FabrikantAccept database required for plumbing and water companies to dare to install the product, the door to large-scale commercialisation has opened.

– Our ambition has been to develop something so affordable that the product becomes available to everyone. It's a bit like the IKEA approach in that we want to offer environmentally friendly, climate-saving technology to everyone, not just the very richest. The next challenge is to make it widely available to the market, scale up quickly, and demonstrate the benefits so that everyone understands, says Henrik Hagman.

How the floor drain works

  • In a shower with an Enduce floor drain, the cold water takes an extra 'turn' before it mixes with the hot water (from the domestic hot water tank or district heating centre) in the shower mixer.
    Rather than being channelled directly into the mixer as is traditional, the cold water passes through a plate heat exchanger in the floor drain. Here, a large number of metal plates lie next to each other. On one side of these plates, the incoming cold water flows. On the other side, the used, hot shower water flows down the drain. The heat from the used water is conducted through the plates and transferred to the cold water without the two streams of water mixing.
  • The cold water is heated to around 33°C. This means that less "new" hot water needs to be added to the mixer to achieve a comfortable shower temperature.
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Water
Construction

Can AI be used to future-proof built cultural heritage?

Vadstena

New technology met history when RISE and the Swedish National Heritage Board joined forces in an AI project. Together, the two parties have developed an innovative method for identifying and classifying heritage buildings. The method can become an important piece of the puzzle when Sweden's built heritage becomes part of the green transition.

By 2050, the EU's Energy Performance of Buildings Directive (EPBD) aims for all buildings in the EU – new and old – to be zero-emission buildings, minimising energy demand and eliminating carbon emissions. What does this mean for the buildings that tell our history? Will everything from the red farmer's cottage to the 19th century stone houses that dot our cities be fitted with insulated windows and solar panels?

"The Energy Performance of Buildings Directive has been around for a long time, but it has now been revised and the National Board of Housing, Building and Planning is working to implement it in Swedish legislation by 2026. "One change compared to the past is that buildings with official protection, i.e. protected as a building monument or in detailed plans, can no longer be completely exempted when it comes to setting minimum energy performance requirements, but the requirements can be adapted," says Ebba Gillbrand, researcher at the National Heritage Board, and continues:

"We at the Swedish National Heritage Board see an opportunity to work to ensure that the directive is interpreted in a way that takes into account the cultural values of buildings. We can contribute knowledge about how to improve energy efficiency in a careful way that does not jeopardise cultural values."

"The inclusion of heritage buildings in the Directive is a good thing," adds co-author Therese Sonehag. "Now heritage buildings can continue to be attractive to own and manage, rather than being seen as an obstacle to sustainable development."

AI as a tool to classify buildings

"Our project with RISE was based on the fact that there is no complete register of buildings of cultural and historical value in Sweden, and that cultural values are often mistakenly included in the energy declarations that suggest what energy efficiency measures can be done in a building. In other words, it is currently difficult to get an overview of which buildings are covered by the adapted energy requirements," says Camilla Altahr-Cederberg, researcher at the Swedish National Heritage Board.

RISE researchers Tim Johansson and Mikael Mangold came to the Swedish National Heritage Board with an idea that could potentially solve this challenge.

"For many years we have discussed the possibility of using 360-degree images of the street environment to extract information about buildings. The first thing we did in the project with the Swedish National Heritage Board was to determine camera positions and angles to make a good selection of the material. Then began the hard work of downloading the images and compiling them into a large database," says Tim Johansson, Technical Doctor in Construction Production at RISE.

For many years we have been discussing the possibility of using 360-degree images of the street environment to extract information about buildings.

A quarter of a million images

250,000 images were eventually created, a database of hundreds of gigabytes. The plan was to use AI to identify and map buildings of cultural heritage value in Sweden.

The hope was that the AI would capture buildings that were not included in other databases, such as Räkna Q (the county councils' register of buildings that have been granted protection and caution under the Planning and Building Act) or the Swedish National Heritage Board's Bebyggelseregister, where municipalities themselves register buildings of cultural value.

Initially, the researchers tested simply asking an AI and other language models to rate the buildings from 1 to 100 based on their heritage values.

"Then we saw that the AI was taking shortcuts. It was better to try to get different parameters in different ways. Based on a draft checklist for describing a building's cultural value from the Swedish National Heritage Board, we developed at least 20-30 different parameters that the AI had to consider before it could finally categorise the building's cultural value. We asked about the style of the building, the number of floors and so on," says Tim Johansson.

"We had to keep in mind that the AI is very eloquent and often just guesses. To check its reliability, we took a closer look at the buildings that were flagged as having a relatively high cultural value, but which were not included in any of the existing registers. After a workshop with the Swedish National Heritage Board, we concluded that assigning some form of cultural value to the buildings was the right way to go," says Mikael Mangold, senior researcher at RISE's Urban Development Unit.

The method could be used by the public sector

The team can now conclude that AI can be used as a tool to better classify and manage buildings of cultural value. However, the method needs further work and validation. The Swedish National Heritage Board and RISE believe that the idea of using AI to analyse a database of 360-degree images of the street environment could also benefit other public sector organisations.

"Carrying out this project has helped us in our dialogue with the Swedish National Board of Housing, Building and Planning on establishing methods and definitions within the Energy Performance Directive. We also see potential to use the study as a starting point when we develop, together with the Swedish National Board of Housing, Building and Planning and the Swedish Energy Agency, various forms of support for energy experts and building permit officers, for example. We look forward to continuing to work with RISE to develop the methodology," says Ebba Gillbrand.

Read the report Aspects of cultural values: from computer vision and street images

About the Swedish National Heritage Agency

The board's mission: To promote and develop efforts to preserve, use and develop cultural heritage in Sweden.

Works with: Cultural environments, listed buildings, ecclesiastical monuments, archaeological issues and digital heritage information.

Cooperates with: Other authorities, municipalities, county councils, museums, researchers and international actors.

Headquarters in: Stockholm and Visby.

Mikael Mangold

Forskare
+46 70 297 97 78 Read more about Mikael
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Tim Johansson

Forskare
+46 10 516 60 33 Read more about Tim
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Construction
Artificial intelligence
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