All Projects

Here you can find all Research, Technology and Development (RTD) Projects from previous calls for tenders in the frame of the program "City of Tomorrow".

There are 401 results.

Stadt der Zukunft

Move2Grid – Implementation of regional energy-supply-concepts by hybrid coupling

Based on the results of the national-funded exploratory projects called “Smart Exergy Leoben”, and “Energy Sponge Bruck”, the present implementation project aims at analysing how local, renewable resources support the supply of electric mobility in Leoben in the long term and to integrate it into the municipal distribution grid in a good economic sense.

Haus der Zukunft

MuT - Monitoring of urban Technologies: Classification, Specification, Evaluation

In the frame of the project a classification system for Smart City Technolo­gies had beed developed, the relevance of a wide range of technologies in terms of their potential contribution to the development of sustainable and more resilient cities with a high quality of life had beed evaluated and a comprehensive classification of the technical maturity of relevant technologies, technical (sub-)systems and technology-related services had been given.

Stadt der Zukunft

Multi-WP – High-efficiency multivalent heat pump concepts for the thermal use of external air with geothermal storage

Optimization of multi-WP systems consisting of air-source heat pumps and geothermal storage with regard to increasing flexibility and efficiency from 30 kW for individual buildings as well as neighbourhood solutions and addressing aspects such as PV utilization optimization, mode of operation, utilization conflicts and noise pollution from air-source heat pumps. The project will establish the use of the heat source external air in combination with seasonal storage as a particularly efficient alternative for heating, cooling and hot water supply.

Klimaneutrale Stadt

NEB-Tischlerei-Melk - Development of a former joinery site into a multipliable European lighthouse NEB neighbourhood

The former production site of the Fürst Möbel GmbH shall be transformed into a climate-neutral, multifunctional, scalable mixed-use NEB city quarter. This quarter called “Tischlerei Melk” is intended to achieve the highest ambition levels of the NEB compass and to position and represent Austria strongly in this context. As the area is located next to the world-famous Abbey of Melk, the project has the potential to become an internationally known best-practice solution.

Stadt der Zukunft

NEBKrit - Quality criteria for buildings and neighbourhoods on the basis of the New European Bauhaus

Develop criteria of aesthetics and social inclusion based on the values of the New European Bauhaus to complement existing sustainability criteria in order to evaluate buildings and neighbourhoods more broadly. Since todayʼs necessary transformation of the economy always includes cultural and social aspects, such a broader assessment makes more sense than todayʼs usual methods.

Klimaneutrale Stadt

NEBKritQ - New European Bauhaus Quality Criteria for Sustainable Urban Development

Development of quality criteria and process proposals for sustainable urban development based on the dimensions of the New European Bauhaus (ecological sustainability, aesthetics, social inclusion), which can be used for the evaluation as well as for the project development and application of urban development projects.

Stadt der Zukunft

NETSE - User orientated development of technologies and services for energy communities

In the NETSE project the basics for the implementation of energy communities are developed. This includes the relevant technical equipment and interfaces, the development of a platform for the operation of an energy community as well as tools for the optimization of the technical setup and the operation of energy communities.

Stadt der Zukunft

NaNu3 - Parametric Planning for a Sustainable Roof (Blue, Grey and Green)

Demonstration of the feasibility and validation of a parametric model that can evaluate the practical and financial feasibility of the combined use of roof areas as well as its microclimate and environmental effectiveness at an early planning stage.

Haus der Zukunft

OPEN HEAT GRID - Open Heat Grids in urban hybrid systems

The primary research topic of OPEN HEAT GRID was to investigate the possibilities of enforcing the feed-in of industrial waste heat into existing district heating networks. The project results show that excess heat is not for free: despite minimal variable costs, the investment costs need to satisfy usual payback periods. The analysis shows that there is no need for a regulation in the sense of a feed-in obligation or market liberalization. However, from an economic point of view, information asymmetries exist, which may lead to irrational decisions.

Stadt der Zukunft

OWA+Quartier - Sustainable refurbishment and energy supply for the historic Otto-Wagner-Areal towards a plus-energy district

Development of thermal and electrical energy supply for the Otto-Wagner-Areal as well as model solutions for construction and building services in order to initiate the redevelopment of the area in the direction of a plus-energy district.

Klimaneutrale Stadt

OWA’s future - Otto Wagner Area: A trend-setting transformation from a medical institution into a NEB neighbourhood

Development of qualitative and quantitative planning objectives as well as an implementation strategy for the transformation of the Otto Wagner Area along the New European Bauhaus guidelines. The basis is formed by interdisciplinary expert forums, which provide important insights for the necessary transformation of existing areas and buildings in other cities as well.

Stadt der Zukunft

OctoAI: The next generation of high-performance edge AI for smart buildings

Current IoT (Internet of Things) solutions for buildings depend almost exclusively on cloud infrastructure and cloud-based services. In the OctoAI project, we are developing the next generation of high-performance Edge AI (Artificial Intelligence) for smart buildings. In OctoAI, we combine the concept of edge AI with user-centric energy services and test two edge-ready applications.

Stadt der Zukunft

OptiMAS - Optimization of building energy efficiency through model-based energy flow analysis with non-invasive sensors

Using a model-based energy flow analysis supported by non-invasive sensor technologies OptiMAS investigated how to monitor, analyze and optimize existing buildings independent of the installed HVAC systems and automation components. With the OptiMAS approach the optimization potential of individual buildings up to entire areas can be detected, located and tapped by adjustment of system parameters to ensure highest energy and resource efficiency.

Stadt der Zukunft

OttoWagner-ArealPlus - Feasibility study for a certified plus-energy-district-renovation of the listed Otto-Wagner-Area

Development of an innovative concept for the transformation of the Viennese Otto-Wagner-Area into a plus-energy-quartier while meeting requirements of cultural heritage management. The historic architectural jewel covers an area of ​​around 50 hectares, consists of 70 buildings and a gross floor area of ​​around 200,000 m². The solution meets highest energy efficiency standards and comfort requirements.

Haus der Zukunft

P2H-Pot - Potentials, economic feasibility and system solutions for Power-to-Heat

P2H-Pot has identified economically feasible potentials for Power-to-Heat (P2H) in urban regions. The suitability of different technical system configurations were investigated using thermodynamic simulation and considering experiences from Scandinavian cases. The assessment of short, medium and long term relevance and economic feasibility of P2H were accomplished by simulating model-based scenarios up to 2050 of the Austrian and German electricity and heat market. In cooperation with a district heating company three case studies have been carried out.

Stadt der Zukunft

P2PQ - Peer2Peer im Quartier

The research project Peer2Peer im Quartier deals with applications optimizing the selfconsumption of PV-generated energy within urban quarters by enabling peer-to-peer relations among energy prosumers based on Blockchains. Aim is to develop and validate these applications in real operation.

Klimaneutrale Stadt

PDCA4Future - Feasibility Study for a Climate-Resilient Urban District in Bruck an der Mur through a New Planning and Financing Approach

Using the Hannes-Bammer-Sports Hall as a case study, the PDCA4Future feasibility project in Bruck an der Mur aims to develop an innovative planning and assessment tool. This involves creating renovation and financing models that align climate neutrality goals with sustainable urban planning. The objective is a fact-based and replicable investment decision (renovation vs. new construction).

Haus der Zukunft

PEAR – Test facility for energy efficient automation and control of buildings

The energy demand calculated in the design phase often differs from measured values in the actual building operation. This projects reviews building automation and operation by presenting a solution how to assess energy efficiency of control strategies in the fields of air conditioning systems, concrete core activation and free cooling. The results are implemented in the demonstration building "Post am Rochus".

Stadt der Zukunft

PEQBacker: Integrated District Planning - Enabler on the way to a Plus-Energy District

Development of guidelines for the implementation of Plus-Energy District coordination units based on research of success factors, exploration of mission elements of existing structures and consultation of a broad stakeholder group with the goal of increasing the transformation of existing and emerging neighbourhoods toward Plus-Energy Districts.

Haus der Zukunft

PESI - Paradigm shift in urban energy systems through synergies with industry

Analysis of different options for the use of industrial surplus energies of various shapes (waste heat, waste water, waste) and renewable energy sources in the industrial sector (e.g. solar panels on roof surfaces) in adjacent urban areas, which act as an "energy sponge". Based on real consumption and availability data, a simulation model was created and opportunities for synergies were documented.