Closed

Accelerating the deployment of new and shared mobility services for the next decade

HORIZON Innovation Actions

Basic Information

Identifier
HORIZON-CL5-2022-D6-02-04
Programme
Safe, Resilient Transport and Smart Mobility services for passengers and goods
Programme Period
2021 - 2027
Status
Closed (31094503)
Opening Date
April 27, 2022
Deadline
September 5, 2022
Deadline Model
single-stage
Budget
€20,000,000
Keywords
Construction engineering, Municipal and structural engineeringTransport engineeringTransport engineering, intelligent transport systems

Description

Expected Outcome:

Project results are expected to contribute to all of the following expected outcomes:

Developing and pilot testing at least three different business models scenarios based on collaboration platforms or public-private partnerships/project, each of them contributing to:

  • Congestion and air pollution reduction, reduced road risk, social inclusion, accessibility in each city (living lab)[1].
  • Increased share of new and shared mobility services (NMS) in the modal distribution, e.g. by 25% compared to a realistic baseline and financial viability of services.
  • Integration of new and shared mobility services with public transport (e.g. filling service gaps and off-peak periods), in at least following three collaborative use cases/living lab that will facilitate data sharing and connectivity with remote/peri-urban areas.
  • (Re-)Designing transport infrastructure[2] or upgrading/reusing existing infrastructure elements (e.g. street profile/layout, intersection/junction design, priority corridors/lanes, dedicated parking, charging/docking stations, street surfaces/pavements, etc.) to accommodate new mobility modes, patterns and behaviours with highest safety levels while being resilient to various climate conditions.
  • Developing results based policies as well as recommendations/each project in line with the Sustainable Urban Mobility Planning guidelines, to increase the understanding and take-up of new mobility services by local/regional authorities and public and private mobility service providers.
  • Actively engage in communicating the common learning, lesson drawing, evaluation, dissemination and the exchange of knowledge and best practices, both within the project and with the wider urban mobility and transport community.
Scope:

New and shared mobility services have shown that they have the potential to meet urban dweller’s needs while at the same time bring about a more rational use of cars. However, in order to succeed at delivering ‘’Mobility As a Service’’ and address the challenges that cities face, high-quality, user centric, and reliable new mobility solutions need to be offered as a credible alternative to the private car, coupled with safe and integrated infrastructure.

New solutions should be explored and deployed for newly designed or existing transport infrastructure to accommodate new and shared mobility services. Mobility services that could be considered are, for example: micro mobility, including bike/scoter sharing, demand responsive transport, car-pooling or car sharing.

New and shared mobility services should be proposed in at least 3 living labs/project in integrated, complementary and reinforcing packages of urban mobility and planning measures and new technological solutions, combining “push’’ and “pull” measures.

The services deployed should enable the idea of a social optimum in mobility from several perspectives (including socio-economic, environmental, health, accessibility; gender and inclusion; and safety and security aspects) while considering the implications for transport infrastructure and urban design.

The new services should also be tested beyond the commercially interesting urban cores, providing low and zero emission solutions for car-dependent suburban, peri-urban and rural areas linked to specific needs of diverse target groups such as populations with no access to public transport or affluent communities dependent on the private car.

Projects should test new and shared mobility services in mobility management (such as for companies, schools, attractions). Innovative approaches that respond to the needs of a large variety of users (such as families with children, people living in remote locations, commuters, housing developers) are expected. The role of marketing and communication, and approaches based on the co-creation of solutions should be considered.

Equally eligible would be cooperative approaches with employers willing to enter in a pilot to test a ‘Mobility as a Service’ (MaaS) type of service for their employees or with housing developers that are offering reduced parking spaces to residents and seek to offer smart and shared mobility solutions in return.

The proposals should also explore how the adaptation of transport infrastructure (e.g. bike-lanes or new street designs, profiles and layouts, etc…), promotes the use of shared, micro- and active- mobility, limiting risks and increasing safety while reducing transport congestion.

The results and impacts should be assessed using a wide range of quantitative indicators and compared with the situation before the implementation of the proposed solutions.

Public space redesign actions targeted by the awarded projects should not come at the cost of removing or deterioration of parks, trees or green recreational areas in the selected partner cities.

The potential adverse impacts some NMS may generate for example on high-density urban areas, on safety and security, travel demand, public transport use and traffic volumes, should be considered.

A demonstrated contribution to the implementation of the cities’ Sustainable Urban Mobility Plans is expected. Proposals should collaborate with the CIVITAS initiative. They should demonstrate that the proposed approaches are truly innovative for the local context. Proposals should ensure that an appropriate geographical balance across Europe is achieved through twinning activities and other means to maximise impact without leaving anyone behind, and by demonstrating commitment of cooperation though their planned activities.

[1] At least three living lab cities should be included as demonstrators of the innovative solutions and at least three follower cities. At least one of the living labs and follower cities should be located in areas experiencing rapid economic and social change.

[2] Solutions need to demonstrate that traffic congestion is not increased.

Destination & Scope

This Destination includes activities addressing safe and smart mobility services for passengers and goods.

Europe needs to manage the transformation of supply-based transport into safe, resilient and sustainable transport and demand-driven, smart mobility services for passengers and goods. Suitable research and innovation will enable significant safety, environmental, economic and social benefits by reducing accidents caused by human error, decreasing traffic congestion, reducing energy consumption and emissions of vehicles, increasing efficiency and productivity of freight transport operations. To succeed in this transformation, Europe’s ageing (and not always sustainable) transport infrastructure needs to be prepared for enabling cleaner and smarter operations.

Europe needs also to maintain a high-level of transport safety for its citizens. Resilience should be built in the transport systems to prevent, mitigate and recover from disruptions. Research and innovation will underpin the three safety pillars: technologies, regulations and human factors.

This Destination contributes to the following Strategic Plan’s Key Strategic Orientations (KSO):

  • C: Making Europe the first digitally enabled circular, climate-neutral and sustainable economy through the transformation of its mobility, energy, construction and production systems;
  • A: Promoting an open strategic autonomy[1] by leading the development of key digital, enabling and emerging technologies, sectors and value chains to accelerate and steer the digital and green transitions through human-centred technologies and innovations.

It covers the following impact areas:

  • Industrial leadership in key and emerging technologies that work for people;
  • Smart and sustainable transport.

The expected impact, in line with the Strategic Plan, is to contribute to “Safe, seamless, smart, inclusive, resilient and sustainable mobility systems for people and goods thanks to user-centric technologies and services including digital technologies and advanced satellite navigation services”, notably through:

  1. Accelerating the implementation of innovative connected, cooperative and automated mobility (CCAM) technologies and systems for passengers and goods (more detailed information below).
  2. Further developing a multimodal transport system through sustainable and smart long-haul and urban freight transport and logistics, upgraded and resilient physical and digital infrastructures for smarter vehicles and operations, for optimised system-wide network efficiency (more detailed information below).
  3. Drastically decreasing the number of transport accidents, incidents and fatalities towards the EU’s long-term goal of moving close to zero fatalities and serious injuries by 2050 even in road transportation (Vision Zero) and increase the resilience of transport systems (more detailed information below).

Connected, Cooperative and Automated Mobility (CCAM)

The aim of relevant topics under this Destination is to accelerate the implementation of innovative connected, cooperative and automated mobility (CCAM) technologies and systems. Actions will help to develop new mobility concepts for passengers and goods – enabled by CCAM - leading to healthier, safer, more accessible, sustainable, cost-effective and demand-responsive transport everywhere. CCAM solutions will shift design and development from a driver-centred to mobility-user oriented approach, providing viable alternatives for private vehicle ownership while increasing inclusiveness of mobility. CCAM must be integrated in the whole transport system to fully exploit the potential benefits of CCAM and minimise potential adverse effects, such as increasingly congested traffic or new risks in mixed traffic environments.

The focus is on road transport, but relevant interfaces with other modes (for instance transfers and integration with public transport or rail freight transport) will be considered.

All technologies, solutions, testing and demonstration activities resulting from these actions should be documented fully and transparently, to ensure replicability, increase adoption, up-scaling, assist future planning decisions and EU and national policy-making and increase citizen buy-in.

Actions are in line with the recommendations of the new European Partnership on CCAM. The Vision of the Partnership is: “European leadership in safe and sustainable road transport through automation”. It aims to harmonise European R&I efforts to accelerate the implementation of innovative CCAM technologies and services. It aims to exploit the full systemic benefits of new mobility solutions enabled by CCAM. The European Partnership on CCAM plans to closely cooperate with other European Partnerships, in particular with “Towards zero emission road transport” (2ZERO), “Driving Urban Transitions” (DUT), “Key digital technologies” (KDT), “Smart networks and services” (SNS) and “AI, data and robotics” (AI). The European Partnership will establish cooperation mechanisms to ensure close interaction when defining R&I actions to maximise synergies and avoid overlaps.

R&I actions taking place at a socio-technical level aiming to better understand the science-society relationship (particularly when social practices, market uptake or ownership are concerned) should favour solutions that are grounded in social innovation in order to achieve its desired outcomes, i.e. by matching innovative ideas with social needs and by forming new collaborations between public and private actors, including civil society and researchers from the Social Sciences and Humanities (SSH).

To test CCAM solutions, applicants can seek possibilities of involving the European Commission’s Joint Research Centre (JRC) in order to valorise the relevant expertise and physical facilities of JRC in demonstrating and testing energy and mobility applications of the JRC Living Lab for Future Urban Ecosystems https://ec.europa.eu/jrc/en/research-facility/living-labs-at-the-jrc

The main impacts to be generated by topics targeting connected, cooperative and automated mobility under this Destination are:

  • Validated safety and security, improved robustness and resilience of CCAM technologies and systems.
  • Secure and trustworthy interaction between road users, CCAM and “conventional” vehicles, infrastructure and services to achieve safer and more efficient transport flows (people and goods) and better use of infrastructure capacity.
  • Seamless, affordable and user oriented CCAM based mobility and goods deliveries for all and high public acceptance of these services with clear understanding of its benefits and limits as well as rebound effects; based on the changing mobility needs and desires of a society in transition (digitally and environmentally).
  • Better coordination of R&I and large-scale testing activities in Europe and expanded knowledge base on CCAM solutions.
  • European leadership in the development and deployment of connected and automated mobility and logistics services and systems, ensuring long-term growth and jobs.

Multimodal and sustainable transport systems for passengers and goods

Multimodal and sustainable transport systems are the backbone for efficient mobility of passengers and freight. In particular, the areas of infrastructure, logistics and network/traffic management play a major role in making mobility and transport climate neutral, also through the digitalisation of the sectors. At the same time, being vulnerable to climate change and other disruptions, resilience in these three areas need to be increased. New and advanced infrastructures across all transport modes are required to enable the introduction of new vehicles, operations and mobility services. Furthermore, efficient and smart multimodal logistics are key for seamless and sustainable long-haul, regional and urban freight transport movements. Finally, dynamic multimodal network and traffic management systems are the “glue” of the entire transport network, for optimised door-to-door mobility of both passengers and freight.

To test solutions related to multimodal and sustainable transport systems for passengers and good, applicants may seek possibilities of involving the European Commission’s Joint Research Centre (JRC) in order to valorise the relevant expertise and physical facilities of JRC in demonstrating and testing energy and mobility applications of the JRC Living Lab for Future Urban Ecosystems[2].

The main impacts to be generated by topics targeting Multimodal and sustainable transport systems for passengers and goods under this Destination are:

  • Upgraded and resilient physical and digital infrastructure for clean, accessible, affordable, connected and automated multimodal mobility.
  • Sustainable and smart long-haul, regional and urban freight transport and logistics, through increased efficiency, improved interconnectivity and smart enforcement.
  • Reduced external costs (e.g. congestion, traffic jams, emissions, air and noise pollution, road collisions) of urban, peri-urban (regional) and long distance freight transport as well as optimised system-wide network efficiency and resilience.
  • Enhanced local and/or regional capacity for governance and innovation in urban mobility and logistics.

Safety and resilience - per mode and across all transport modes

Safety and resilience are of primary concern for any transport system. The EU set ambitious targets in its 2011 Transport White Paper, the third Mobility Package and, more recently, the Sustainable and Smart Mobility Strategy[3]. COVID-19 has been a stark reminder of the importance of resilience to external disruptions, particularly for transport. Research and innovation will underpin the three pillars affecting safety and resilience: technologies; regulations (alongside acceptable level of risks); and human factors (individual and organisational aspects, including interaction with automation). The approach is risk-based and systemic, including transport means/vehicles, infrastructure, the physical environment (e.g. weather) and the various actors (e.g. manufacturers, regulators, operators, users) as well as all their interfaces, including certification and standardisation bodies.

Synergies should be exploited across research at national, EU and international level together with national authorities, EU agencies and international organisations to improve rulemaking, safety promotion and oversight.

The main impacts to be generated by topics targeting transport safety and resilience under this Destination are:

Safety in Urban Areas/ Road Transport Safety

  • 50% reduction in serious injuries and fatalities in road crashes by 2030.
  • Improved reliability and performance of systems that aim to anticipate and minimize safety risks, avoiding risks and collisions, and reducing the consequences of unavoidable crashes.
  • Drastic reduction of road fatalities and serious crash injuries in low and medium income countries in Africa.
  • Better design principles of future road transport systems enabling also better traffic flow in big cities.

Waterborne Safety and Resilience

  • Ensure healthy passenger shipping by preventing and mitigating the spread of contagious diseases and infections.

Aviation Safety and Resilience

  • Decrease number of accidents and incidents due to organisational/human/automation factors and external hazards in all phases of flight, also beyond CAT category (80% goal in FlightPath2050), while enabling all weather operations.
  • Saving lives following a crash (post-crash survivability).
  • Anticipate emergence of new threats that could generate potential accidents and incidents (short, medium, and long term).
  • Ensure safety through aviation transformation (from green/digital technologies uptake up to independent certification).
  • Maintain safety and resilience despite the scale, pace and diversity of new entrants.

[1] ‘Open strategic autonomy’ refers to the term ‘strategic autonomy while preserving an open economy’, as reflected in the conclusions of the European Council 1 – 2 October 2020.

[2] https://ec.europa.eu/jrc/en/research-facility/living-labs-at-the-jrc

[3] COM(2020) 789 final.

Eligibility & Conditions

General conditions

General conditions

1. Admissibility conditions: described in Annex A and Annex E of the Horizon Europe Work Programme General Annexes

 

 

Proposal page limits and layout: described in Part B of the Application Form available in the Submission System

 

 

2. Eligible countries: described in Annex B of the Work Programme General Annexes

A number of non-EU/non-Associated Countries that are not automatically eligible for funding have made specific provisions for making funding available for their participants in Horizon Europe projects. See the information in the Horizon Europe Programme Guide.

 

3. Other eligibility conditions: described in Annex B of the Work Programme General Annexes

 

 

4. Financial and operational capacity and exclusion: described in Annex C of the Work Programme General Annexes

 

  • Award criteria, scoring and thresholds are described in Annex D of the Work Programme General Annexes

  • Submission and evaluation processes are described in Annex F of the Work Programme General Annexes and the Online Manual

  • Indicative timeline for evaluation and grant agreement: described in Annex F of the Work Programme General Annexes

 

6. Legal and financial set-up of the grants: described in Annex G of the Work Programme General Annexes

 

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Latest Updates

Last Changed: October 5, 2022

 The call for proposals HORIZON-CL5-2022-D6-02 closed on 06/09/2022. 102 proposals were submitted to the call. The breakdown per topic is:

HORIZON-CL5-2022-D6-02-01 (IA): 8 proposals

HORIZON-CL5-2022-D6-02-02 (IA): 11 proposals

HORIZON-CL5-2022-D6-02-03 (RIA): 6 proposals

HORIZON-CL5-2022-D6-02-04 (IA): 20 proposals

HORIZON-CL5-2022-D6-02-05 (RIA): 31 proposals

HORIZON-CL5-2022-D6-02-06 (IA): 15 proposals

HORIZON-CL5-2022-D6-02-07 (RIA): 11 proposals

Accelerating the deployment of new and shared mobility services for the next decade | Grantalist