Closed

Innovative battery management systems for next generation vehicles (2ZERO & Batt4EU Partnership)

HORIZON Innovation Actions

Basic Information

Identifier
HORIZON-CL5-2023-D5-01-02
Programme
Clean and competitive solutions for all transport modes
Programme Period
2021 - 2027
Status
Closed (31094503)
Opening Date
December 13, 2022
Deadline
April 20, 2023
Deadline Model
single-stage
Budget
€10,000,000
Min Grant Amount
€5,000,000
Max Grant Amount
€5,000,000
Expected Number of Grants
2
Keywords
HORIZON-CL5-2023-D5-01-02HORIZON-CL5-2023-D5-01Clean vehiclesSustainable transport

Description

Expected Outcome:

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

  • A simplified, efficient and connected battery management system (BMS) including a reduction of parts and cost (optionally by using cloud-based battery status calculation with adequate consideration of security aspects provided a low overall climate impact), including data necessary for second life and Vehicle-to-everything (V2X) applications.
  • Improved and optimized monitoring and predictive diagnostics for a more accurate reliable and efficient battery management maintenance (data-driven diagnostics, over-the-cloud software updates and firmware replacements, self-testing and on-board diagnostics) that are accessible to other third parties in non-discriminatory terms, for instance for maintenance or reuse.
  • Development of relevant interfaces to allow access to the BMS and its database by vehicle charging infrastructure and related mobility services providers with the consent and input of EV driver preferences through an appropriate user interface, for instance for battery and cabin pre-conditioning, minimum final state of charge selection etc.
  • Generally improved exploitation of battery performance (such as faster charging and enhanced regenerative braking control for higher energy recovery), and increased battery pack volumetric density (by 10% or more due only to BMS contribution compared to 2022 State of the Art), safety and prolongation of battery life-time (by at least 30%) by considering algorithms for cell level state of health, cell aging prediction and battery state estimation, including also the integration of smart sensor systems – with validation under real driving conditions (demonstrating up to 15 years lifetime in the future).
  • Improved control of battery operating conditions and determination of key state estimators (SoX = e.g. State of Health, State of Power, State of Safety, State of Charge) to increase accuracy and to improve the early warning capability for performance, reliability, safety, and lifetime issues on all battery system levels.
  • New simulation tools and test methods for faster development, validation and integration of the battery pack, considering assembly design (reducing cabling for the external voltage detection communication function) and realizing a reduction of testing time by 30% (collection of battery characteristics for SoX algorithm optimisation using less calibration).
  • Enhanced communication between battery and vehicle control unit for a more efficient battery operation by synchronizing the electronic control units (ECUs) of the BMS and the EV.
Scope:

Advances in the design, functioning and data accessibility of an efficient battery management system (BMS) are of high significance when it comes to the integration of batteries in electric vehicles (passenger cars and commercial vehicles) and the general improvement of battery performance.

Proposals are expected to address all the following aspects:

  • Predictive SoX diagnostics (based on sensing at cell level) to accurately predict the end-of-life, as well as high connectivity and data storage to optimize the life and general use of the EV.
  • Advanced use of physics-based, data-driven or hybrid models in general, considering for example Artificial Intelligence (AI) with machine learning algorithms, model training and self-adaptive functions.
  • Secure, real-time and databased battery management to reduce margins in a controlled manner and to ensure optimized, safe utilisation during all modes of operation and accurate classification for a second life.
  • A link between the BMS and the ECU of the vehicle to exchange data about weather, temperature, speed, topographies, etc. and detailed information on battery operation, thereby achieving the best possible battery monitoring, diagnostics and lifetime, while optimizing driving range.

Proposal should leverage and not duplicate activities underway under Important Project of Common European Interest (IPCEI) and Batteries partnership [1], and link with projects funded under topics:

  • HORIZON-CL5-2022-D2-01-05: Next generation technologies for High-performance and safe-by-design battery systems for transport and mobile applications (Batteries Partnership);
  • HORIZON-CL5-2022-D2-01-09: Physics and data-based battery management for optimised battery utilisation (Batteries Partnership).

Where appropriate, links will need to be ensured with projects funded under topic HORIZON-CL5-2024-D5-01-03: Advanced battery system integration for next generation vehicles.

Projects should take into account the access to battery information as defined in the proposal for the Renewable Energy Directive COM(2021)557 of 14 July 2021.

This topic implements the co-programmed European Partnerships on ‘Towards zero emission road transport’ (2ZERO) and Batteries (Batt4EU). As such, projects resulting from this topic will be expected to report on the results to the European Partnership ‘Towards zero emission road transport’ (2ZERO) and Batteries (Batt4EU) in support of the monitoring of their KPIs.

[1] https://bepassociation.eu/synergies-and-collaborations/ipceis/; https://bepassociation.eu/

Destination & Scope

This Destination addresses activities that improve the climate and environmental footprint, as well as competitiveness, of different transport modes.

The transport sector is responsible for 23% of CO2 emissions and remains dependent on oil for 92% of its energy demand. While there has been significant technological progress over past decades, projected GHG emissions are not in line with the objectives of the Paris Agreement due to the expected increase in transport demand. Intensified research and innovation activities are therefore needed, across all transport modes and in line with societal needs and preferences, in order for the EU to reach its policy goals towards a net-zero greenhouse gas emissions by 2050 and to reduce significantly air pollutants.

The areas of rail and air traffic management will be addressed through dedicated Institutional European Partnerships and are therefore not included in this document.

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 “Towards climate-neutral and environmental friendly mobility through clean solutions across all transport modes while increasing global competitiveness of the EU transport sector", notably through:

  • Transforming road transport to zero-emission mobility through a world-class European research and innovation and industrial system, ensuring that Europe remains world leader in innovation, production and services in relation to road transport (more detailed information below).
  • Accelerating the reduction of all aviation impacts and emissions (CO2 and non-CO2, including manufacturing and end-of-life, noise), developing aircraft technologies for deep reduction of greenhouse gas emissions, and maintaining European aero-industry’s global leadership position (more detailed information below).
  • Accelerate the development and prepare the deployment of climate neutral and clean solutions in the inland and marine shipping sector, reduce its environmental impact (on biodiversity, noise, pollution and waste management), improve its system efficiency, leverage digital and EU satellite-navigation solutions and contribute to the competitiveness of the European waterborne sector (more detailed information below).
  • Devising more effective ways for reducing emissions and their impacts through improved scientific knowledge (more detailed information below).

Several levels of interactions are foreseen with other European initiatives, in particular with the Industrial Battery Value Chain (BATT4EU) partnership, the Cooperative Connected and Automated Mobility (CCAM) partnership and the Mission on Climate Neutral and Smart Cities, in particular:

  • Joint topic “2ZERO – BATT4EU” D5-1-4 B - Innovative battery management systems for next generation vehicles (2ZERO & Batteries Partnership) (2023)
  • Joint topic “CCAM – 2ZERO – Mission on Climate Neutral and Smart Cities” D5-1-5 Co-designed smart systems and services for user-centred shared zero-emission mobility of people and goods in urban areas (2ZERO, CCAM and Cities’ Mission) (2023)

Zero-emission road transport

Main expected impacts:

  • Affordable, user-friendly charging infrastructure concepts and technologies that are easy to deploy with a wide coverage of urban spaces and of the road network and include vehicle-grid-interactions, ready for mass electrification of passenger and freight road transport.
  • Accelerated uptake of affordable, user-centric solutions for optimised energy efficiency and energy flexibility (vehicles and services).
  • Effective design, assessment and deployment of innovative zero-emission solutions for the clean road transport challenge.
  • Innovative demonstrations use cases for the integration of zero tailpipe emission vehicles, and infrastructure concepts for the road mobility of people and goods.
  • Increased user acceptability of zero tailpipe emission vehicles, improved air quality, a more circular economy and reduction of environmental and health[2] impacts.
  • Support EU leadership in world transport markets at component, vehicle and transport system level, including related services.

Aviation

Main expected impacts:

  • Disruptive low TRL technologies that have potential to lead to 30% reduction in fuel burn and CO2, by 2035, between the existing aircraft in service and the next generation, compared to 12-15% in previous replacement cycles (when not explicitly defined, baselines refer to the best available aircraft of the same category with entry into service prior to year 2020).
  • Disruptive low TRL technologies that have potential to enter into service between 2035 and 2050, based on new energy carriers, hybrid-electric architectures, next generation of ultra-high efficient engines and systems, advanced aerostructures that will enable new/optimised aircraft configurations and their cost-competitive industrialisation.
  • New technologies for significantly lower local air-pollution and noise.
  • Increased understanding and analysis of mitigation options of aviation’s non-CO2 climate impacts.
  • Accelerated uptake of sustainable aviation fuels in aviation, including the coordination with EU Member States/Associated countries and private initiatives.
  • Maintain global competitiveness and leadership of the European aeronautics ecosystem. Focus on selected breakthrough manufacturing and repair technologies that have high potential to lower the overall operating cost.
  • Further develop the EU policy-driven planning and assessment framework/toolbox towards a coherent R&I prioritisation and timely development of technologies in all three pillars of Horizon Europe. Contribute to the mid-term Horizon Europe impact assessment of aviation research and innovation.

Waterborne transport

Main expected impacts:

  • Increased and early deployment of climate neutral fuels, and significant electrification of shipping, in particular intra-European transport connections.
  • Increased overall energy efficiency and use of renewable energies such as wind to drastically lower fuel consumption of vessels. This is increasingly important considering the likelihood of more expensive alternative fuels, where in some cases the waterborne sector will have to compete with other transport modes.
  • Enable the innovative port infrastructure (bunkering of alternative fuels and provision of electrical power) needed to achieve zero-emission waterborne transport (inland and maritime).
  • Enable clean, climate-neutral, and climate-resilient inland waterway vessels before 2030 helping a significant market take-up and a comprehensive green fleet renewal which will also help modal shift.
  • Strong technological and operational momentum towards achieving climate neutrality and the elimination of all harmful pollution to air and water.
  • Achieve the smart, efficient, secure and safe integration of maritime and inland shipping into logistic chains, facilitated by full digitisation, automation, resilient and efficient connectivity.
  • Enable safe and efficient fully automated and connected shipping (maritime and inland).
  • Competitive European waterborne industries, supporting employment and reinforcing the position of the European maritime technology sector within global markets. Providing the advanced green and digital technologies which will support European jobs and growth.

Impact of transport on environment and human health

Main expected impacts:

  • The reduction of road vehicle polluting emissions (looking at both regulated, unregulated and emerging ones) from both existing and future automotive fleets in urban and peri-urban areas.
  • The better monitoring of the environmental performance and enforcement of regulation (detection of defeat devices, tampered anti-pollution systems, etc.) of fleets of transport vehicles, be it on road, airports and ports.
  • Substantially understand and provide solutions to reduce the overall environmental impact of transport (e.g.: as regards biodiversity, noise, pollution and waste) on human health and ecosystems.

[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] These aspects are also dealt with in the specific “Impact of transport on environment and human health” section

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.

If projects use satellite-based earth observation, positioning, navigation and/or related timing data and services, beneficiaries must make use of Copernicus and/or Galileo/EGNOS (other data and services may additionally be used).

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

The funding rate is 60% of the eligible costs, except for non-profit legal entities where the funding rate is up to 100% of the total eligible costs.

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

 

Specific conditions

7. Specific conditions: described in the specific topic of the Work Programme

 

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Latest Updates

Last Changed: May 23, 2023

The call for proposals HORIZON-CL5-2023-D5-01 closed on 20/04/2023. 126 proposals were submitted to the call. The breakdown per topic is:

HORIZON-CL5-2023-D5-01-01 (IA): 6 proposals

HORIZON-CL5-2023-D5-01-02 (IA): 9 proposals

HORIZON-CL5-2023-D5-01-03 (IA): 9 proposals

HORIZON-CL5-2023-D5-01-04 (RIA): 3 proposals

HORIZON-CL5-2023-D5-01-05 (CSA): 1 proposal

HORIZON-CL5-2023-D5-01-06 (CSA): 1 proposal

HORIZON-CL5-2023-D5-01-07 (IA): 5 proposals

HORIZON-CL5-2023-D5-01-08 (RIA): 16 proposals

HORIZON-CL5-2023-D5-01-09 (RIA): 27 proposals

HORIZON-CL5-2023-D5-01-10 (CSA): 2 proposals

HORIZON-CL5-2023-D5-01-11 (RIA): 5 proposals

HORIZON-CL5-2023-D5-01-12 (IA): 8 proposals

HORIZON-CL5-2023-D5-01-13 (IA): 9 proposals

HORIZON-CL5-2023-D5-01-14 (IA): 5 proposals

HORIZON-CL5-2023-D5-01-15 (IA): 2 proposals

HORIZON-CL5-2023-D5-01-16 (RIA): 7 proposals

HORIZON-CL5-2023-D5-01-17 (CSA): 2 proposals

HORIZON-CL5-2023-D5-01-18 (IA): 7 proposals

HORIZON-CL5-2023-D5-01-19 (CSA): 2 proposals

Last Changed: March 20, 2023

Following the Council Implementing Decision (EU) 2022/2506, as of 16th December 2022, no legal commitments (including the grant agreement itself as well as subcontracts, purchase contracts, financial support to third parties etc.) can be signed with Hungarian public interest trusts established under Hungarian Act IX of 2021 or any entity they maintain. Affected entities may continue to apply to calls for proposals. However, in case the Council measures are not lifted, such entities are not eligible to participate in any funded role (beneficiaries, affiliated entities, subcontractors, recipients of financial support to third parties). In this case, co-applicants will be invited to remove or replace that entity and/or to change its status into associated partner. Tasks and budget may be redistributed accordingly.

Last Changed: December 13, 2022
The submission session is now available for: HORIZON-CL5-2023-D5-01-03(HORIZON-IA), HORIZON-CL5-2023-D5-01-09(HORIZON-RIA), HORIZON-CL5-2023-D5-01-16(HORIZON-RIA), HORIZON-CL5-2023-D5-01-08(HORIZON-RIA), HORIZON-CL5-2023-D5-01-05(HORIZON-CSA), HORIZON-CL5-2023-D5-01-01(HORIZON-IA), HORIZON-CL5-2023-D5-01-15(HORIZON-IA), HORIZON-CL5-2023-D5-01-19(HORIZON-CSA), HORIZON-CL5-2023-D5-01-02(HORIZON-IA), HORIZON-CL5-2023-D5-01-17(HORIZON-CSA), HORIZON-CL5-2023-D5-01-10(HORIZON-CSA), HORIZON-CL5-2023-D5-01-14(HORIZON-IA), HORIZON-CL5-2023-D5-01-07(HORIZON-IA), HORIZON-CL5-2023-D5-01-18(HORIZON-IA), HORIZON-CL5-2023-D5-01-04(HORIZON-RIA), HORIZON-CL5-2023-D5-01-11(HORIZON-RIA), HORIZON-CL5-2023-D5-01-12(HORIZON-IA), HORIZON-CL5-2023-D5-01-06(HORIZON-CSA), HORIZON-CL5-2023-D5-01-13(HORIZON-IA)
Innovative battery management systems for next generation vehicles (2ZERO & Batt4EU Partnership) | Grantalist