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CORDIS - Forschungsergebnisse der EU
CORDIS

'AV-Ready' transport models and road infrastructure for the coexistence of automated and conventional vehicles

CORDIS bietet Links zu öffentlichen Ergebnissen und Veröffentlichungen von HORIZONT-Projekten.

Links zu Ergebnissen und Veröffentlichungen von RP7-Projekten sowie Links zu einigen Typen spezifischer Ergebnisse wie Datensätzen und Software werden dynamisch von OpenAIRE abgerufen.

Leistungen

Technical Report on connecting AV control logic and AV simulator (öffnet in neuem Fenster)

D2.2 is a technical report describing how the closed loop connection was set up.

Completed specification templates for eight use cases and AV-ready alternative designs (öffnet in neuem Fenster)

D1.3 gathers all the relevant “supply side” specifications about the road infrastructure of the use case that will be used for the assessment in WP3 and WP4. ‘AV-ready: Use Case Specification Templates’ (MS5) are used as a basis for the deliverable.

Guide for the simulation of AVs with microscopic modelling tool (öffnet in neuem Fenster)

Detailed guidance for users of the AV-ready microscopic simulation tool (Vissim) and generic guidance for other microscopic simulation tools.

Guidelines: How to become an AV-ready road authority? (öffnet in neuem Fenster)

The four ‘AV-ready Action Plans’ will be summarised in ‘Guidelines: How to become an AV-ready road authority?” (D4.7) that will provide guidance and best practice examples to road authorities in Europe and beyond on how to become AV-ready.

CoEXist Exploitation and Innovation Plan (öffnet in neuem Fenster)

CoEXist partners will develop an Exploitation Plan (D5.5) that describes the actions to follow for the sustainability and exploitation project results. It will identify exploitable results and also describe dissemination channels implemented during the course of the project to support the exploitation of results

Report on four 'AV-Ready Fora' (öffnet in neuem Fenster)

Each road authority will organise an ‘AV-ready forum’ that will present the results from the use case assessment to local and national stakeholder groups. D4.4 presents the results from all the Fora.

Data Management Plan (öffnet in neuem Fenster)

Data Management Plan (D6.1) describe what data the project will generate, and how it will be produced and analysed. It also aims to detail how the data related to the CoEXist project will be disseminated and afterwards shared and preserved.

Completed specification templates for four local scenarios and generic low/medium/high scenarios (öffnet in neuem Fenster)

D1.4 describes “demand side” variables which include the traditional traffic composition (traffic flow and modal composition), AV-specific variables such as penetration rates of AVs, SAE automation levels, levels of connectivity and other AV-specific variables that will be specified in the project for the analysis of the use cases in WP3 and WP4. ‘AV-ready: Scenario Specification Templates’ (MS6) are used as a basis for the deliverable.

AV-ready framework (extended version) (öffnet in neuem Fenster)

D1.2 is an extended version of the AV-ready framework that includes an update from the CoEXist results (input from all other WPs) and a general update regarding the CoEXist relevant technological and regulatory developments in AVs (based on results from other ART projects and other sources).

Technical report on data collection and validation process (öffnet in neuem Fenster)

Technical report, specifying means of data about collection and explaining the validation process.

Training material from CoEXist training (öffnet in neuem Fenster)

Furthermore, CoEXist will organise a training session (MS34) during the final conference on how to make proper use of the tools that have been developed to enhance take-up of the CoEXist results. The training material will be made available on the CoEXist website.

Completed experimental setup templates for eight use cases and AV-ready alternative design (öffnet in neuem Fenster)

D31 will present completed experimental setup templates for eight use cases and AVready alternative designs

AV-ready hybrid road infrastructure design recommendations (öffnet in neuem Fenster)

The recommendations will be developed as part of both a project internal workshop as well as the Design Recommendation Workshop (MS21), which will be attended by experts from the FEHRL members (i.e. Road research institutions) and others. The recommendations will be published in a glossy edition.

Technical report on the application of AV-ready hybrid road infrastructure assessment tool (öffnet in neuem Fenster)

D4.3 explains how the AV-ready hybrid road infrastructure assessment tool was applied to eight use cases. The systematic analysis provideds an answer on whether a use case is AV-ready or not.

Default behavioural parameter sets for AVs (öffnet in neuem Fenster)

A set of generic realistic behavioural parameter sets for AVs.

Report on integrated CAV demonstration (öffnet in neuem Fenster)

Report on the demonstration of an advanced use case of cooperative automated driving at the ITS European Congress 2019 in Eindhoven/Helmond.

Guide for the simulation of AVs with macroscopic modelling tool (PTV Visum extension) available for CoEXist partner cities (öffnet in neuem Fenster)

This guide provides detailed guidance for users of the AV-ready macroscopic simulation tool (Visum) and generic guidance that can be applied by other microscopic simulation tools.

Guide for the simulation of AVs with microscopic modelling tool - Final Version (öffnet in neuem Fenster)

Detailed guidance for users of the AV-ready microscopic simulation tool (Vissim) and generic guidance for other microscopic simulation tools.

AV-Ready Action Plan for each road authority (öffnet in neuem Fenster)

A concrete ‘AV-ready Action Plan’ (D4.6) will be set up for each road authority that gives detailed guidance on steps the road authorities have to take to conduct AV-ready transport and infrastructure planning.

Definitions of performance metrics and qualitative indicators (öffnet in neuem Fenster)

Detailed definitions of performance metrics (e.g. safety, traffic performance and infrastructure space efficiency) and qualitative indicators.

Communication and Dissemination strategy (öffnet in neuem Fenster)

At the beginning of the project, a dedicated CoEXist Communication and Dissemination strategy (D5.1) will be developed, which will guide the project’s communication and dissemination activities throughout the project and beyond. This strategy will also include a specific chapter on international cooperation (see also task 1.3) and linked communication and dissemination activities.

Technical report on the application of AV-ready modelling tools (incl. Input & output data) (öffnet in neuem Fenster)

A series of experiments will be simulated where the amount of AVs is increased step-by-step according to the scenarios developed in T1.2 and T3.1. The data resulting from these experiments will be the input data for the ‘AV-ready hybrid road infrastructure assessment tool’ in T4.3.

Report on cooperation with other H2020 projects (especially ART projects) and on stakeholder engagement process (öffnet in neuem Fenster)

The CoEXist project seeks to liaise with thematically related RDI projects (especially in the Horizon 2020 thematic area of Automated Road Transport - ART), as well as with different types of stakeholders. All activities will be summarised in a report (D5.4) at the end of the project. Minutes of workshops with OEMs and other key stakeholders such as public authorities, road research institutes etc will be included in this report.

Report on CoEXist's international cooperation (öffnet in neuem Fenster)

D1.5 summarises CoEXist’s international cooperation activities.

AV-ready framework (1st Version) (öffnet in neuem Fenster)

D1.1 provides the backbone of the entire project by providing the conceptual framework for AV-readiness. The core of this deliverable is to develop a working definition of AV-ready and to operationalise it in the AV-ready framework through a multi-stakeholder consultation process.

Built-in functionality for the AV-ready macroscopic modelling tool available for CoEXist partner cities (incl. example and documentation) (öffnet in neuem Fenster)

Report on the developed built-in functionalities to enable users of the macroscopic transportation planning software to take into account AV-ready road infrastructure and AVs as separate user class in static assignments; and to allow the impact assessment of AVs in the simulation-based dynamic assignment.

Baseline microscopic and macroscopic models (öffnet in neuem Fenster)

D4.1 ensures that the base models (either microscopic, macroscopic or both) in the four road authorities are ready to assess the use cases specified in T1.2 and the alternative designs from T3.1. This includes the implementation of the baseline scenario for each use case and the verification, error checking, calibration and validation of the models. In some cases, this will require additional network coding or collection of baseline traffic data for the use cases.

Tested and calibrated control logic, AV-simulator and traffic simulator closed-loop connection (Software) (öffnet in neuem Fenster)

D2.1 is a real-time closed loop connection (software) between the AV control logics (provided by Renault and Vedecom), PreScan and Vissim.

AV-ready microscopic simulation tool (PTV Vissim extension) available for CoEXist partner cities (öffnet in neuem Fenster)

AV-ready microscopic simulation software (Vissim extension) that is based on realistic assumptions from near to market-ready AVs.

AV-ready microscopic simulation tool (PTV Vissim extension) available for CoEXist partner cities - Final Version (öffnet in neuem Fenster)

AV-ready microscopic simulation software (Vissim extension) that is based on realistic assumptions from near to market-ready AVs.

AV-ready hybrid road infrastructure assessment tool (öffnet in neuem Fenster)

The aim of the tool is to use the outputs from the application of the (WP2) AV-ready modelling tools and to conduct an assessment that provides an answer to whether the road infrastructure is AV-ready or not.

AV-ready macroscopic modelling tool (öffnet in neuem Fenster)

AV-ready macroscopic simulation software (Visum extension) that is based on realistic assumptions from near to market-ready AVs.

Video animations for each use case (öffnet in neuem Fenster)

D4.5 illustrates findings from CoEXist to a non-technical audience.

Recordings of all webinars available on YouTube and mobility-academy.eu (öffnet in neuem Fenster)

CoEXist will organise three webinars targeted at technical planners from authorities and transport planning consultancies. The webinars will serve as ‘taster trainings’, raising awareness for the project’s tools. Recordings will be made available in YouTube and mobility-academy.eu.

Veröffentlichungen

Automation-ready framework for urban transport planning

Autoren: Bernard Gyergyay; Syrus Gomari; Johan Olstam; Fredrik Johansson; Markus Friedrich; Jörg Sonnleitner; Siegfried Rupprecht; Wolfgang Backhaus
Veröffentlicht in: 7th Transport Research Arena TRA 2018 (TRA 2018) (TRA2018), Vienna, 16-19 April 2018, Ausgabe April 16, 2018, 2018
Herausgeber: TRA

An approach for systematic assessment of infrastructure automation readiness from a traffic performance perspective

Autoren: Johan Olstama, Fredrik Johanssona, Chengxi Liua, Iman Pereiraa
Veröffentlicht in: Proceedings of 8th Transport Research Arena TRA 2020, April 27-30, 2020, Helsinki, Finland, Ausgabe April 27, 2020 / Yearly, 2020
Herausgeber: TRA

Integrating automated vehicles into macroscopic travel demand models (öffnet in neuem Fenster)

Autoren: Markus Friedrich, Jörg Sonnleitner, Emely Richter
Veröffentlicht in: Transportation Research Procedia, Ausgabe 41, 2019, Seite(n) 360-375, ISSN 2352-1465
Herausgeber: Elsevier
DOI: 10.1016/j.trpro.2019.09.060

An Approach for Handling Uncertainties Related to Behaviour and Vehicle Mixes in Traffic Simulation Experiments with Automated Vehicles (öffnet in neuem Fenster)

Autoren: Johan Olstam, Fredrik Johansson, Adriano Alessandrini, Peter Sukennik, Jochen Lohmiller, Markus Friedrich
Veröffentlicht in: Journal of Advanced Transportation, Ausgabe 2020, 2020, Seite(n) 1-17, ISSN 0197-6729
Herausgeber: Institute for Transportation, Inc.
DOI: 10.1155/2020/8850591

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