FP7Докторантска мрежа2014–2018

MOTORIST · MOTOrcycle Rider Integrated SafeTy

7РП — „Хора“ (Действия „Мария Кюри“)

Период
2014-02-01 → 2018-01-31
Финансиране от ЕС
3 725 793 €
Участници
10
Схема
MC-ITN

Линиите свързват координатора с партньорите.

Накратко на български

Безопасността на мотоциклистите се изследва чрез анализ на поведението при инциденти, нови системи за управление и по-добра защитна екипировка. Целта е да се намалят нараняванията при катастрофи и да се подобри обучението на водачите.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

MOTOrcycle Rider Integrated SafeTy

FP7-MC-ITN “MOTORIST” (Motorcycle Rider Integrated Safety): February 1, 2014 - January 31, 2018. The research aim of the MOTORIST project was to contribute to a safer use of Powered Two Wheelers (PTWs) in terms of rider behavior, vehicle technology and personal protective equipment. The project was divided in three work packages (WPs) addressing three separate but related goals. The first work package (WP1, Partners involved: Unifi, Siemens, TUDelft) focused on the improvement of rider’s skills via novel training strategies derived from in-depth accident data analysis and the investigation of rider behavior under emergency. The second work package (WP2 Partners involved: TUDelft, Unifi, Siemens) aimed at developing advanced safety systems that improve the interaction between the rider and the PTW by modelling the rider, also according to the quantification of riders behavior carried out on. The third work package (WP3 Partners involved: UWB, Dainese, LMU, UNISTRA) considered the cases where the crash is unavoidable and has developed personal protective equipment to protect the riders, given the input conditions in-depth accident data analysis at the moment right before impact. The project outcomes were: new rider training guidelines, novel safety system concepts implemented on PTWs, and improved personal protective equipment and accompanying standards. These results can be used by PTW industry partners in product development processes and by stakeholders to educate riders. The ambition for the medium to long term is to reduce injuries by improving PTW safety. This achievement would potentially improve the perception of PTW safety in the population, so that more people may prefer to use a PTW as to other means of transport. 18 Deliverables and 12 Milestones were completed: the public reports are available in the project website (http://www.MOTORIST-ptw.eu/), together with the list of the papers presented at international conferences and in scientific journals. The scientific and socio-economic impact of each WP is summarised as follows. WP1. Rider training The research has shown the key parameters to characterize and predict the response of riders in emergency situations, with focus on relevant crash scenarios such as at intersections. Findings provide a foundation for future training activities to increase rider competencies and for safety systems development. A major outcome of this work was the definition of a test protocol to be used to elicit in the rider realistic emergency responses. The protocol considers a PTW approaching a mock-up intersection and an opponent car simulating the initiation of a turning manoeuvre across the PTW path. This protocol was tested both in riding simulator activities and with experiments in the field, with promising results for the analysis of rider performance under emergency and for the definition of new training strategies combining hazard perception with vehicle control skills. WP2. Integrated Safety The availability of driving simulators for bicycles and PTWs will pave the way for research and training aiming to enhance road safety for these vulnerable road users. The conceptual safety functionality, called Motorcycle Autonomous Emergency Braking (M-AEB) and its stereo vision based sensor sets at target for accident prevention in PTW. The relevance of the knowledge base of motorcycle safety (KBMS) relies on its potential to bridge motorcycle accident research with industrial development of safety systems. A future widely accepted and open access KBMS would be advantageous to promote in the whole of Europe, becoming a tool to assist policy makers in taking well-funded decisions on safety regulations in order to make PTWs a safer means of transport. The camera-based remote sensor developed is an important step towards making real preventive safety technologies in tilting vehicles. In addition, the promising results achieved so far for the application of the Motorcycle Autonomous Braking System (M-AEB), ask for the validation of the remote sensor in a wider variety of conditions to foresee its application in motorcycle safety systems. WP3. Personal Protective Equipment The scalable virtual human body model implemented as a motorcycle rider will help to identify the potential injury risk by the numerical approach to the accident reconstruction. The new materials and designs developed physically and modelled virtually contribute to the development and optimization of the personal protective equipment by both the experimental and the numerical approaches. Coupling the personal protective equipment to the human body model brings the new ways to develop the personal protective equipment as a product using the numerical calculation and optimization from both the mechanical and design points of view. The biomechanics studied for the motorcycle accident scenario will help to develop the new and to improve the current legislation concerning the motorcycle safety.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Powered Two Wheelers (PTWs) are an efficient and flexible transport system and their use is beneficial especially in the more and more congested European cities. Unfortunately the PTW riders are exposed to a high risk of becoming a victim in a crash mainly due to the difficulty to control a PTW under all circumstances but also due to limited conspicuity. In addition when PTW riders are crash victims limited protection is offered to prevent injuries when compared to vehicle occupants. The aim of the research activities within the project is to make the use of PTWs safer such that fewer accidents occur and if an accident is unavoidable the consequences for the rider to sustain injuries are minimal. The project is divided in three work packages (WPs) with three separate but related goals . The first work package aims to improve the rider’s skills with training strategies that are derived from in-depth accident data and from a quantification of rider behaviour in critical situations. The second work package aims at developing advanced safety systems that improve the interaction between the rider and the PTW by modelling the rider, also based on the in WP1 quantified rider behaviour. The third work package considers the cases where the crash is unavoidable and will develop personal protective equipment to protect the riders, given the input conditions from WP2 at the moment right before impact. The end result of this project will be a set of rider training guidelines that are proven to be effective, safety system concepts implemented on PTWs and improved personal protective equipment and accompanying standards.These can be used by PTW industry partners in product development processes and by stakeholders such as ACEM and the EU to educate riders. This will ultimately improve the safety of PTWs and moreover the perceived safety, which will make more people decide to use a PTW as a good alternative to other means of transport.

Оригинален текст от CORDIS (на английски).

Участници

Връзки

Данни: CORDIS, © Европейски съюз