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= MA 23 funded project ULEA / ROMEO
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= MA 23 funded project ULEA / ROMEO
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image:./img/Ulea_Logo.png[Ulea_Logo.png,role="float"] image:./img/ma23.jpg[ma23.jpg,role="float", link="https://www.wien.gv.at/forschung/institutionen/fh.html"]
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image:./img/Ulea_Logo.png[Ulea_Logo.png,role="float"] image:./img/ma23.jpg[ma23.jpg,role="float", link="https://www.wien.gv.at/forschung/institutionen/fh.html"]+
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== Abstract
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== Abstract
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... | @@ -20,14 +20,14 @@ The aim of this project is to build up competence as well as to set-up a laborat |
... | @@ -20,14 +20,14 @@ The aim of this project is to build up competence as well as to set-up a laborat |
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*Specifically, the project ULEA takes gender-sensitive and diversity oriented approaches into account:*
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*Specifically, the project ULEA takes gender-sensitive and diversity oriented approaches into account:*
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* by combining basic technologies on e-mobility and assistive technologies with socio-political and social application scenarios , requirements and issues
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* by combining basic technologies on e-mobility and assistive technologies with socio-political and social application scenarios , requirements and issues
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* by a laboratory infrastructure is built , the problem- based learning practices and a practical approximation to course content allows ( - instead of only first theoretical mediation ).
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* by a laboratory infrastructure is built , the problem- based learning practices and a practical approximation to course content allows ( - instead of only first theoretical mediation ).+
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State of the art in AT, AAT, AAL are mostly insulated standard solutions. For interconnection, typically non-safe communication system components are used to realize distributed control systems. This requires costly certification and inspection procedures. Since AT systems are almost by necessity a "drive by wire" system, a high reliability is required. As such systems are more and more integrated in every days domestic life, avoiding a control-failure becomes also increasingly critical. Even with (semi-) autonomous care systems, which will play a significant role in the future, an high reliability is important. Imagine a mobile platform that actually should bring drugs to an assisted person failing to halt and knocking the person over. By using high-performance bus systems, integration of further control intelligence is relatively easy to accomplish. This offers the possibility to integrate new types of driving aids as they are not yet commercially available (e.g. collision avoidance of wheelchairs with the help of ultrasonic sensors). In particular, a partially autonomous driving in indoor areas would be possible. The user has only to select a known target, but has no further control effort (for example, a visit to the toilet). Accordingly, the development of such a power wheelchair is both ideally suited to build up the infrastructure and expertise in aspects of e-mobility assistive technologies.
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State of the art in AT, AAT, AAL are mostly insulated standard solutions. For interconnection, typically non-safe communication system components are used to realize distributed control systems. This requires costly certification and inspection procedures. Since AT systems are almost by necessity a "drive by wire" system, a high reliability is required. As such systems are more and more integrated in every days domestic life, avoiding a control-failure becomes also increasingly critical. Even with (semi-) autonomous care systems, which will play a significant role in the future, an high reliability is important. Imagine a mobile platform that actually should bring drugs to an assisted person failing to halt and knocking the person over. By using high-performance bus systems, integration of further control intelligence is relatively easy to accomplish. This offers the possibility to integrate new types of driving aids as they are not yet commercially available (e.g. collision avoidance of wheelchairs with the help of ultrasonic sensors). In particular, a partially autonomous driving in indoor areas would be possible. The user has only to select a known target, but has no further control effort (for example, a visit to the toilet). Accordingly, the development of such a power wheelchair is both ideally suited to build up the infrastructure and expertise in aspects of e-mobility assistive technologies.
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This project is funded by the link:http://www.wien.gv.at/english/[City of Vienna], department link:https://www.wien.gv.at/forschung/institutionen/fh.html[MA23], under grant number MA23-Projekt 15-05.
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This project is funded by the link:http://www.wien.gv.at/english/[City of Vienna], department link:https://www.wien.gv.at/forschung/institutionen/fh.html[MA23], under grant number MA23-Projekt 15-05.
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The duration of the Project is from March 2014 to end of May 2018.
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The duration of the Project is from March 2014 to end of May 2018.+
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== Further Information
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== Further Information
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For information on clothoid path planning follow the link to our public project wiki: link:./clothoid-path-planing/[Clothoid Path Planning] |
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For information on clothoid path planning follow the link to our public project wiki: link:./clothoid-path-planing/[Clothoid Path Planning] |