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<dim:field authority="97ED9F73-8FBF-4A18-A0D6-F920CCA57E4D" element="contributor" qualifier="author" confidence="ACCEPTED" language="es-ES" mdschema="dc">Callista S, Jyotsna</dim:field>
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<dim:field authority="0009-0008-2150-3906" element="contributor" qualifier="author" confidence="ACCEPTED" language="es-ES" mdschema="dc">Asensio Gil, Juan Manuel</dim:field>
<dim:field authority="0000-0002-8540-7664" element="contributor" qualifier="author" confidence="ACCEPTED" language="es-ES" mdschema="dc">Rodríguez-Morcillo García, Carlos</dim:field>
<dim:field element="date" qualifier="accessioned" mdschema="dc">2025-09-11T12:04:05Z</dim:field>
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<dim:field element="date" qualifier="issued" language="es_ES" mdschema="dc">2024-03-19</dim:field>
<dim:field element="identifier" qualifier="uri" mdschema="dc">http://hdl.handle.net/11531/103905</dim:field>
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<dim:field element="description" qualifier="abstract" language="es-ES" mdschema="dc">The iRider project presents an innovative initiative that seamlessly integrates sensors and cameras into electric scooters, elevating rider safety and experience through comprehensive biomechanical analysis. By incorporating an array of sensors and cameras onto electric scooters, the project acquires precise real-time data concerning scooter movements and user posture. Driven by collaborative synergy, the multidisciplinary project emphasizes objectives including biomechanical analysis, automated data collection, and versatile system design. The project holds the promise of enhancing the electric scooter riding experience and contributing to the transportation industry and academic exploration. It propels advancements in safety, sensor integration, and innovative applications within the transportation sector.</dim:field>
<dim:field element="description" qualifier="abstract" language="en-GB" mdschema="dc">The iRider project presents an innovative initiative that seamlessly integrates sensors and cameras into electric scooters, elevating rider safety and experience through comprehensive biomechanical analysis. By incorporating an array of sensors and cameras onto electric scooters, the project acquires precise real-time data concerning scooter movements and user posture. Driven by collaborative synergy, the multidisciplinary project emphasizes objectives including biomechanical analysis, automated data collection, and versatile system design. The project holds the promise of enhancing the electric scooter riding experience and contributing to the transportation industry and academic exploration. It propels advancements in safety, sensor integration, and innovative applications within the transportation sector.</dim:field>
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<dim:field element="source" language="es_ES" mdschema="dc">Libro: 2nd IEEE International Applied Sensing Conference - IEEE APSCON 2024, Página inicial: 1-4, Página final:</dim:field>
<dim:field element="subject" qualifier="other" language="es_ES" mdschema="dc">Instituto de Investigación Tecnológica (IIT)</dim:field>
<dim:field element="title" language="es_ES" mdschema="dc">iRider : Integrating sensors and cameras for in-depth biomechanical analysis of electric scooter</dim:field>
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<dim:field element="keywords" language="es-ES" mdschema="dc">E-scooter, Biomechanics, Safety, Instrumentation, ADAS</dim:field>
<dim:field element="keywords" language="en-GB" mdschema="dc">E-scooter, Biomechanics, Safety, Instrumentation, ADAS</dim:field>
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