首页> 外文会议>Conference on Vehicle Electronic Systems ; Jun 25-26, 2002; Coventry, UK >INTELLIGENT DEPLOYMENT FOR AUTOMOTIVE RESTRAINT SYSTEMS USING LOW COST INFRA-RED SENSORS
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INTELLIGENT DEPLOYMENT FOR AUTOMOTIVE RESTRAINT SYSTEMS USING LOW COST INFRA-RED SENSORS

机译:使用低成本红外传感器的智能约束系统的智能部署

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Airbags and seatbelts have saved thousands of lives since their introduction onto production cars and have minimised the number and extent of injuries suffered by drivers and passengers. However, in a small proportion of cases, the airbags have actually injured and caused death. Studies have shown that certain factors are partly responsible for making such people susceptible to airbag related injury; predominantly these factors are age, body weight, gender, and sitting position inside the cabin. Some manufacturers have attempted to gain information about the occupant using a mixture of weight sensors (mat, strain gauges etc) and ultrasonic or infra-red sensors, with some success. This research team proposes that the use of infra-red sensors, combined with other types of sensor incorporated inside the cabin will be able to record and process real-time data of the persons position, physical dimensions and movement, thus enabling correct deployment of restraints suited for that particular person. These sensors will be networked with CAN bus since this is the standard data communication controller used in the car industry, and also because of its low cost, reliability and real-time control capability. This paper details the research that other parties have done in this field, and also describes the initial work done and future ideas and work that will be done at Loughborough University's Mechatronics Research Centre, in conjunction with IRISYS Ltd. Although the project is at an early stage, a mock car cabin has been made to allow people of varying sizes and degree of mobility to be tested and to evaluate which people are at risk. The Engineering and Physical Sciences Research Council (EPSRC) is funding the project by a quota PhD studentship administered by the Faraday PRIME partnership. The industrial company IRISYS Ltd also supports the project.
机译:自从将安全气囊和安全带引入量产车以来,已经挽救了数千人的生命,并最大程度地减少了驾驶员和乘客受到伤害的数量和程度。但是,在少数情况下,安全气囊实际上已经受伤并导致死亡。研究表明,某些因素导致这些人容易受到与气囊相关的伤害。这些因素主要是年龄,体重,性别和机舱内的坐姿。一些制造商尝试使用重量传感器(垫子,应变仪等)和超声或红外传感器的混合物来获取有关乘员的信息,并取得了一些成功。该研究小组建议,将红外传感器与机舱内内置的其他类型的传感器结合使用,将能够记录和处理人员位置,身体尺寸和运动的实时数据,从而能够正确部署约束适合那个人。这些传感器将通过CAN总线联网,因为这是汽车行业中使用的标准数据通信控制器,并且还因为其低成本,可靠性和实时控制能力。本文详细介绍了其他方面在该领域的研究,并描述了拉夫堡大学机电研究中心与IRISYS Ltd一起完成的初步工作以及未来的想法和工作。尽管该项目尚处于初期阶段在这一阶段,我们制作了一个模拟车厢,以便对各种规模和机动程度的人员进行测试,并评估哪些人有危险。工程与物理科学研究委员会(EPSRC)由法拉第PRIME合作伙伴管理的名额博士研究生资助该项目。工业公司IRISYS Ltd也支持该项目。

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