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    • 3. 发明申请
    • HYDROGEN FUELING WITH INTEGRITY CHECKS
    • 具有完整性检查的氢燃料
    • US20170074707A1
    • 2017-03-16
    • US15163919
    • 2016-05-25
    • Honda Motor Co., Ltd.
    • Steven R. Mathison
    • G01F22/00F17C13/02F17C5/06
    • G01F22/00F17C5/007F17C5/06F17C13/023F17C2223/0123F17C2250/032F17C2250/0421F17C2250/0621F17C2260/02F17C2270/0139G01F22/02
    • According to one or more aspects, systems and techniques for hydrogen fueling with integrity checks are provided herein. Communicated parameters measured by on-board sensors of a vehicle may be cross-referenced against calculated parameters measured by sensors of a fueling station. For example, communicated parameters relating to a compressed hydrogen storage system (CHSS) tank of a vehicle to be fueled may be received at different time intervals. Calculated parameters may be calculated based on a mass of hydrogen fuel dispensed by a hydrogen fueling station from a reference point to one of the time intervals and densities of the CHSS tank of the vehicle at respective time intervals. An error may be calculated between the communicated parameters and the calculated parameters. A fueling mode, such as a conservative fueling mode or a non-conservative fueling mode, may be determined based on the calculated error.
    • 根据一个或多个方面,本文提供了具有完整性检查的氢燃料加注系统和技术。 通过车辆的车载传感器测量的通信参数可以与由加油站的传感器测量的计算参数进行交叉参考。 例如,可以以不同的时间间隔接收与要加燃料的车辆的压缩氢存储系统(CHSS)罐相关的通信参数。 计算参数可以基于氢燃料加油站从参考点分配的氢燃料的质量到车辆的CHSS罐的时间间隔和密度之间的时间间隔来计算。 可以在传送的参数和计算的参数之间计算错误。 可以基于所计算的误差来确定加油模式,例如保守加油模式或非保守加油模式。