Multi-sensor vehicle testing: Recording inertial sensors via CAN bus in combination with recorded GNSS RF signals

K. von Hunerbein, P. Argent, T. Schulze
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引用次数: 4

Abstract

Today, vehicles are equipped with multiple sensors for positioning and navigation to provide accurate and reliable information to the driver and to the Advanced Driver Assistance Systems in order to enhance safety of driving. Sensor data are exchanged via the CAN bus. Traditional test systems allow testing of one or two signals or sensors. But today, there is a need to test as many sensors together as possible. Here we would like to present an integrated test solution combining GNSS RF record and replay with a CAN bus interface which enables the system to provide record and playback of a wide range of vehicle CAN bus data using technology provided by the Automotive industry experts DGtech. During drive tests, signals from Galileo, GPS, GLONASS and Beidou can be recorded as RF, at L1, L2 or L5 with a Spirent Record and Replay System. “A highly specialized, portable unit - in this case, the Spirent GSS6425 - is taken on the drive test, faithfully recording the entire RF environment at each stage, including all GNSS signals, any interference, and any other RF signals present at the location. This is replayed on the bench, as many times as engineers require, to verify and improve performance.” [1] CAN bus messages can be recorded as plain text ASCII data by the systems CAN bus interface which is a DG Tech Gryphon S4C data logger capable of being integrated into a wide range of commercial, industrial and military vehicles. The GNSS signal recordings and the CAN bus recordings are stored in a highly synchronized data stream and can be played back synchronously with a delta difference of less than 15ms. Heading truth data is recorded as serial data via a dedicated high performance GPS-Aided Inertial Navigation Sensor and audio/video source provided by up to 3 web cameras. During replay the GNSS signals are directly presented to the UUT. CAN bus messages are replayed via the CAN bus interface. There is a possibility to drive a rate table with the recorded data. All data streams are time synchronized during replay. Thus the same signal environment is recreated during replay in the laboratory. This system combines GNSS, heading, CAN, video and other sensors, e.g. gyroscopes and accelerometers via CAN, to enable thorough and simultaneous testing of multiple functionalities. It reduces the amount of field tests and provides control and repeatability to the test series in the lab.
多传感器车辆测试:结合记录的GNSS射频信号,通过CAN总线记录惯性传感器
如今,车辆配备了多个定位和导航传感器,为驾驶员和高级驾驶员辅助系统提供准确可靠的信息,以提高驾驶安全。传感器数据通过CAN总线交换。传统的测试系统允许测试一个或两个信号或传感器。但是今天,需要尽可能多地同时测试传感器。在这里,我们想提出一个集成的测试解决方案,将GNSS射频记录和重放与CAN总线接口相结合,使系统能够使用汽车行业专家DGtech提供的技术提供各种车辆CAN总线数据的记录和重放。在驾驶测试期间,来自伽利略,GPS, GLONASS和北斗的信号可以用思博伦记录和回放系统记录为RF, L1, L2或L5。“驱动测试采用了高度专业化的便携式设备——思博伦GSS6425,忠实地记录了每个阶段的整个射频环境,包括所有GNSS信号、任何干扰以及该位置存在的任何其他射频信号。根据工程师的要求,这个过程会在实验台上重复播放,以验证和提高性能。[1] CAN总线消息可以通过系统CAN总线接口记录为纯文本ASCII数据,该接口是DG Tech Gryphon S4C数据记录器,能够集成到广泛的商业,工业和军用车辆中。GNSS信号记录和CAN总线记录存储在高度同步的数据流中,可以以小于15ms的增量差同步回放。航向真实数据通过专用的高性能gps辅助惯性导航传感器和多达3个网络摄像头提供的音频/视频源记录为串行数据。在重放期间,GNSS信号直接呈现给UUT。CAN总线消息通过CAN总线接口重播。有可能用记录的数据驱动一个速率表。所有数据流在回放期间都是时间同步的。因此,相同的信号环境在实验室重放期间被重新创建。该系统结合了GNSS,航向,CAN,视频和其他传感器,例如陀螺仪和加速度计通过CAN,能够全面和同时测试多种功能。它减少了现场测试的数量,并为实验室中的测试系列提供了可控性和可重复性。
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