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Development of advanced diagnostic functions in very high volume automotive sensor applications

机译:在大批量汽车传感器应用中开发高级诊断功能

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We present an opportunity for an overall system improvement of a very high volume automotive application based on advanced low-level on-chip signal diagnosis. We put our focus on advanced on-sensor diagnosis and added functionality at the very lowest level close to the magnetic signal of an automotive wheel speed sensor. Besides adding diagnosis for the sensor, this enables diagnostics of the entire mechanical system including the magnetic circuit which is crucial for correct operation. We followed a pre-development path starting with extensive automated measurements, simulations, a micro-controller based implementation, a field programmable gate array (FPGA) and finally a fully integrated application specific integrated circuit (ASIC). ASIC-blocks can be used for integration in the series product. We demonstrate the low-resource implementation of a lowest level sensor diagnostic signal processing circuit based on harmonic distortion analysis. The development path is reviewed with focus on reuse in the light of the specific requirements, advantages and drawbacks of each approach.
机译:我们为基于先进的低电平片上信号诊断的超大规模汽车应用的整体系统改进提供了机会。我们专注于高级传感器上诊断,并在最接近汽车车轮速度传感器磁信号的最低水平上增加了功能。除了增加对传感器的诊断之外,这还可以诊断整个机械系统,包括对正确操作至关重要的磁路。我们遵循了一条预开发道路,从广泛的自动化测量,仿真,基于微控制器的实现,现场可编程门阵列(FPGA)到最终的全集成专用集成电路(ASIC)开始。 ASIC模块可用于系列产品中的集成。我们演示了基于谐波失真分析的最低级别传感器诊断信号处理电路的低资源实现。根据每种方法的特定要求,优点和缺点,回顾了开发路径,重点是重用。

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