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A Dependable AMR Sensor System for Automotive Applications

机译:用于汽车应用的可靠性AMR传感器系统

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The increasing replacement of mechanical parts by x-by-wire systems in automotive applications allows improving driver safety. These systems demand highly dependable sensors that ensure their functionality despite the harsh operating conditions. This means that the sensors should be capable of working continuously despite catastrophic faults and keeping the performance over time. An anisotropic magnetoresistance (AMR) sensor is a magnetic sensor commonly used for angle measurements in cars. It is affected by catastrophic faults and performance degradation due to undesired parameters included at the sensor outputs. Until now, physical redundancy is often used to handle catastrophic faults. For the performance, compensation factors for the undesired parameter, such as offset voltage, are estimated at the start of the sensor life. Although the undesired parameters drift due to aging effects, the sensor performance remains within the allowed tolerant band. However, this tolerant band will decrease in the future because the dependability requirements are continuously increasing. Therefore, it is necessary to consider strategies to guarantee the sensor performance over time. This paper proposes a system to improve the sensor dependability using analytical redundancy for catastrophic faults but also with self-x properties to maintain the sensor performance over time. Results indicate a dependability improvement in terms of reliability, with a reduction of 50% in the rate of uncovered failures. The safety requirement ASIL level D is satisfied, and with regard to maintainability, the sensor performance is maintained over time.
机译:通过汽车应用中的X-By-Wire系统增加机械部件的更换允许提高驾驶员安全性。这些系统需要高可靠的传感器,尽管有严厉的操作条件,但尽管有苛刻的操作。这意味着尽管灾难性的故障并保持随着时间的推移,但传感器应该能够连续工作。各向异性磁阻(AMR)传感器是通常用于汽车的角度测量的磁传感器。由于传感器输出包括不希望的参数,它受灾难性故障和性能下降的影响。到目前为止,实际冗余通常用于处理灾难性的故障。对于性能,在传感器寿命的开始时估计了不需要的参数的补偿因子,例如偏移电压。虽然不期望的参数因老化效果而漂移,但传感器性能仍然在允许的容忍频带内。然而,这种耐受频段将在未来减少,因为可靠性要求是不断增加的。因此,有必要考虑随着时间的推移保证传感器性能的策略。本文提出了一种通过对灾难性断层的分析冗余来改善传感器可靠性的系统,但也具有自我X的性能,以随着时间的推移来保持传感器性能。结果表明,在可靠性方面的可靠性改善,减少了50%的衰减率的失败。满足安全要求ASIL级D,并且关于可维护性,传感器性能随时间保持。

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