Voltage Signals Measured Directly at the Battery and via On-Board Diagnostics: A Comparison

Gereon Kortenbruck, Lukas Jakubczyk, Daniel Frank Nowak
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Abstract

Nowadays, cars are an essential part of daily life, and failures, especially of the engine, need to be avoided. Here, we used the determination of the battery voltage as a reference measurement to determine possible malfunctions. Thereby, we compared the use of a digital oscilloscope with the direct measurement of the battery voltage via the electronic control unit. The two devices were evaluated based on criteria such as price, sampling rate, parallel measurements, simplicity, and technical understanding required. Results showed that the oscilloscope (Picoscope 3204D MSO) is more suitable for complex measurements due to its higher sampling rate, accuracy, and versatility. The on-board diagnostics (VCDS HEX-V2) is more accessible to non-professionals, but it is limited in its capabilities. We found that the use of an oscilloscope, specifically the Picoscope, is preferable to measure battery voltage during the engine start-up process, as it provides more accurate and reliable results. However, further investigation is required to analyse numerous influences on the cranking process and the final decision for the appropriate measurement device is case specific.
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电压信号直接测量在电池和通过车载诊断:比较
如今,汽车是日常生活中必不可少的一部分,需要避免故障,特别是发动机故障。在这里,我们使用电池电压的测定作为参考测量来确定可能的故障。因此,我们比较了数字示波器与通过电子控制单元直接测量电池电压的使用。根据价格、采样率、平行测量、简单性和所需的技术理解等标准对这两种设备进行评估。结果表明,Picoscope 3204D MSO示波器具有较高的采样率、精度和通用性,更适合于复杂的测量。车载诊断(VCDS HEX-V2)对于非专业人员来说更容易使用,但其功能有限。我们发现使用示波器,特别是Picoscope,更适合在发动机启动过程中测量电池电压,因为它提供了更准确和可靠的结果。然而,需要进一步的调查,以分析对曲柄过程的众多影响,并最终决定适当的测量装置是具体情况。
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