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Evaluation of Cylinder Pressure Transducer Accuracy Based Upon Mounting Style, Heat Shields, and Watercooling

机译:基于安装风格,隔热罩和水冷却的气缸压力传感器精度评估

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This investigation evaluated different pressure transducers in one cylinder to examine the combustion measurement differences between them simultaneously. There were a total of eleven transducers ranging in both diameter and type of transducer (piezo-electric, piezoresistive, and optical). Furthermore, the sensors differed in the methodology for minimizing signal distortion due to temperature. This methodology could take the form of various size mounting passages, heat shields, watercooling or heat transfer paths. To evaluate the sensors, different engine-operating conditions were conducted, focusing at full load and low speeds. Other hardware configurations of the same engine family were used to exaggerate the combustion environment, specifically a tumble-motion plate and turbocharging. Metrics for accuracy of the sensors were based upon the variation of absolute and statistical combustion parameters, deviation to an exhaust absolute pressure sensor, comparison to other sensors during the combustion cycle, and variability of each sensor to itself during the combustion cycle. Finally sensors were evaluated for knock recognition.
机译:该研究评估了一个气缸中的不同压力传感器,以便同时检查它们之间的燃烧测量差异。换能器的直径和型型(压电,压阻和光学)的直径和型,总共有11个传感器。此外,传感器在方法中不同,以最小化由于温度引起的信号失真。该方法可以采用各种尺寸安装通道,隔热罩,水冷或传热路径的形式。为了评估传感器,进行不同的发动机操作条件,以满载和低速聚焦。同一发动机系列的其他硬件配置用于夸大燃烧环境,特别是滚动运动板和涡轮增压。用于精确的传感器精度的度量基于绝对和统计燃烧参数的变化,与排气绝对压力传感器的偏差,与燃烧循环期间的其他传感器相比,以及在燃烧循环期间对其自身的各种传感器的可变性。最后评估了传感器的爆震识。

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