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Experimental Assessment of a Methodology for the Indirect in-Cylinder Pressure Evaluation in Four-Stroke Internal Combustion Engines

机译:四冲程内燃机间接缸压力评价方法的实验评价

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摘要

Recent innovations in engine control and diagnostics are providing room for development of innovative combustion approaches (e.g., low-temperature combustion) able to minimize the creation of pollutants. To ensure the constant fulfillment of the prescribed thermodynamic conditions, however, a fast real-time monitoring of the in-cylinder pressure is needed. To this end, dynamic pressure sensors, flush-mounted on the cylinder head, are commonly used. With this approach, the measurement accuracy is high, but the durability is limited by the harsh working conditions. The installation on the cylinder head is also complex. The development of robust and effective indirect measurement systems could then represent the enabler of a further development of this technology. In the present study, an innovative methodology to measure the in-cylinder pressure has been conceived and extensively tested on a four-stroke single-cylinder engine. The proposed approach is based on the analysis of the mechanical stress on the engine studs by means of a piezoelectric strain washer. This solution allows the user for a rapid and cost-effective sensor installation, described in the paper along with the signal post-processing techniques. Results showed good accuracy and robustness of the methodology, making the results of practical use for engine control.
机译:最近的发动机控制和诊断的创新正在为能够最大限度地减少污染物的创建,为开发创新燃烧方法(例如,低温燃烧)提供更新的空间。为确保规定的热力动力学条件的恒定实现,需要快速实时监测缸内压力。为此,通常使用动态压力传感器,安装在气缸盖上。通过这种方法,测量精度高,但耐用性受到严格工作条件的限制。气缸盖上的安装也很复杂。然后,稳健和有效的间接测量系统的开发可以代表该技术的进一步发展的推动者。在本研究中,在四冲程单缸发动机上构思和广泛地测试了一种测量缸内压力的创新方法。所提出的方法基于通过压电应变垫圈对发动机螺柱机械应力进行分析。该解决方案允许用户进行快速且经济高效的传感器安装,以及该方法的信号后处理技术。结果表明,该方法的良好准确性和稳健性,使发动机控制的实际使用结果。

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