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Towards the Development of the In-Cylinder Pressure Measurement Based on the Strain Gauge Technique for Internal Combustion Engines

机译:基于内燃机应变仪技术的缸内压力测量的发展

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A simple, cheap and effective way of measuring the pressure inside the cylinders of internal combustion engines is proposed in this paper. It is well known that the in-cylinder pressure is one of the most significant variables describing the combustion status in internal combustion engines; therefore, if the measured value of the actual pressure in the combustion chamber is used as a feedback variable for closed loop monitoring and control techniques, it will be possible both to improve engine performances and to reduce fuel consumptions and emissions. However, to date such a pressure-based control strategy has been limited by costs, reliability and lifetime of commercially available cylinder pressure sensors. To overcome these limitations, the present paper proposes a very simple and low cost experimental device for measuring the pressure inside the combustion chamber, developed for engine control and monitoring applications. The sensor exploits the strain measurements of the external walls of engine cylinders, which are indicative of the pressure information during the combustion process. The measurement is carried out by means of strain gauges attached to the external wall of the cylinders inside the water channels of the cylinder block. This location has been selected because it minimizes the temperature variations induced by different loads and engine speeds. This study presents a feasibility analysis of the system. Preliminary tests were initially conducted on a hydraulic cylinder and subsequently on an internal combustion engine. The analysis shows that the proposed method has the potential to predict the internal cylinder pressure accurately, thus representing an interesting contribution for the development of low-cost engine management systems. The robustness of the proposed solution has the potential to be very high, as the concept is based on strain gauges. Forthcoming experimental investigations on a fired engine under regular engine operating conditions will aim at assessing the capability of the proposed method over various loads, frequencies and thermal conditions.
机译:本文提出了一种简单,便宜,有效的测量内燃机气缸内的压力的方法。众所周知,缸内压力是描述内燃机中燃烧状态的最重要变量之一;因此,如果燃烧室中的实际压力的测量值用作闭环监测和控制技术的反馈变量,则可以改善发动机性能并降低燃料消耗和排放。然而,迄今为止,基于压力的控制策略受到市售气缸压力传感器的成本,可靠性和寿命的限制。为了克服这些限制,本文提出了一种用于测量燃烧室内的压力的非常简单和低成本的实验装置,用于发动机控制和监控应用。该传感器利用发动机汽缸外壁的应变测量,这表示在燃烧过程中的压力信息。通过将附着在汽缸体的水通道内的圆柱体的外壁上的应变计进行测量。此位置已选择,因为它最大限度地减少了不同负载和发动机速度引起的温度变化。本研究提出了系统的可行性分析。最初在液压缸上并随后在内燃机上进行初步试验。该分析表明,该方法具有准确地预测内部气缸压力的可能性,从而表示对低成本发动机管理系统的发展的有趣贡献。所提出的解决方案的稳健性具有非常高的潜力,因为该概念基于应变仪。在常规发动机运行条件下发射发动机的实验研究旨在评估所提出的方法在各种负载,频率和热条件下的能力。

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