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The Breakthrough of Common Rail System: Closed-loop Control Strategy Using Injector with Built-in Pressure Sensor

机译:共轨系统的突破:采用内置压力传感器的喷射器的闭环控制策略

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DENSO has developed the world's first common rail system injector with built-in pressure sensor. This technology makes it possible to execute closed loop injection control in the cylinders, which has been one of the most challenging issues for diesel engine systems. Attaining both further fuel economy and emission reduction requires further technological innovation in the air system and fuel injection system. With the combustion technology that has been developed, stable combustion with high exhaust gas recirculation (EGR) is required in order to reduce nitrogen oxide's (NO_x), however robustness is also required in order to handle bio-diesel and low-cetane value fuels and the range for attaining this is extremely narrow. Therefore, for the fuel injection system, in addition to conventional high pressure and high response, lifetime accuracy compensation is key. With this newly developed technology, the fuel injection rate, which determines the combustion within the engine cylinders, is directly detected and controlled in a closed loop to allow precise compensation of the injection system for its entire service life. Highly advanced injection control allows for extremely close multiple injections and variable injection rate control to be possible on the mass production level for the first time. Furthermore, the use of this technology can provide three major advantages for the overall engine system. Firstly succeeds in an expansion of the possible calibration range, which improves fuel economy and emissions, secondly it provides an improvement in the overall engine robustness and reliability. Thirdly, the use of closed loop control makes it possible to greatly reduce the man-hours required for calibration. Given this, the new DENSO common rail system using injectors with built-in pressure sensors is the first step to opening up a new era of diesel engine control.
机译:DENSO开发了全球第一家共轨系统注射器,内置压力传感器。该技术使得可以在气缸中执行闭环注入控制,这是柴油发动机系统最具挑战性问题之一。达到进一步的燃料经济性和减排需要进一步的技术创新,以及燃油喷射系统。利用已经开发的燃烧技术,需要具有高废气再循环(EGR)的稳定燃烧以减少氮氧化物(NO_X),然而也需要鲁棒性以处理生物柴油和低十六烷值燃料实现这一的范围非常窄。因此,对于燃料喷射系统,除了传统的高压和高响应之外,寿命精度补偿是键。利用这种新开发的技术,直接检测并控制在闭环中直接检测和控制发动机气缸内燃烧的燃料喷射率,以便精确补偿注射系统的整个使用寿命。高级注射控制允许极其关闭多次喷射和可变注入速率控制首次在批量生产水平上进行。此外,这种技术的使用可以为整个发动机系统提供三个主要优点。首先成功扩大了可能的校准范围,从而提高了燃油经济性和排放,其次,它提供了整体发动机鲁棒性和可靠性的提高。第三,使用闭环控制使得可能大大减少校准所需的人间。鉴于这一点,新的Denso公共铁路系统使用带内置压力传感器的喷射器是开辟柴油发动机控制新时代的第一步。

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