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Study of Intake Charge Control Method on TGDI Engine with CVVL System

机译:具有CVVL系统的TGDI发动机进气充电控制方法研究

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(1) There are best Psr on all operating points for TGDI engine with CVVL system, at which lowest BSFC and relatively optimal emissions both are achieved at the same time. (2) The combination of intake valve lift and throttle opening is the best charge control method at low to middle loads when Rip is smaller than 0.95. Intake valve lift is the dominant control method and throttle opening is assistance method to achieve best Psr. (3) Throttle opening is the main charge control method when intake valve lift reaches 8.64 mm, the maximum lift position, till Rip exceeds 0.95. (4) The combination of turbocharger and throttle opening is the best charge control method on high loads after Rip exceeds 0.95. Turbocharger is the dominant control method and throttle opening is assistance method to ensure Rip greater than 0.95. (5) Turbocharger pressure is the sole charge control method after throttle is fully opened and Rip reaches 1. This work gives a design foundation for control software functions development of CVVL engine and helps improving CVVL engine control quality and calibration efficiency.
机译:(1)有最好的PSR上TGDI发动机CVVL系统的所有工作点,在该最低BSFC和相对最佳排放量两者都在同一时间实现。 (2)当RIP小于0.95时,进气门提升和节气门开口的组合是低至中负荷的最佳充电控制方法。进气门升降机是主导控制方法,节气门开度是辅助方法,以实现最佳PSR。 (3)油门开口是当进气阀升降机达到8.64毫米时的主电荷控制方法,最大升力位置,直至撕裂超过0.95。 (4)涡轮增压器和节气门开度的组合是RIP超过0.95后的高负荷的最佳充电控制方法。涡轮增压器是主导控制方法,节气门开度是辅助方法,以确保RIP大于0.95。 (5)涡轮增压器压力是油门完全打开和RIP达到的鞋底电荷控制方法1.这项工作为控制软件功能开发的CVVL发动机提供了设计基础,有助于提高CVVL发动机控制质量和校准效率。

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