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Launch Performance Optimization of GTDI-DCT Powertrain

机译:GTDI-DCT动力总成的发射性能优化

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摘要

A direct trajectory optimization approach is developed to assess the capability of a GTDI-DCT Powertrain, with a Gasoline Turbocharged Direct Injection (GTDI) engine and Dual Clutch Transmission (DCT), to satisfy stringent drivability requirements during launch. The optimization is performed directly on a high fidelity black box powertrain model for which a single simulation of a launch event takes about 8 minutes. To address this challenging problem, an efficient parameterization of the control trajectory using Gaussian kernel functions and a Mesh Adaptive Direct Search optimizer are exploited. The results and observations are reported for the case of clutch torque optimization for launch at normal conditions, at high altitude conditions and at non-zero grade conditions. The results and observations are also presented for the case of simultaneous optimization of multiple actuator trajectories at normal conditions.
机译:开发了一种直接轨迹优化方法,以评估带有汽油涡轮增压直接喷射(GTDI)发动机和双离合变速器(DCT)的GTDI-DCT动力总成的能力,以满足发射期间严格的驾驶性能要求。该优化直接在高保真黑匣子动力总成模型上执行,对于该模型,发射事件的单个模拟大约需要8分钟。为了解决这个具有挑战性的问题,利用了高斯核函数和网格自适应直接搜索优化器对控制轨迹进行了有效的参数化。报告了在正常条件下,高海拔条件下和非零坡度条件下启动离合器扭矩优化情况下的结果和观察结果。还提供了在正常条件下同时优化多个执行器轨迹的情况下的结果和观察结果。

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