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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Optimized Control of a Pressure-Wave Supercharger: A Model-Based Feedforward Approach
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Optimized Control of a Pressure-Wave Supercharger: A Model-Based Feedforward Approach

机译:压力波增压器的优化控制:基于模型的前馈方法

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摘要

Engine downsizing and boosting is known to substantially improve the fuel economy of passenger cars. Compared to traditional boosting devices, pressure-wave superchargers (PWS) have several advantages. In particular, the substantial delays in the torque dynamics caused by conventional turbochargers can be avoided by a careful tuning of the pressure-wave processes taking place inside the PWS. These processes can be tuned to match the changing thermodynamic boundary conditions of the engine system by changing the rotational speed, by opening or closing a bypass channel, and by adjusting the offset between the two rotor casings. The optimal choice of these control actions is not trivial such that a purely experimental approach is not possible. Accordingly, two models are developed that are able to predict the pressure wave dynamics. They are validated using data measured on an engine test bench. The second model which is based on a lumped-parameter approach, forms the basis for a feedforward controller. The synthesis of such a controller and its validation on the same engine test bench is described as well
机译:已知发动机的小型化和增压可显着改善乘用车的燃油经济性。与传统的增压设备相比,压力波增压器(PWS)具有多个优势。尤其是,通过仔细调整PWS内部发生的压力波过程,可以避免传统涡轮增压器造成的扭矩动态的明显延迟。通过改变转速,打开或关闭旁通通道以及调节两个转子壳体之间的偏移量,可以调整这些过程以匹配发动机系统不断变化的热力学边界条件。这些控制动作的最佳选择并非无关紧要,以致于不可能单纯采用实验方法。因此,开发了两个能够预测压力波动力学的模型。使用在发动机测试台上测得的数据对它们进行了验证。第二个模型基于集总参数方法,构成了前馈控制器的基础。还描述了这种控制器的综合及其在同一发动机测试台上的验证。

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