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An Approach to the Prototyping of an Optimized Limited Stroke Actuator to Drive a Low Pressure Exhaust Gas Recirculation Valve

机译:一种优化的有限行程执行器驱动低压排气再循环阀的原型设计方法

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摘要

The purpose of this article is to describe the design of a limited stroke actuator and the corresponding prototype to drive a Low Pressure (LP) Exhaust Gas Recirculation (EGR) valve for use in Internal Combustion Engines (ICEs). The direct drive actuator topology is an axial flux machine with two air gaps in order to minimize the rotor inertia and a bipolar surface-mounted permanent magnet in order to respect an 80° angular stroke. Firstly, the actuator will be described and optimized under constraints of a 150 ms time response, a 0.363 N·m minimal torque on an angular range from 0° to 80° and prototyping constraints. Secondly, the finite element method (FEM) using the FLUX-3D® software (CEDRAT, Meylan, France) will be used to check the actuator performances with consideration of the nonlinear effect of the iron material. Thirdly, a prototype will be made and characterized to compare its measurement results with the analytical model and the FEM model results. With these electromechanical behavior measurements, a numerical model is created with Simulink® in order to simulate an EGR system with this direct drive actuator under all operating conditions. Last but not least, the energy consumption of this machine will be estimated to evaluate the efficiency of the proposed EGR electromechanical system.
机译:本文的目的是描述用于驱动内燃机(ICE)的低压(LP)排气再循环(EGR)阀的限行程执行器的设计和相应的原型。直接驱动执行器拓扑结构是一种轴向磁通机,具有两个气隙以最大程度地减小转子惯性,而双极型表面安装永磁体则可以承受80°角行程。首先,将在150 ms的时间响应,在0°至80°的角度范围内的最小扭矩为0.363 N·m的约束条件以及原型约束条件下对执行器进行描述和优化。其次,将使用FLUX-3D ®软件(法国梅兰CEDRAT)的有限元方法(FEM)考虑铁材料的非线性效应来检查执行器性能。第三,将制作原型并进行特征化,以将其测量结果与分析模型和FEM模型结果进行比较。通过这些机电行为测量,使用Simulink ®创建了一个数值模型,以便在所有工作条件下使用该直接驱动执行器来模拟EGR系统。最后但并非最不重要的一点是,将估算该机器的能耗以评估所提出的EGR机电系统的效率。

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