Remapping the EFI in Automotive Engine Control Unit Using Piggy-Back ECU

Phu Thuong, Luu Nguyen
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Abstract

Electronic fuel injection (EFI) is a complex system where many parts are connected together, from mechanical parts to electronic parts, to control the internal combustion engine. It must ensure many different things, and the most important thing in motorsport to achieve is power optimization. High power and engine responsiveness are often desired to gain a competitive edge. Usually, motorsport enthusiasts will upgrade the car's standard with aftermarket components such as higher-rated turbos, longer-duration camshafts, and exhaust systems. These are difficult to approach, time-consuming, and expensive tasks compared to the ECU calibration method. In Vietnam, most customers who want to change the performance of their vehicle use the remapping method on the factory ECU. By using the vehicle performance regulation method with a piggy-back ECU, it is easier for the user to adjust than the popular remap method. With advantages such as low cost and easy installation. And currently, there are very few documents describing and evaluating the effectiveness of piggy-back ECUs installed in vehicles. So in this paper, experimental remapping of the electronic fuel injection system with a piggy-back ECU was performed, and then we simulated the control algorithms of the electronic fuel injection system on LabView and compared the results with the experiment. This was based on a simulation model of the EFI system's operation algorithm, with many cases in various load engines and engine speeds. Simulation results are used to evaluate the algorithm on the piggy-back ECU.
用背接式ECU重新映射汽车发动机控制单元的电喷
电子燃油喷射(EFI)是一个复杂的系统,由许多部件连接在一起,从机械部件到电子部件,以控制内燃机。它必须确保很多不同的东西,在赛车运动中最重要的是要实现动力优化。高功率和发动机响应能力往往是获得竞争优势所需要的。通常情况下,赛车爱好者会升级汽车的标准与售后市场的部件,如更高额定的涡轮增压器,更持久的凸轮轴和排气系统。与ECU校准方法相比,这些方法难以接近,耗时且昂贵。在越南,大多数想要改变车辆性能的客户使用工厂ECU上的重新映射方法。采用搭载ECU的车辆性能调节方法,比常用的重映射方法更便于用户调整。具有成本低、安装方便等优点。目前,很少有文件描述和评估安装在车辆上的背接ecu的有效性。为此,本文对电子燃油喷射系统进行了搭载式ECU的实验重映射,并在LabView上对电子燃油喷射系统的控制算法进行了仿真,并与实验结果进行了比较。这是基于电喷系统运行算法的仿真模型,在不同负载和发动机转速下有许多情况。仿真结果验证了该算法在背载式ECU上的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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