Experimental and numerical approach to assess the dynamic performance of an inductive ignition system

IF 2.2 4区 工程技术 Q2 ENGINEERING, MECHANICAL International Journal of Engine Research Pub Date : 2024-03-05 DOI:10.1177/14680874241233812
Mauricio Monroy Jaramillo, Juan David Ramírez Alzate, Carlos Alberto Romero Piedrahita, Juan Camilo Mejía Hernández
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Abstract

This paper envisages studying the features of a conventional inductive ignition system along with its MOSFET and IGBT-based transistorized modifications. The influence of mechanical contact breaker dynamics and ignition coil characteristics on the current and voltage waveforms of the primary and secondary circuits of these studied ignition systems are mathematically and experimentally exposed. The investigation is considered necessary prior to attempting subsequent modeling and diagnostics procedures on the current-voltage performance characteristics of conventional and transistorized ignition systems. The work has demanded the development of an experimental setup based on a basic modifiable ignition system mockup and an instrumentation system to measure and analyze the voltage-current parameters of inductive ignition systems. The paper describes the design details of such instrumentation system, presents mechanical and electrical models for contact breaker and ignition circuits, then simulated to obtain base free-run response waveforms and electrical continuity behavior of the contact. A test of frequency response of the ignition coil provided additional input to the model. An experimental test of continuity of the contact, in agreement with its model, shed light on the actual excitation of the primary coil. The work comments on a sample of the registered current and voltage waveforms in primary and secondary coil windings of the ignition system at atmospheric conditions. Comparisons of waveforms and energy for mechanical contact, MOSFET and IGBT switches are made to establish them as a reference for future tests.
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评估电感点火系统动态性能的实验和数值方法
本文旨在研究传统电感点火系统及其基于 MOSFET 和 IGBT 的晶体管改型的特点。机械触点断路器动态和点火线圈特性对这些点火系统初级和次级电路的电流和电压波形的影响,将通过数学和实验加以揭示。在尝试对传统点火系统和晶体管点火系统的电流-电压性能特征进行后续建模和诊断程序之前,这项调查被认为是必要的。这项工作要求开发一种基于基本可修改点火系统模拟和仪器系统的实验装置,以测量和分析电感点火系统的电压-电流参数。论文介绍了该仪器系统的设计细节,提出了触点断路器和点火电路的机械和电气模型,然后通过模拟获得了触点的基本自由运行响应波形和电气连续性行为。点火线圈的频率响应测试为模型提供了额外的输入。对触点连续性的实验测试与模型一致,揭示了初级线圈的实际激励情况。工作对大气条件下点火系统初级线圈和次级线圈绕组中记录的电流和电压波形样本进行了评论。对机械触点、MOSFET 和 IGBT 开关的波形和能量进行了比较,以便为今后的测试提供参考。
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来源期刊
International Journal of Engine Research
International Journal of Engine Research 工程技术-工程:机械
CiteScore
6.50
自引率
16.00%
发文量
130
审稿时长
>12 weeks
期刊介绍: The International Journal of Engine Research publishes high quality papers on experimental and analytical studies of engine technology.
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