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Simulation Analysis of Electromagnetic Compatibility in Vehicle Ignition Control System

机译:车辆点火控制系统电磁兼容性的仿真分析

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The ignition control system is the critical Electromagnetic interference source in automobile, and the transient voltage in primary circuit loop attacks the accumulator and interferes with the ECU or other electronic devices by power cord, and simultaneously the high frequency spark noise caused by spark plug may produce radiated noise which affects the electromagnetic environment inside and outside the automobile. Lots of vehicle manufactory are faced with the problem that the EMI testing value exceeds the threshold value. It is an urgent need to research the ignition system electromagnetic compatibility and seek the ignition system EMI suppressing method for enhancing the vehicle EMC. The objective of this study is to analyze the ignition system EMI formation mechanism and its effect for electromagnetism environment inside the vehicle, then taking effective suppressing measures to optimize ignition system EMC design. This paper simulates the ignition primary circuit transient current and voltage in EMC simulating software by analysing the working principle of gasoline engine ignition system and the formation mechanism of ignition system EMI. This study establishes secondary coil circuit loop spark plug discharge modle, the high voltage wire is equivalent to antenna, the electric field EMI distribution inside vehicle has been worked out, and then it researched the electromagnetic environmental effect of high-voltage wire position, length, working frequency and load impedance. The radiated electric field distribution is acquired by establishing vehicle body, antenna model in the Simulation Analysis. The longer length the high-voltage wire is, the stronger the radiated noise is. The height of wire from ground has little effect on electric field intensity, working frequency is higher and the radiated noise is stronger. These studies provide judgement basis for the optimization of electronic equipment installation position. This paper analyses the reason of ignition system EMI and electromagnetic environmental effect, and gives suggestion for susceptive electronic equipment installation. An important limitation of the current study is our study can't include all ignition system problems, and some problems need to be discussed further; more convenient vehicle body modeling methods and spark plug noise suppressing methods need to be researched further. It is a new study of analysing ignition system EMI, establishing math model and analysing the effect of susceptivity equipment for electromagnetic environment. At present, most of car manufactories mainly focus on electromagnetic noise testing, so the simulating researching of ignition system disturbance characteristic can improve automobile overall EMC design. The research result indicates: making use of damp high-voltage wire, resistance type spark plug and shielding method for ignition coil and high-voltage wire can reduce radialization disturbance, but sometimes various suppressing measures will be taken.
机译:点火控制系统是汽车中至关重要的电磁干扰源,一次回路中的瞬态电压会攻击蓄能器并通过电源线干扰ECU或其他电子设备,同时可能会产生由火花塞引起的高频火花噪声辐射噪声会影响汽车内外的电磁环境。许多车辆制造商面临EMI测试值超过阈值的问题。迫切需要研究点火系统的电磁兼容性,寻求抑制点火系统的EMI的方法,以提高车辆的EMC。本研究的目的是分析点火系统EMI的形成机理及其对车内电磁环境的影响,然后采取有效的抑制措施来优化点火系统的EMC设计。通过分析汽油机点火系统的工作原理和点火系统EMI的形成机理,利用EMC仿真软件对点火一次电路的瞬时电流和电压进行仿真。本研究建立了次级线圈回路的火花塞放电模型,高压线等效于天线,计算出车内电场EMI分布,进而研究了高压线位置,长度,电磁干扰的电磁环境效应。工作频率和负载阻抗。通过在仿真分析中建立车身,天线模型来获取辐射电场分布。高压线的长度越长,辐射噪声越强。导线离地面的高度对电场强度影响很小,工作频率较高,辐射噪声较强。这些研究为优化电子设备的安装位置提供了判断依据。本文分析了点火系统产生电磁干扰和电磁环境影响的原因,并为敏感的电子设备安装提供了建议。当前研究的一个重要局限性是我们的研究不能涵盖所有点火系统问题,还有一些问题需要进一步讨论。更便捷的车身建模方法和火花塞噪声抑制方法需要进一步研究。这是一项分析点火系统EMI,建立数学模型并分析磁化率设备对电磁环境影响的新研究。目前,大多数汽车制造厂主要集中于电磁噪声测试,因此对点火系统扰动特性的仿真研究可以改善汽车的整体EMC设计。研究结果表明:利用潮湿的高压线,电阻式火花塞以及点火线圈和高压线的屏蔽方法可以减少径向干扰,但有时会采取各种抑制措施。

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