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Simulation of arc-circuit instability in a low current DC automotive switching application

机译:小电流直流汽车开关应用中电弧电路不稳定性的仿真

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摘要

The dynamic arc produced in a switch breaking an inductive load sometimes interacts with the rest of the circuit to produce a highly nonlinear response characterized by growing, high frequency oscillations, current chopping and transient overvoltages. System simulation, therefore, requires an approach that includes switch arc behavior. A technique for employing a well-known equation from power circuit breaker design to analyze such arc-circuit interaction for switch arcs of less than 2 mm in length is described. The so-called Mayr arc equation provides a basis for accurate modeling of arc-circuit instability after one recognizes that the drawn switch arc exists in two distinct phases, for which the mechanisms of arc erosion and instability are effectively decoupled. This approach provides a technique for predicting instabilities in switched automotive electrical systems that could result in either radiofrequency interference to vehicle electronics, or potentially damaging high voltage transients.
机译:破坏感应负载的开关中产生的动态电弧有时会与电路的其余部分相互作用,从而产生高度非线性的响应,其特征是不断增长的高频振荡,电流斩波和瞬态过电压。因此,系统仿真需要一种包括开关电弧行为的方法。描述了一种技术,该技术采用功率断路器设计中的众所周知的方程式来分析长度小于2 mm的开关电弧的这种电弧-电路相互作用。在人们认识到所绘制的开关电弧存在于两个不同的阶段之后,所谓的Mayr电弧方程为精确建立电弧电路的不稳定性提供了基础,为此,电弧腐蚀和不稳定性的机理得到了有效的解耦。该方法提供了一种用于预测开关式汽车电气系统中的不稳定性的技术,该不稳定性可能会导致射频干扰车辆电子设备或潜在地破坏高压瞬变。

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