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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >On the Electromagnetic Susceptibility of Hot Wire-Based Electroexplosive Devices to RF Sources
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On the Electromagnetic Susceptibility of Hot Wire-Based Electroexplosive Devices to RF Sources

机译:基于热线的电爆炸装置对射频源的电磁敏感性

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摘要

We present an analysis of the thermal response of a hot-wire electroexplosive device (EED) excited with different transient signals. First-order and second-order analytical models to calculate the thermal response of an EED are assessed taking as reference numerical simulations obtained using ANSYS. For the early-time response, when the time is much smaller than the thermal constant of the EED, the best approach corresponds to a first-order differential model in which the thermal capacitance is calculated with short-pulse excitations. A linear simplification to calculate the maximum temperature due to short excitations is also shown to be adequate. On the other hand, the most appropriate model for the late-time response is a second-order model. The models are used to assess the electromagnetic susceptibility of a wired EED for different electromagnetic pulsed environments. Radiated signals produced by a mesoband radiator, two types of radars, and a hyperband radiator are considered. The radar signal proved to be the most disturbing source because of its highest duty cycle and its flat spectral response around a specific frequency. Even the temperature firing threshold can be exceeded with the radiated field produced by a radar of 200 kW of output power located at a distance of 5 m.
机译:我们提出了一种用不同瞬态信号激发的热线电爆装置(EED)的热响应的分析。以使用ANSYS获得的参考数值模拟为基础,评估了计算EED热响应的一阶和二阶分析模型。对于早期响应,当时间远小于EED的热常数时,最佳方法对应于一阶微分模型,在该模型中,利用短脉冲激励来计算热容。线性简化来计算由于短激励引起的最高温度也被证明是足够的。另一方面,最适合后期响应的模型是二阶模型。该模型用于评估有线EED在不同电磁脉冲环境下的电磁敏感性。考虑由中频带辐射器,两种类型的雷达和超频带辐射器产生的辐射信号。事实证明,雷达信号是最大的干扰源,因为它具有最高的占空比和在特定频率附近的平坦频谱响应。 200 kW输出功率的雷达在5 m处产生的辐射场甚至可以超过温度发射阈值。

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