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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A numerical algorithm to evaluate the transient response for a synchronous scanning streak camera using a time-domain Baum-Liu-Tesche equation
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A numerical algorithm to evaluate the transient response for a synchronous scanning streak camera using a time-domain Baum-Liu-Tesche equation

机译:使用时域Baum-Liu-Tesche方程评估同步扫描条纹相机瞬态响应的数值算法

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摘要

The transient response is of great influence on the electromagnetic compatibility of synchronous scanning streak cameras (SSSCs). In this paper we propose a numerical method to evaluate the transient response of the scanning deflection plate (SDP). First, we created a simplified circuit model for the SDP used in an SSSC, and then derived the Baum-Liu-Tesche (BLT) equation in the frequency domain. From the frequency-domain BLT equation, its transient counterpart was derived. These parameters, together with the transient-BLT equation, were used to compute the transient load voltage and load current, and then a novel numerical method to fulfill the continuity equation was used. Several numerical simulations were conducted to verify this proposed method. The computed results were then compared with transient responses obtained by a frequency-domain/fast Fourier transform (FFT) method, and the accordance was excellent for highly conducting cables. The benefit of deriving the BLT equation in the time domain is that it may be used with slight modifications to calculate the transient response and the error can be controlled by a computer program. The result showed that the transient voltage was up to 1000 V and the transient current was approximately 10 A, so some protective measures should be taken to improve the electromagnetic compatibility.
机译:瞬态响应对同步扫描条纹相机(SSSC)的电磁兼容性有很大影响。在本文中,我们提出了一种数值方法来评估扫描偏转板(SDP)的瞬态响应。首先,我们为SSSC中使用的SDP创建了简化的电路模型,然后在频域中导出了Baum-Liu-Tesche(BLT)方程。从频域BLT方程中,得出其瞬态对应物。这些参数与瞬态BLT方程一起用于计算瞬态负载电压和负载电流,然后使用一种新的数值方法来满足连续性方程。进行了几个数值模拟,以验证该提议的方法。然后将计算结果与通过频域/快速傅里叶变换(FFT)方法获得的瞬态响应进行比较,该结果非常适合于高导电电缆。在时域中推导BLT方程的好处是,可以对其进行少量修改以计算瞬态响应,并且可以通过计算机程序控制误差。结果表明,瞬态电压高达1000 V,瞬态电流约为10 A,因此应采取一些保护措施以提高电磁兼容性。

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