Under the inflammable or explosive environment, the direct measurement methods by opening up the explo- sion-proof shell of electrical installations were not adopted. So, it's impossible to have a quantitative analys...Under the inflammable or explosive environment, the direct measurement methods by opening up the explo- sion-proof shell of electrical installations were not adopted. So, it's impossible to have a quantitative analysis on the limit of conducted disturbance for electrical fast transient burst (EFT/B) in such dangerous environments. Transient conducted coupling model, which using EFT/B as its excitation source, can be built based on circuit and electromagnetic field theory. Furthermore, numerical analysis was performed. The results indicate that the capacitive coupling voltage is the same polarity as EFT/B, and is the main disturbance form of conducted coupling in mines. The inductive coupling voltage is reversed polarity with the ca- pacitive coupling voltage, and both peaks appear only in the rising time of EFT/B, which increase with the rising of load resistance. Moreover, the cable coupling voltage on the side of disturbance source is higher than the one on the other side in tunnel. To reduce the common resistance can suppress the resistive coupling disturbance.展开更多
为了在设计的早期阶段,以仿真的方式预测电子产品在电快速瞬变脉冲群(electrical fast transient/burst,EFT/B)抗扰度试验中的性能,需要建立干扰源发生器及标准耦合装置的仿真模型。为适应EFT/B抗扰度试验标准的修订和补充,提出一种系...为了在设计的早期阶段,以仿真的方式预测电子产品在电快速瞬变脉冲群(electrical fast transient/burst,EFT/B)抗扰度试验中的性能,需要建立干扰源发生器及标准耦合装置的仿真模型。为适应EFT/B抗扰度试验标准的修订和补充,提出一种系统化的EFT/B发生器等效电路的建模方法。首先,基于对发生器充放电物理过程的分析,提出开路条件(1kΩ)下发生器输出波形的解析表达式,且表达式系数可根据仪器厂商的校准波形加以确定;其次,基于该解析式并采用阶跃函数激励,得到脉冲形成网络的传递函数,并分别采用恒电阻法及参数化电网络综合法得到脉冲形成网络的等效电路;最后,对等效电路各元件参数进行归一化处理,并根据发生器在匹配条件下(50Ω)的校准波形确定归一化系数。将EFT/B发生器的等效电路模型与标准容性耦合夹电路模型进行连接仿真,通过仿真与测量结果的对照验证了所提方法的合理性。展开更多
基金Supported by the National Natural Science Foundation of China (50674093) the Project of Fujian Provincial Education Department (JA11098)
文摘Under the inflammable or explosive environment, the direct measurement methods by opening up the explo- sion-proof shell of electrical installations were not adopted. So, it's impossible to have a quantitative analysis on the limit of conducted disturbance for electrical fast transient burst (EFT/B) in such dangerous environments. Transient conducted coupling model, which using EFT/B as its excitation source, can be built based on circuit and electromagnetic field theory. Furthermore, numerical analysis was performed. The results indicate that the capacitive coupling voltage is the same polarity as EFT/B, and is the main disturbance form of conducted coupling in mines. The inductive coupling voltage is reversed polarity with the ca- pacitive coupling voltage, and both peaks appear only in the rising time of EFT/B, which increase with the rising of load resistance. Moreover, the cable coupling voltage on the side of disturbance source is higher than the one on the other side in tunnel. To reduce the common resistance can suppress the resistive coupling disturbance.
文摘为了在设计的早期阶段,以仿真的方式预测电子产品在电快速瞬变脉冲群(electrical fast transient/burst,EFT/B)抗扰度试验中的性能,需要建立干扰源发生器及标准耦合装置的仿真模型。为适应EFT/B抗扰度试验标准的修订和补充,提出一种系统化的EFT/B发生器等效电路的建模方法。首先,基于对发生器充放电物理过程的分析,提出开路条件(1kΩ)下发生器输出波形的解析表达式,且表达式系数可根据仪器厂商的校准波形加以确定;其次,基于该解析式并采用阶跃函数激励,得到脉冲形成网络的传递函数,并分别采用恒电阻法及参数化电网络综合法得到脉冲形成网络的等效电路;最后,对等效电路各元件参数进行归一化处理,并根据发生器在匹配条件下(50Ω)的校准波形确定归一化系数。将EFT/B发生器的等效电路模型与标准容性耦合夹电路模型进行连接仿真,通过仿真与测量结果的对照验证了所提方法的合理性。