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变压器零序阻抗的测量和计算
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作者 苏海芹 《中文科技期刊数据库(全文版)工程技术》 2021年第6期245-246,共2页
文章阐述了当电力系统处于不对称运行状态时,作为故障时继电保护中三相变压器零序阻抗的测量方法,通过试验测量数据和计算分析得出了变压器零序阻抗和正序阻抗之间的关系,从而确定保护的整定范围和选择合适的零序继电保护。
关键词 变压器 激磁阻抗 零序阻抗 正序阻抗
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用载文南定理计算感应电机和变压器的特性曲线
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作者 王奎夫 《光学精密工程》 EI CAS CSCD 1996年第1期78-80,共3页
感应电机和变压器激磁电路的参数是非线性的.为准确求取它们的特性曲线,需要的计算量很大。应用本文引入的方法可以避免大的计算量又可得到准确的特性曲线。
关键词 激磁阻抗 戴维南定理 激磁电路 电机 变压器
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一种新型的磁化曲线仿真模型 被引量:4
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作者 陈超英 许砚田 +1 位作者 王荣琴 贺家李 《天津大学学报》 EI CAS CSCD 1996年第6期859-864,共6页
详细分析了铁芯的磁化过程,并提出了一种新型的能够精确计算所有磁化过程的磁化曲线模型.对电流互感器的暂态特性以及电力变压器的励磁涌流进行了仿真计算,并与录波图对照,得到了满意的结果.
关键词 磁化曲线 激磁阻抗 电力系统 仿真 铁芯
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Characteristics of the induced voltage between deep brain stimulation(DBS) device electrodes by a transcranial magnetic stimulation(TMS) device 被引量:2
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作者 LI QingFeng CHEN ShaoBo +2 位作者 WANG WeiMing HAO HongWei LI LuMing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第6期1062-1071,共10页
The combination of deep brain stimulation(DBS) and transcranial magnetic stimulation(TMS) is expected to provide additional insights into the pathophysiology of some brain diseases. However, when using TMS in patients... The combination of deep brain stimulation(DBS) and transcranial magnetic stimulation(TMS) is expected to provide additional insights into the pathophysiology of some brain diseases. However, when using TMS in patients with DBS implants, the induced voltage between DBS electrodes presents the greatest risk of brain damage. This paper describes the characteristics of the induced DBS electrode voltage due to TMS. We first examined the TMS stimulus signal and the DBS output impedance characteristics, and then experimentally investigated the induced DBS electrode voltage for various DBS and TMS conditions. The results show that many factors impact the induced electrode voltage. The induced electrode voltage with DBS device working in the unipolar mode is greater than that with DBS device working in the bipolar mode. No matter DBS device is turned on or turned off, the induced electrode voltage is almost the same, but it can provide a significant addition to the original stimulus waveform. There are no significant differences in the induced DBS electrode voltage when the DBS system is working at different stimulus intensities. Lowering the TMS stimulus intensity could effectively reduce the induced DBS electrode voltage. The induced electrode voltage is also strongly related to the position of the TMS coil relative to the DBS lead. This study provides further information about the characteristics of the induced DBS electrode voltage in TMS applications and a reference for the combined use of DBS and TMS. 展开更多
关键词 deep brain stimulation transcranial magnetic stimulation induced electrode voltage signal characteristics electromagneticcompatibility
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