受控电流源
- 网络Controlled Current Source
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利用一个简单的并联在节点和地之间的受控电流源进行分析。
Making use of a shunt-wound controlled current source between the node and the ground elucidation is carried on .
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基于补偿原理,利用变压器的受控电压源和受控电流源模型,分析了该系统的稳压原理。
Based on compensation concept , the principle of this system is analyzed by utilizing the controlled voltage source and controlled current source model of a transformer .
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该方法考虑了变换器的寄生元件,由理想功率开关管、理想二极管和理想变压器组成的理想开关部分用受控电流源和电压源替代。
The ideal switching part consisted of ideal switches , ideal diodes , and an ideal transformer is modeled by dependent current and voltage sources .
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提出了仪器的设计方法,给出了仪器框图、受控电流源、电流控制原理及测量精度的保证措施。
The design method of the instrument is proposed , and the block diagram and controlled current-source as well as techniques for guaranteeing the measurement accuracy are given .
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将反映这些物理过程的数学公式用非线性电路元件表示,组成了由非线性电阻、电容及受控电流源所构成的晶闸管模型。
The mathematical formulas describing these physical process are replaced by corresponding nonlinear elements and an equivalent circuit model for a thyristor is formed which consists of nonlinear resistors , nonlinear capacitors and controlled current sources .
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本文根据多端口网络中用混合系数矩阵表征的多端口方程,讨论了电路机辅分析中用直接法自动形成含有受控电流源和互感网络的状态方程和输出方程的原理和方法。
Basing on the poly-port network equation characterized by hybrid factor matrix in poly-port network , this article deals with the principle and method which automatically formulate the state equation and output equation of the network with controlled-current source and mutual inductance by direct method in CAA of circuit .
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数字仿真接口用A/D转换通道与受控注入电流源实现,物理仿真接口用基于直流耦合的背靠背变流器结构的放大电路实现。
In this joint simulation system the digital simulation interfaces are implemented by A / D conversion channels and controlled injection current sources , and the physical simulation interfaces are implemented by amplifying circuits with the structure of DC coupling based back-to-back converters .
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该文首先分析VSC的工作原理,在此基础上建立以交流侧受控电压源和直流侧受控电流源描述的VSC等效仿真模型。
Then simulating the VSCs function by using controlled voltage source at the AC side and controlled current source at the DC side , its equivalent simulation model was established .