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首页> 外文期刊>Microwave and Wireless Components Letters, IEEE >Transient Behavioral Modeling of Nonlinear I/O Drivers Combining Neural Networks and Equivalent Circuits
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Transient Behavioral Modeling of Nonlinear I/O Drivers Combining Neural Networks and Equivalent Circuits

机译:结合神经网络和等效电路的非线性I / O驱动器的瞬态行为建模

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摘要

In this letter, a new method for nonlinear behavioral modeling of high-speed I/O drivers is presented, combining neural networks with driver specific circuit knowledge. In the proposed technique, the circuit knowledge of the driver is exploited to preserve the physical property of the driver. In addition, several neural network sub-models are incorporated into the overall model structure to effectively compensate the missing information in the existing buffer models, when dealing with analog input signals of various shapes. The validity and efficiency of the proposed technique are demonstrated through the modeling of a commercial I/O driver and the use of the resulting model for signal integrity simulations.
机译:在这封信中,提出了一种将神经网络与特定于驱动器的电路知识相结合的高速I / O驱动器非线性行为建模的新方法。在提出的技术中,利用驱动器的电路知识来保留驱动器的物理特性。此外,在处理各种形状的模拟输入信号时,几个神经网络子模型被合并到整个模型结构中,以有效补偿现有缓冲区模型中的缺失信息。通过对商用I / O驱动器进行建模以及将所得模型用于信号完整性仿真,证明了所提出技术的有效性和效率。

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