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Method, apparatus and computer program product for determining a frequency domain response of a nonlinear microelectronic circuit

机译:用于确定非线性微电子电路的频域响应的方法,装置和计算机程序产品

摘要

A method, apparatus and computer program product for determing a frequency response of a nonlinear microelectronic circuit includes simulating the behavior of the circuit over a broad frequency range by producing a plurality of periodic component signals, having respective noninterfering frequencies within the frequency range, as an input signal to the nonlinear microelectronic circuit. A time domain simulation of the behavior of the microelectronic circuit is then produced and followed by production of a frequency domain simulation from the time domain simulation once a steady-state condition has been reached. Only a single time domain simulation is required and it can be generated simultaneously for all frequencies in the desired range without the occurrence of second- order harmonic interferences. The plurality of periodic component signals are summed together and produced as a multifrequency input signal by initially determining respective frequencies (and amplitudes) for the component signals and then determining whether one or more of the frequencies, or second-order harmonics or intermodulation components of the frequencies, equals another of the frequencies to thereby cause interference among the plurality of periodic component signals. If an interference is present, then at least one of the frequencies is adjusted to reduce potential interferences among the plurality of periodic component signals and thereby obtain a new plurality of frequencies for the periodic component signals. These operations repeatedly performed to eliminate second-order interferences among the periodic component signals, before using the periodic component signals as an input signal.
机译:一种用于确定非线性微电子电路的频率响应的方法,装置和计算机程序产品,包括:通过产生多个周期性分量信号来模拟该电路在较宽的频率范围内的行为,所述多个周期性分量信号具有在该频率范围内的各个无干扰频率。输入信号到非线性微电子电路。然后,产生微电子电路的行为的时域仿真,并且一旦达到稳态条件,则由时域仿真产生频域仿真。只需要一个时域仿真,就可以在所需范围内为所有频率同时生成该仿真,而不会发生二阶谐波干扰。通过首先确定分量信号的各个频率(和幅度),然后确定是该信号的频率中的一个或多个,还是二次谐波或互调分量,将多个周期性分量信号相加并产生为多频输入信号。这些频率等于另一个频率,从而在多个周期性分量信号之间引起干扰。如果存在干扰,则调整频率中的至少一个以减少多个周期性分量信号之间的潜在干扰,从而获得用于周期性分量信号的新的多个频率。在将周期分量信号用作输入信号之前,重复执行这些操作以消除周期分量信号之间的二阶干扰。

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