基于香料的自动化软件网络分析仪

N. Pongratananukul
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引用次数: 2

摘要

由于开关电源的高度非线性,分析其控制特性具有挑战性,并且引入了各种新的拓扑结构。数学的复杂性是一种负担,容易产生错误和过度简化。传统的方法包括寻找直流工作点和应用小信号线性化处理。本文通过时域仿真,提出了一种利用“原状”电路提取频率响应的试验台方法。SPICE的高级功能用于在拟议的仿真平台中自动完成80%以上的瞬态域频率响应查找过程,类似于网络分析仪的实际使用方式。除了构造电路图外,还需要进行一些仿真设置。虽然需要很长的仿真时间,但我们可以看到几个好处,包括:1)该方法将适用于任何电路拓扑,2)它允许在任何硬件可用之前进行理论评估,以及3)由于频率响应是在瞬态模式下发现的,我们可以合并所有电路参数并避免简化建模假设。从变换器时域响应中提取基频分量,通常以变时间步长模式模拟。在SPICE内部通过连续时间行为模型计算傅里叶级数。利用仿真平台,通过对峰值电流型变换器的建模,研究了当输入电压调节有源时最大功率点跟踪控制的“输入电压调节(IVR)”。此外,还使用高级编程语言从输出数据文件中提取数据
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Spice-based Automated Software Network Analyzer
Analyzing switched-mode power supply's control characteristics is challenging due to the high nonlinearity, and various new topologies are introduced. The mathematical complexity is a burden and is prone to error and oversimplification. Tradition approach includes finding the DC operating point and applying the small-signal linearization process. In this paper, a test bench method is developed to extract frequency response using "as is" circuit via time domain simulation. Advanced features in SPICE are used to automate over 80% of the process for finding frequency response in transient domain in the proposed simulation platform, similar to how the network analyzer is actually used. Besides constructing the circuit diagram, only some simulation setup is required. Although a long simulation time is needed, we can see several benefits including: 1) the method will work with any circuit topology, 2) it allows theoretical evaluation before any hardware become available, and 3) since the frequency response is found in transient mode, we can incorporate all circuit parameters and avoid simplified modeling assumptions. Fundamental frequency components are extracted out of the converter time-domain responses that are usually simulated in a variable time-step mode. The Fourier series are calculated inside SPICE via continuous-time behavioral models. Simulation platform is applied to study the "input voltage regulation (IVR)" of the maximum power point tracking control when the input voltage regulation is active with modeling of peak-current mode converter. Further an advanced programming language is used to extract data from output data file
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