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Fast SPICE-Compatible Simulation of Low-Power On-Chip PWM DC–DC Converters With Improved Ripple Accuracy

机译:高功率片上PWM DC-DC转换器的快速增量仿真,具有改进的纹波精度

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摘要

The circuit averaging technique has long been used as the basis for modeling the behavioral effects of switched-mode pulsewidth-modulated (PWM) dc-dc power converter circuits due to its simplicity and efficiency in simulation. However, circuit-averaged models struggle to capture the effects of higher order harmonics on the output waveforms. Alternatively, multiharmonic models that capture high-frequency characteristics of output waveforms are typically very complex and computationally expensive. A general, efficient, and accurate multiharmonic modeling and simulation technique for low-power on-chip PWM dc-dc converters is presented in this article. The technique is based on the large-signal averaged model of the PWM switch cell and on the Fourier series expansion of the typical converter waveforms. Its applicability range includes current-mode-controlled dc-dc converters. The method is exemplified on a buck and on a boost converter and achieves a speedup of one order of magnitude with an accuracy loss below 3% over the transistor-level simulation. The method accounts for nonideal circuitry and supports any number of harmonics.
机译:电路平均技术长期被用作建模开关模式脉冲调制(PWM)DC功率转换器电路的行为效果的基础,由于其简单性和仿真效率。然而,电路平均模型争取捕获高阶谐波对输出波形的影响。或者,捕获输出波形的高频特性的多发性模型通常非常复杂并且计算地昂贵。本文提出了一种用于低功耗片上PWM DC-DC转换器的一般,高效,精确的多谐谐波建模和仿真技术。该技术基于PWM开关单元的大信号平均模型以及典型转换器波形的傅里叶串联扩展。其适用性范围包括电流模式控制的DC-DC转换器。该方法在BUCK和升压转换器上举例说明,并且在晶体管电平仿真中实现了一个大量级的加速,精度损耗低于3%。该方法占Nonideal电路并支持任何数量的谐波。

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