Describing-function analysis of a ripple regulator with slew-rate limits and time delays

G. Wester
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引用次数: 21

Abstract

The effects of time delays and slew-rate limits on the steady-state operating points and performance of a free-running ripple regulator are evaluated using describing-function analysis. The describing function of an ideal comparator (no time delays or slew rate limits) has no phase shift and is independent of frequency. It is found that turn-on delay and turn-off delay have different effects on gain and phase and cannot be combined. Comparator hysteresis affects both gain and phase; likewise, time delays generally affect both gain and phase. It is found that the effective time delay around the feedback loop is one half the sum of turn-on and turn-off delays, regardless of whether the delays are caused by storage time or slew rate limits. Expressions are formulated for the switching frequency, switch duty ratio, DC output, and output ripple. For the case of no hysteresis, a simple graphical solution for the switching frequency is possible, and the resulting switching frequency is independent of first-order variations of input or load.<>
具有慢速率限制和时滞的纹波调节器的描述函数分析
利用描述函数分析方法,研究了时间延迟和慢速限制对自由运行纹波调节器稳态工作点和性能的影响。理想比较器的描述函数(没有时间延迟或摆率限制)没有相移,与频率无关。研究发现,导通延时和关断延时对增益和相位的影响是不同的,不能综合使用。比较器迟滞对增益和相位都有影响;同样,时间延迟通常同时影响增益和相位。研究发现,无论延迟是由存储时间还是摆率限制引起的,反馈环周围的有效时间延迟都是导通和关断延迟之和的一半。给出了开关频率、开关占空比、直流输出和输出纹波的表达式。对于无迟滞的情况,可以用简单的图形解出开关频率,并且得到的开关频率与输入或负载的一阶变化无关
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