Application of small-signal modeling and measurement techniques to the stability analysis of an integrated switching-mode power system

R. C. Wong, G. E. Rodriguez, H. Owen, T. Wilson
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引用次数: 9

Abstract

Small-signal modeling techniques are used in a system stability analysis of a breadboard version of a complete functional electrical power system. The system consists of a regulated switching dc-to-dc converter, a solar-cell-array simulator, a solar-array EMI filter, battery chargers and linear shunt regulators. Loss mechanisms in the converter power stage, including switching-time effects in the semiconductor elements, are incorporated into the modeling procedure to provide an accurate representation of the system without requiring frequency-domain measurements to determine the damping factor. The small-signal system model is validated by the use of special measurement techniques which are adapted to the poor signal-to-noise ratio encountered in switching-mode systems. The complete electrical power system with the solar-array EMI filter is shown to be stable over the intended range of operation.
小信号建模和测量技术在综合开关型电力系统稳定性分析中的应用
小信号建模技术用于一个完整的功能电力系统的面包板版本的系统稳定性分析。该系统由稳压开关dc- dc转换器、太阳能电池阵列模拟器、太阳能电池阵列EMI滤波器、电池充电器和线性分流稳压器组成。转换器功率级中的损耗机制,包括半导体元件中的开关时间效应,都被纳入建模过程,以提供系统的准确表示,而不需要频域测量来确定阻尼因子。采用特殊的测量技术对小信号系统模型进行了验证,该测量技术适用于开关模式系统中遇到的低信噪比。完整的电力系统与太阳能阵列EMI滤波器被证明是稳定的在预期的范围内的操作。
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