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Simplified small-signal stability analysis for optimized power system architecture

机译:简化的小信号稳定性分析,可优化电源系统架构

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The optimization of power architectures is a complex problem due to the plethora of different ways to connect various system components. This issue has been addressed by developing a methodology to design and optimize power architectures in terms of the most fundamental system features: size, cost and efficiency. The process assumes various simplifications regarding the utilized DC/DC converter models in order to prevent the simulation time to become excessive and, therefore, stability is not considered. The objective of this paper is to present a simplified method to analyze small-signal stability of a system in order to integrate it into the optimization methodology. A black-box modeling approach, applicable to commercial converters with unknown topology and components, is based on frequency response measurements enabling the system small-signal stability assessment. The applicability of passivity-based stability criterion is assessed. The stability margins are stated utilizing a concept of maximum peak criteria derived from the behavior of the impedance-based sensitivity function that provides a single number to state the robustness of the stability of a well-defined minor-loop gain.
机译:由于连接各种系统组件的方式多种多样,因此电源架构的优化是一个复杂的问题。通过开发一种方法来解决此问题,该方法可以根据最基本的系统功能:尺寸,成本和效率来设计和优化电源架构。为了防止仿真时间变得过长,该过程假定了有关所用DC / DC转换器模型的各种简化,因此,没有考虑稳定性。本文的目的是提出一种简化的方法来分析系统的小信号稳定性,以便将其集成到优化方法中。一种黑盒建模方法,适用于拓扑和组件未知的商用转换器,它基于频率响应测量,可以评估系统的小信号稳定性。评估了基于被动性的稳定性标准的适用性。稳定裕度是通过使用基于阻抗的灵敏度函数的行为得出的最大峰值标准的概念来陈述的,该阻抗函数提供了一个数字来陈述明确定义的小环路增益的稳定性的鲁棒性。

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