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Scalable Digital Power Controller With Phase Alignment and Frequency Synchronization

机译:具有相位对准和频率同步功能的可扩展数字电源控制器

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The trend in next-generation switched-mode power supplies will lead to modular, scalable solutions which deliver power efficiently over a wide range of operation. This paper details a new approach to introduce more advanced control features like phase-alignment and frequency synchronization into such scalable solutions. While these methods have been incorporated into multi-phase converters in the past, they all require the distribution of information among the individual converters. In distributed solutions, dedicated communication signals have been used to share this information. An advantage of the proposed method is that it does not require such communication signals between the individual power supplies and is therefore fully scalable and cost effective. Perturbances generated by the switching actions of the individual converters on the common input/output voltage are used by each converter to harvest information about the switching actions of its counterparts. An algorithm is proposed to align the individual phases and synchronize the switching frequencies based on this information. This allows a reduction of input/output capacitor ripple currents, similar to techniques used in multi-phase designs. Experimental results for an FPGA prototype implementation are presented.
机译:下一代开关电源的趋势将导致模块化,可扩展的解决方案,这些解决方案可在广泛的操作范围内有效地提供电源。本文详细介绍了一种新方法,可将诸如相位对准和频率同步等更高级的控制功能引入此类可扩展解决方案。尽管这些方法过去已被并入多相转换器,但它们都需要在各个转换器之间分配信息。在分布式解决方案中,专用通信信号已用于共享此信息。所提出的方法的优点在于,它不需要各个电源之间的这种通信信号,因此是完全可扩展的并且具有成本效益。每个转换器使用由各个转换器的开关动作对公共输入/输出电压产生的扰动来收集有关其对应开关动作的信息。提出了一种算法来对齐各个相位,并基于此信息使开关频率同步。与多相设计中使用的技术类似,这可以减少输入/输出电容器的纹波电流。给出了FPGA原型实现的实验结果。

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