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Operation and Control of Five-level Bi-directional Flying Capacitor DC-DC converter in DC microgrid

机译:直流微电网中五级双向飞跨电容器DC-DC变换器的运行与控制

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This paper presents a five-level bi-directional flying capacitor DC-DC converter topology for energy management application in a DC microgrid. Unlike traditional two-level DC-DC converter, the presence of multiple flying capacitors in this topology brings the possibility of having a higher voltage-gain conversion ratio at enhanced efficiency. The existence of five voltage levels give the converter an advantage of having reduced voltage stress on its power switches and a low-sized inductor filter at its input. Additionally, the capability of having bi-directional power flow enables the converter to integrate energy storage devices such as the battery to a high voltage DC microgrid effectively. A finite control set - model predictive control (FCS-MPC) algorithm is formulated using the developed mathematical model in order to yield the multi-objective of bi-directional power flow and three flying capacitor voltage balancing. Furthermore, a DC microgrid comprising photo-voltaic (PV) system, load, and battery are considered to assess the effectiveness of the designed FCS-MPC algorithm under varying load and PV power injections.
机译:本文提出了一种用于直流微电网中能量管理应用的五级双向飞跨电容器DC-DC转换器拓扑。与传统的两电平DC-DC转换器不同,此拓扑中存在多个快速电容器会带来以更高的效率获得更高的电压增益转换比的可能性。五个电压电平的存在为转换器提供了一个优势,即可以降低其电源开关上的电压应力,并在其输入端具有小型电感滤波器。另外,具有双向功率流的能力使转换器能够将能量存储设备(例如电池)有效地集成到高压DC微电网中。使用所开发的数学模型制定了有限控制模型预测控制(FCS-MPC)算法,以产生双向潮流和三个飞跨电容器电压平衡的多目标。此外,考虑了包括光伏(PV)系统,负载和电池的DC微电网,以评估在变化的负载和PV功率注入下设计的FCS-MPC算法的有效性。

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