Modeling and Control of Three-level Bi-directional Flying Capacitor DC- DC converter in DC microgrid

Vijesh Jayan, A. Ghias, A. Merabet
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引用次数: 6

Abstract

This paper presents a finite control set model predictive control (FCS-MPC) of a three-level bi-directional flying capacitor DC-DC converter for energy management application in a DC microgrid. The presence of three voltage levels give the converter advantage of having reduced voltage stress on the power switches and low ripple in its inductor current. Additionally, the capability of having bi-directional power flow enables the converter to integrate energy storage devices such as the battery to a DC microgrid effectively. An FCS-MPC algorithm is formulated using the developed mathematical model in order to yield the dual objective of bi-directional power flow and 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.
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直流微电网中三电平双向飞容DC- DC变换器的建模与控制
提出了一种用于直流微电网能量管理的三电平双向飞电容DC-DC变换器的有限控制集模型预测控制(FCS-MPC)。三个电压电平的存在使变换器具有减小功率开关上的电压应力和电感电流低纹波的优点。此外,具有双向功率流的能力使转换器能够有效地将储能设备(如电池)集成到直流微电网中。利用所建立的数学模型,提出了FCS-MPC算法,以实现双向潮流和飞电容电压平衡的双重目标。此外,考虑了由光伏系统、负载和电池组成的直流微电网,以评估所设计的FCS- MPC算法在不同负载和光伏功率注入下的有效性。
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