Optimal Dispatch of Power Electronic Transformer Embedded AC/DC Hybrid Distribution System

Author(s):  
Xujiang Shi ◽  
Shan Gao ◽  
Yu Liu
2013 ◽  
Vol 448-453 ◽  
pp. 2879-2885
Author(s):  
Xing Wu Yang ◽  
Xin Hua Xiong ◽  
Wu Ouyang ◽  
Shuai Yuan

This paper proposes a new power electronic transformer (PET) to be used for distribution system, which is composed of the three-stage power circuits. The input stage uses Modular Multilevel Converter (MMC) to reduce the voltage stress rating of components, meanwhile, the harmonic components in the current will be deduced significantly, to make DC capacitor voltage of MMC rectifier balance, a control method is proposed. The isolation stage use a middle-frequency transformer to realize voltage conversion and isolation of the low-voltage side from the high-voltage side. In the third-stage, a inverter outputs the desired voltage and power to the load. The simulation results are presented to show the validity of the proposed PET system.


Energies ◽  
2021 ◽  
Vol 14 (11) ◽  
pp. 3219
Author(s):  
Qingwen Peng ◽  
Lu Qu ◽  
Zhichang Yuan ◽  
Xiaorui Wang ◽  
Yukun Chen ◽  
...  

The AC/DC hybrid distribution network is composed of a medium-voltage DC bus, a low-voltage DC bus, and a power electronic transformer, and has the characteristics of multi-voltage level, multi-DC bus, and multi-converter, so its operation mode and optimal scheduling strategy are more complex. Firstly, this paper constructs the AC/DC hybrid distribution network using an power electronic transformer. Then, a two-layer control structure including a scheduling management layer and a bus control layer is proposed, which simplifies the control structure and gives full play to the role of “energy routing” function of the power electronic transformer. Moreover, the minimum operation cost of the AC/DC hybrid distribution network in the whole scheduling cycle is taken as the optimization objective, considering the characteristics of various distributed generations, the structure of AC/DC hybrid distribution network, and the interaction of “source–load–storage”. Finally, the optimal scheduling model of the AC/DC hybrid distribution network based on power electronic transformer is established, and the feasibility of the optimal scheduling strategy is verified by the open-source solver, which can realize the complete absorption of renewable energy and the optimal coordinated control of “source–load–storage”.


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