The OPF Formulation and Solution for Energy Router Incorporated AC&DC Network

Author:

Duan Qing1,Guo Jing2,Sheng Wanxing1,Sha Guanglin1,Li Ke-Jun2,Xu Xiaoxian3

Affiliation:

1. Power Distribution Department, China Electric Power Research Institute, Beijing, China

2. School of Electrical Engineering, Shandong University, Jinan, China

3. School of Mechanical Electronic & Information Engineering, China University of Mining & Technology, Beijing, China

Abstract

Background: The energy router based on power electronic technology is the core equipment of energy internet. Energy router can control the voltage of the port and regulate the power injected into the network flexibly. It is of great significance to study how the capability of the energy router can be used to improve characteristics of the power system. Methods: Based on the analysis of energy router, we construct a unified AC-DC power flow model for energy router considering its different control modes. Then, we establish an optimal power flow formulation for the energy router incorporated AC-DC network and propose the multi-objective function to optimize the comprehensive performance of the network. Several cases are observed and analyzed on a modified IEEE-57 system. Results: The result verifies that the optimal power flow formulation can optimize the control values of ports of the energy router and improve the operating state of the power system. The optimal target presented in this paper can improve the characteristics of the grid better than a single optimal target. Conclusion: Energy router will play a vital role in the energy internet based on the power system. The characters of the power system can be improved and the operating costs can be reduced by utilizing the functionality of energy router in regulating power flow.

Funder

Science and Technology Program of State Grid Corporation of China

Publisher

Bentham Science Publishers Ltd.

Subject

Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials

Reference33 articles.

1. Bull S.R.; Renewable energy today and tomorrow. Proc IEEE 2001,89,1216-1226

2. Huang A.Q.; Baliga J.; FREEDM system: Role of power electronics and power semiconductors in developing an energy internet In: 21st International Symposium on Power Semiconductor Devices Barcelona, Spain, 2009, pp. 9-12.

3. Ahadi A.; Ghadimi N.; Mirabbasi D.; An analytical methodology for assessment of smart monitoring impact on future electric power distribution system reliability. Complexity 2015,21,99-113

4. Lasseter R.H.; Smart distribution: Coupled microgrids. Proc IEEE 2011,99,1074-1082

5. Wang K.; Yu J.; Yu Y.; Qian Y.; Zeng D.; Guo S.; Xiang Y.; Wu J.; A survey on energy internet: Architecture, approach, and emerging technologies. IEEE Syst J 2017,99,1-14

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