Title :
An Interline DC Power-Flow Controller (IDCPFC) for Multiterminal HVDC System
Author :
Wu Chen ; Xu Zhu ; Liangzhong Yao ; Xinbo Ruan ; Zhibing Wang ; Yuanzhi Cao
Author_Institution :
Jiangsu Provincial Key Lab. of Smart Grid Technol. & Equip., Southeast Univ., Nanjing, China
Abstract :
This paper proposes a novel dc power-flow controller for a multiterminal HVDC system, which can be inserted in series on transmission lines to manage the dc power flow. Its key features include: 1) simpler circuit topology; 2) fewer components; and 3) the elimination of an external power supply and low-frequency high-voltage-insulation isolated transformer. A three-terminal HVDC system, including the dc power-flow controller, is studied and its operation principle and characteristics are analyzed. A simulation mode is built to test the feasibility and effectiveness of the proposed dc power-flow controller with cases of power injection step down, power loss of one terminal, and power-flow reversal. A three-terminal dc system is built in the lab to validate the dc power-flow controller. The results show that the proposed dc power-flow controller can enhance the performance and controllability of a multiterminal HVDC system.
Keywords :
HVDC power convertors; HVDC power transmission; load flow control; multiterminal networks; network topology; power supply quality; power transmission control; transformer insulation; IDCPFC; external power supply elimination; interline DC power flow controller; low-frequency high-voltage insulation isolated transformer; multiterminal HVDC system; power loss; simpler circuit topology; three-terminal HVDC system; transmission lines; HVDC transmission; Load flow; Load flow control; Power conversion; Power transmission lines; Voltage control; DC power-flow controller; multiterminal HVDC system; stability; voltage-source converter (VSC);
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2015.2425412