Title :
A novel overcurrent protection method based on wide area measurement in smart grid
Author :
Xiaorui Jing ; Jin Zhong ; Shaohua Lin ; Cailiang Zhan
Author_Institution :
Dept. of Electr. & Electron. Eng., Univ. of Hong Kong, Hong Kong, China
Abstract :
Conventional overcurrent protection settings are fixed to detect faults. Power system operation mode varies while the settings of protection devices remain constant. As a result, overcurrent protection has a small protection range and a long operating time because it is incapable of adjusting its setting online. Wide Area Measurements System (WAMS) provides synchronized and real time data which can be utilized in new protection devices. This paper proposes a novel online setting scheme which utilizes online system data to calculate real-time system operation mode. Based on the real-time operation mode, real-time fault current is calculated before fault occurring. Settings of the protection devices are by this means adjusted in real time to expand the protection area and shorten the operating time. The calculation is expanded from single source model to multi-source with Π model. In addition, interval time of settings adjustment Tchange is proposed and calculated by using hyperbolic function model. Based on this method, power system real-time operation condition can be better monitored and the real-time short circuit current can be obtained to improve protection performance.
Keywords :
fault currents; overcurrent protection; power system measurement; smart power grids; WAMS; fault detection; hyperbolic function model; online setting scheme; online system data; operating time; overcurrent protection method; power system operation mode; protection area; protection devices; protection range; real-time fault current; real-time short circuit current; real-time system operation mode; smart grid; wide area measurements system; Circuit faults; Integrated circuit modeling; Phasor measurement units; Power systems; Real-time systems; Relays; Short-circuit currents; Online Setting; Protection Setting Interval Time; Realtime Operation Mode Calculation; Wide Area Measurements;
Conference_Titel :
PowerTech (POWERTECH), 2013 IEEE Grenoble
Conference_Location :
Grenoble
DOI :
10.1109/PTC.2013.6652187