Title :
A Novel Whole-View Test Approach for Onsite Commissioning in Smart Substation
Author :
Shi Jing ; Qi Huang ; Jie Wu ; Wei Zhen
Author_Institution :
Sichuan Provincial Key Lab. of Power Syst. Wide-Area Meas. & Control, Univ. of Electron. Sci. & Technol. of China (UESTC), Chengdu, China
Abstract :
The substation is the heart of an interconnected power system. With the development of smart grid, the concept of a smart substation is proposed. The objectives of smart substations are to build an efficient networked information-management platform, increasing the flexibility in the organization and distribution of the information, and greatly enhancing the capabilities of information exchanging and processing in the substation. However, the onsite commissioning of the smart substation is more complex than that of traditional ones, because the digital information is more difficult to measure and a complex networked information flow needs to be testified. In this paper, a novel test approach, based on wireless time synchronization and distributed injection of simulated data, is proposed for the onsite commissioning of the secondary system in a smart substation. The system components are built and tested. Technical issues are solved to satisfy the requirements of onsite commissioning, and the built system has been used for commissioning services of several newly built smart substations.
Keywords :
commissioning; smart power grids; substation automation; commissioning services; complex networked information flow; digital information; information distribution; information organization; interconnected power system; networked information-management platform; onsite commissioning; simulated data distributed injection; smart grid development; smart substation; system components; whole-view test approach; wireless time synchronization; Current transformers; Delays; Hardware; Substations; Synchronization; Wireless communication; Onsite commissioning; smart grid; smart substation; whole-view test; wireless IEEE 1588;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2013.2256435