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New Method of Measuring the Positive-sequence Capacitance of T-connection Transmission Lines
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作者 Yuansen Zhang Demin Cui +6 位作者 Qingtao Cao Yongqiang Chai Peng Liu Xiaobo Li Zhijian Hu Chuanqi Li Chengxue Zhang 《Energy and Power Engineering》 2013年第4期941-944,共4页
A novel method of measuring the positive-sequence capacitance of T-connection transmission lines is proposed. The mathematical model of the new method is explained in detail. In order to obtain enough independent equa... A novel method of measuring the positive-sequence capacitance of T-connection transmission lines is proposed. The mathematical model of the new method is explained in detail. In order to obtain enough independent equations, three independent operation modes of T-connection transmission lines during the line measurement are introduced. The digital simulation results and field measurement results are shown. The simulation and measurement results have validated that the new method can meet the needs of measuring the positive-sequence capacitance of T-connection transmission lines. This method has been implemented in the newly developed measurement instrument. 展开更多
关键词 T-connection Transmission LINES Line Parameter positive-sequence CAPACITANCE Measurement
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Design and testing of a centralized protection scheme for micro-grids 被引量:1
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作者 Sohrab Mirsaeidi Dalila Mat Said +2 位作者 Mohammad Wazir Mustafa Mohammad Hafiz Habibuddin Kimia Ghaffari 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3876-3887,共12页
Micro-grids comprise low voltage distribution systems with distributed energy resources(DERs) and controllable loads which can operate connected to the medium voltage grid or islanded in a controlled coordinated way. ... Micro-grids comprise low voltage distribution systems with distributed energy resources(DERs) and controllable loads which can operate connected to the medium voltage grid or islanded in a controlled coordinated way. This concept aims to move from "connect and forget" philosophy towards a full integration of DERs. Micro-grids can provide numerous economic and environmental benefits for end-customers, utilities and society. However, their implementation poses great technical challenges, such as a new philosophy in design of protection systems. In this work, a micro-grid protection scheme is presented based on positive-sequence component using phasor measurement units(PMUs) and a central protection unit(CPU). The salient feature of the proposed scheme in comparison with the previous works is that it has the ability to protect both radial and looped micro-grids against different types of faults with the capability of single-phase tripping. Furthermore, since the CPU is capable of updating its pickup values(upstream and downstream equivalent positive-sequence impedances of each line) after the first change in the micro-grid configuration(such as transferring from grid-connected to islanded mode and or disconnection of a line, bus, or DER either in grid-connected mode or in islanded mode), it can protect micro-grid against subsequent faults. Finally, in order to verify the effectiveness of the suggested scheme and the CPU, several simulations have been undertaken by using DIg SILENT Power Factory and MATLAB software packages. 展开更多
关键词 micro-grid protection grid-connected mode islanded mode positive-sequence component
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