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Implementation of algorithm for detection of single phase fault with electric arc on dsPIC30F4013 microcontroller

机译:DSPIC30F4013微控制器电弧检测单相故障算法的实现

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Considering that most faults in overhead power lines are transient, fast and reliable algorithms for determining types of faults are needed. Reliable algorithm allows design of adaptive system for improving service continuity by automatically restoring power to the line after a momentary fault. This paper describes the procedure for real-time adjustment of algorithm for detection of arc faults in overhead power lines. This adjustment refers to real-time implementation of algorithm on DSP microcontroller. Given the nature of the problem and strict requirements for testing algorithm in real experiment, procedure for testing hardware in simulation loop is developed. Hardware in the loop (HIL) technique is based on MATLAB/Simulink, NI CB-68LP data acquisition card and simplified simulation model of faults in overhead power lines.
机译:考虑到架空电力线中大多数故障是瞬态的,需要快速可靠的算法,用于确定故障类型。可靠的算法允许设计自适应系统,以通过自动恢复在瞬间故障后的线路上的电源来提高服务连续性。本文介绍了用于检测架空电源线中电弧故障算法的实时调整算法的过程。该调整是指DSP微控制器上的算法的实时实现。鉴于问题的性质和实际实验中测试算法的严格要求,开发了在仿真环路中测试硬件的过程。环路(HIL)技术中的硬件基于MATLAB / SIMULINK,NI CB-68LP数据采集卡和架空电源中的故障简化模拟模型。

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