首页> 外文会议>2010 IEEE Student Conference on Research and Development >Online partial discharge counting system using microcontroller PIC 16F877A and FPGA technology
【24h】

Online partial discharge counting system using microcontroller PIC 16F877A and FPGA technology

机译:使用微控制器PIC 16F877A和FPGA技术的在线局部放电计数系统

获取原文
获取外文期刊封面目录资料

摘要

This paper is purely a design circuit to implement Partial Discharge (PD) detection in FPGA technology using Xilinx ML405 board (Virtex 4) and real time ADC in microcontroller PIC 16F877A. The research involve ISE Simulator version 10.1i (Xilinx) and ISE Xilinx Synthesized Technology (XST) using Very high integrated circuit Hardware Description Language (VHDL) programming to evaluate the use of Field Programming Gate Array (FPGA) for the detection and counting of partial discharge signals in high voltage underground cable. The research also involve PCWH CCS C Compiler using C programming to run real time ADC in microcontroller PIC 16F877A. The impulse of PD signals is simulated by impulse generator in the lab simulation. The input data (PD signals) in high voltage underground cable have very fast rise time in the range of 1 ns to 2 ns in the real system. The speed clock of the real time ADC in microcontroller PIC is 20 MHz. This paper shows analysis data of ability of real time ADC in microcontroller PIC to measurement, detect and counting PD signal using FPGA technology. The combination of all blocks of PD detection circuit system is tested by using ISE Xilinx Synthesis Technology (XST) and ISE implementation. In the next stage, this method will be implemented on a next lab simulation scale using real PD signals that is detected by 3D magnetic probe sensor in real underground cable in laboratory for testing and validation before test in the real situation.
机译:本文纯粹是一个设计电路,使用Xilinx ML405板(Virtex 4)和微控制器PIC 16F877A中的实时ADC在FPGA技术中实现局部放电(PD)检测。该研究涉及ISE模拟器10.1i(Xilinx)和ISE Xilinx合成技术(XST),它们使用非常高的集成电路硬件描述语言(VHDL)编程来评估使用现场编程门阵列(FPGA)来检测和计数部分释放高压地下电缆中的信号。该研究还涉及PCWH CCS C编译器,该编译器使用C编程在微控制器PIC 16F877A中运行实时ADC。在实验室模拟中,PD信号的脉冲由脉冲发生器模拟。在实际系统中,高压地下电缆中的输入数据(PD信号)的上升时间非常快,范围为1 ns至2 ns。微控制器PIC中实时ADC的速度时钟为20 MHz。本文显示了使用FPGA技术在微控制器PIC中实时ADC进行测量,检测和计数PD信号的能力的分析数据。通过使用ISE Xilinx综合技术(XST)和ISE实现对PD检测电路系统所有模块的组合进行测试。在下一阶段,将使用真实的PD信号在下一个实验室模拟规模上实施此方法,该信号由3D磁探针传感器在实验室的真实地下电缆中检测到,以便在实际情况下进行测试和验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号