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FPGA-based digital overcurrent relay with concurrent sense-process-communicate cycles

机译:基于FPGA的数字式过电流继电器,具有并发的感应过程通信周期

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Communication between relays and the central control station is an important aspect of Special Protection Schemes (SPS) used in modern power systems. The relays are expected to perform sense-process-communicate cycles. A sequential implementation of these tasks increases the computational time and adversely affects the overall performance of the relay. This paper presents the design and hardware implementation of an overcurrent relay on Field Programmable Gate Array (FPGA) with concurrent sense-process-communicate cycles. The implementation is based on parallel pipelined architecture where sampling, measurement, processing and communication tasks are done concurrently. The relay is implemented on Xilinx Virtex-Ⅱ Pro XC2VP30-FF896-7C FPGA Board. The proposed relay conforms to IEEE standard C37.112-1996 for overcurrent relays in power systems. It is equipped with serial/IP communication capability. The details of the hardware design, implementation and experimental test results on a hardware simulator of a 360 km transmission line are presented in this paper. The architecture provides a platform for implementing special protection schemes in power systems.
机译:继电器和中央控制站之间的通信是现代电力系统中使用的特殊保护方案(SPS)的重要方面。预计继电器将执行检测过程通信周期。这些任务的顺序执行会增加计算时间,并对继电器的整体性能产生不利影响。本文介绍了在现场可编程门阵列(FPGA)上具有并发的感应过程通信周期的过电流继电器的设计和硬件实现。该实现基于并行流水线架构,其中采样,测量,处理和通信任务是同时完成的。该继电器在XilinxVirtex-ⅡPro XC2VP30-FF896-7C FPGA板上实现。所提出的继电器符合电力系统中过电流继电器的IEEE标准C37.112-1996。它具有串行/ IP通信功能。本文详细介绍了360 km传输线的硬件仿真器的硬件设计,实现和实验测试结果。该体系结构提供了一个在电力系统中实施特殊保护方案的平台。

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