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文章摘要
通用型紧急指令传输接口优化设计
General purpose emergency instruction transmission interface optimization design
Received:December 10, 2018  Revised:December 10, 2018
DOI:10.19753/j.issn1001-1390.2020.09.019
中文关键词: FPGA  紧急命令  滑窗判别  冗余设计  可靠性  误判
英文关键词: FPGA, emergency  command, sliding  window discrimination, redundant  design, reliability, misjudgment
基金项目:
Author NameAffiliationE-mail
Dong Lin Lin Key laboratory of Instrumentation Science Dynamic Measurement of North University of China 381068816@qq.com 
Ren Yong Feng* Key laboratory of Instrumentation Science Dynamic Measurement of North University of China renyongfeng@nuc.edu.cn 
wangshuqin Key laboratory of Instrumentation Science Dynamic Measurement of North University of China wangshuqin1117@163.com 
liudonghai 无 dtdonghai2001@163.com 
xiexiufeng 无 xxfzb2008@sina.com 
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中文摘要:
      针对用电平型信号作为紧急命令传输可靠性低的问题,分别从硬件和软件两方面进行了优化设计。在硬件方面,通过对相关参数的理论计算,采用光继电器发送指令,经过电缆用光电耦合器接收指令的电路组合。在软件方面,将紧急指令以连续脉冲形式发送,经过冗余设计后,对收到接收端FPGA的指令进行滑窗判别,保证指令在接收后判别的可靠性。经测试,优化后的指令传输接口功耗低、应用广泛、能实现紧急指令在80m电缆下长期可靠的传输。
英文摘要:
      Aiming at the problem of low reliability of level signal as emergency command transmission, the optimization design is carried out from two aspects: hardware and software. In terms of hardware, through theoretical calculation of relevant parameters, optical relay is adopted to send instructions, and the circuit combination of instructions received by cable photoelectric coupler is adopted. In terms of software, emergency instructions are sent in the form of continuous pulses. After redundancy design, sliding window discrimination is carried out for the instructions received by FPGA at the receiving end to ensure the reliability of the instructions after receiving. After testing, the optimized instruction transmission interface has low power consumption, wide application and can realize long-term and reliable transmission of emergency instruction under 80m cable.
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