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Design and implementation of IRIG-B Code Time System Using CPLD Technique Based on PCI Bus

机译:基于PCI总线的CPLD技术设计与实现IRIG-B码时间系统

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As general international standard, Inter-Range Instrumentation Group (IRIG) time codes were widely used in modern digital range, monitoring and measurement system, autocontrol and commercial fields etc. A new design of IRIG-B code unified time system with high precision using Complex Programmable Logic Device (CPLD) technique based on PCI Bus is proposed in this paper. As compared with the original hardware electric circuit, the CPLD technique has lots of advantages such as smaller size, lower costs and the more reliable stability. Modulated and un-modulated IRIG-B time codes are respectively transmitting the information by varying the amplitude of a sine wave carrier and pulse duration modulation of a DC-signal (TTL). The sine carrier wave modulated signal is generated in a digital way by CPLD. The frequency of this signal is derived from the main oscillator of the system, which is disciplined by CNSS (Compass Navigation Satellite System). This leads to a sine carrier wave with high accuracy. Data transfer is synchronized by the 1PPS (pulse per second) derived from the CNSS. Its various outputs like IRIG-B time code, serial time string and 1PPS (Accuracy of pulse outputs: < ± 100ns) can be used to synchronize other devices. IRIG-B code unified time system is designed for synchronizing the time of computers with PCI bus interface and for providing an Application Programming Interface (API), which allows user to read the time of great accuracy and precision in his own application program.
机译:作为一般的国际标准,范围间仪表组(IRIG)时间代码被广泛用于现代数字范围,监控和测量系统,自动控制和商业领域等。使用复合体具有高精度的IRIG-B码统一时间系统的新设计本文提出了基于PCI总线的可编程逻辑设备(CPLD)技术。与原始硬件电路相比,CPLD技术具有大量优点,如较小尺寸,成本较低和更可靠的稳定性。调制和未调制的IRIG-B时间码分别通过改变正弦波载波的幅度和DC信号(TTL)的脉冲持续时间调制来发送信息。通过CPLD以数字方式生成正弦载波调制信号。该信号的频率来自系统的主振荡器,由CNSS(罗盘导航卫星系统)纪律处于纪律处。这导致高精度的正弦载波。数据传输由来自CNS的1PPS(每秒脉冲)同步。它的各种输出,如IRIG-B时间码,串行时间串和1PP(脉冲输出的精度:<±100ns)可用于同步其他设备。 IRIG-B代码统一时间系统专为与PCI总线接口同步计算机的时间,并提供应用程序编程接口(API),其允许用户在自己的应用程序中读取高精度和精度的时间。

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