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Noise immunity enhancement for a distributed clock system in digital HF radar

机译:数字HF雷达中分布式时钟系统的抗噪性增强

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This paper presents the experimental research on the influence of clock synchronisation in a multi-transceiver radar system in terms of phase noise and stability of the clock source. The work involves an implementation of a clock distribution method and discusses the experimental results. The TIGER-3 radar is being developed as an “all digital” radar with 20 integrated digital transceivers, each operating at 2.4kW of nominal power. Accurate coordination of all 20 transceivers is essential for generation of transmit signals, collection and merging of receive data to form a standard SuperDARN data set. Therefore, the system clock frequency must be highly stable and be tightly synchronised. In order to achieve this, a clock synchronisation method to coordinate the operation of entire system using a highly stable, accurate common clock source distributed to the transceivers is proposed. To improve noise immunity, differential signals are used. To further enhance the electromagnetic interference (EMI) immunity of the clock system, magnetic circuitry is employed. Moreover, the FPGA clocking features including Digital Clock Managers (DCMs) and Phase-Locked Loops (PLLs) available on the Xilinx Virtex-5 devices are used to correct and recover the received clock. Test results show that the clock system has excellent noise immunity allowing the radar system to perform at its full power.
机译:本文从相位噪声和时钟源稳定性的角度,对多收发器雷达系统中时钟同步的影响进行了实验研究。这项工作涉及时钟分配方法的实现,并讨论了实验结果。 TIGER-3雷达正在开发为具有20个集成数字收发器的“全数字”雷达,每个收发器的额定功率为2.4kW。所有20个收发器的准确协调对于生成发送信号,收集和合并接收数据以形成标准SuperDARN数据集至关重要。因此,系统时钟频率必须高度稳定且紧密同步。为了实现这一点,提出了一种时钟同步方法,该方法使用分配给收发器的高度稳定,准确的通用时钟源来协调整个系统的操作。为了提高抗噪能力,使用了差分信号。为了进一步增强时钟系统的抗电磁干扰(EMI)能力,采用了磁路。此外,Xilinx Virtex-5器件上可用的FPGA时钟功能包括数字时钟管理器(DCM)和锁相环(PLL),可用于校正和恢复接收到的时钟。测试结果表明,该时钟系统具有出色的抗噪能力,可使雷达系统在其最大功率下运行。

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