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Design and Implementation of ATCA-based 100Gbps DP-QPSK Optical Signal Test Instrument

机译:基于ATCA的100Gbps DP-QPSK光信号测试仪的设计与实现

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In order to achieve the receiving task of 100Gbps Dual Polarization-Quadrature Phase Shift Keying (DP-QPSK) optical signal acquisition instrument, improve acquisition performance of the instrument, this paper has deeply researched DP-QPSK modulation principles, demodulation techniques and the key technologies of optical signal acquisition. The theories of DP-QPSK optical signal transmission are researched. The DP-QPSK optical signal transmission model is deduced. And the clock and data recovery in high-speed data acquisition and offset correction of multi-channel data are researched. By reasonable hardware circuit design and software system construction, the utilization of high performance Advanced Telecom Computing Architecture (ATCA), this paper proposes a 100Gbps DP-QPSK optical signal acquisition instrument which is based on ATCA. The implementations of key modules are presented by comparison and argumentation. According to the modularization idea, the instrument can be divided into eight modules. Each module performs the following functions. (1) DP-QPSK coherent detection demodulation module; (2) deceleration module; (3) FPGA (Field Programmable Gate Array); (4) storage module; (5) data transmission module; (6) clock module; (7) power module; (8) JTAG debugging, configuration module; What is more, this paper has put forward two solutions to test optical signal acquisition instrument performance. The first scenario is based on a standard STM-256 optical signal format and exploits the SignalTap of QuartusII software to monitor the optical signal data. Another scenario is to use a pseudo-random signal series to generate data, acquisition module acquires a certain amount of data signals, and then the signals are transferred to a computer by the Gigabit Ethernet to analyze. Two testing results show that the bit error rate of optical signal acquisition instrument is low. And the instrument fully meets the requirements of signal receiving system. At the same time this design has an important significance in practical applications.
机译:为了实现100Gbps双偏振正交相移键控(DP-QPSK)光信号采集仪的接收任务,提高仪器的采集性能,本文对DP-QPSK的调制原理,解调技术和关键技术进行了深入研究。光信号采集。研究了DP-QPSK光信号传输的理论。推导了DP-QPSK光信号传输模型。并研究了高速数据采集中的时钟和数据恢复以及多通道数据的偏移校正。通过合理的硬件电路设计和软件系统的构建,利用高性能的先进电信计算架构(ATCA),提出了一种基于ATCA的100Gbps DP-QPSK光信号采集仪。通过比较和论证来介绍关键模块的实现。根据模块化思想,仪器可以分为八个模块。每个模块执行以下功能。 (1)DP-QPSK相干检测解调模块; (2)减速模块; (3)FPGA(现场可编程门阵列); (4)存储模块; (5)数据传输模块; (6)时钟模块; (7)电源模块; (8)JTAG调试,配置模块;此外,本文提出了两种解决方案来测试光信号采集仪的性能。第一种情况基于标准STM-256光信号格式,并利用QuartusII软件的SignalTap监视光信号数据。另一种情况是使用伪随机信号序列生成数据,获取模块获取一定数量的数据信号,然后通过千兆以太网将信号传输到计算机进行分析。两项测试结果表明,光信号采集仪的误码率较低。并且该仪器完全满足信号接收系统的要求。同时,该设计在实际应用中具有重要意义。

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