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Functional Design and Implementation with On-line Programmable Technology in Optical Fiber Communication Pulse Code Modulation Test System

机译:光纤通信脉冲编码调制测试系统中在线可编程技术的功能设计与实现

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In order to complete the functional design in the fiber optical communication pulse code modulation test system, taking advantage of CPLD / FPGA and SOPC technology, software solutions used to design system hardware features and control functions, thereby the whole system could attain optimisation in the logic control as well as encoding and decoding functional designs on the motherboard, enabling this system fulfill the capacities varying from simple digital simulation transmission modulate to the high speed fiber optical communication network information encoding and decoding functions. Simultaneously the application of logarithmic pressure companding technique, PCM encoding and decoding system to improve the small signal quantizing SNR(Signal-to-Noise Ratio), TP3067 adopting A rate thirteen broken lines to carry on signal pressure companding. When the signal at a certain stage, the quantizing SNR is invariable(as signal receives uniform quantization in this phase, therefore the quantizing SNR drops along with signal amplititude decreasing). Test results are as follows: ideal various signal encoding and decoding system waveforms, high performance parameters , achieve the desired designing aim, a entirely new approach to realize different kinds of information encoding and decoding model building and implementation, saving development costs, improving design efficiency, satisfactory actual results, stable operation.
机译:为了完成光纤通信脉冲编码调制测试系统的功能设计,利用CPLD / FPGA和SOPC技术,通过软件解决方案来设计系统的硬件功能和控制功能,从而使整个系统在逻辑上达到最优。主板上的控制以及编码和解码功能设计,使该系统能够满足从简单的数字仿真传输调制到高速光纤通信网络信息编码和解码功能的各种能力。同时采用对数压扩技术,PCM编解码系统提高小信号量化信噪比,TP3067采用A速率的十三点虚线进行信号压扩。当信号处于某个阶段时,量化SNR不变(由于信号在此阶段接受均匀的量化,因此量化SNR随信号幅度的降低而下降)。测试结果如下:理想的各种信号编解码系统波形,高性能的参数,达到预期的设计目的,采用全新的方法实现各种信息编解码模型的建立与实现,节省开发成本,提高设计效率,实际效果令人满意,运行稳定。

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