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首页> 外文期刊>IEEE Transactions on Communications >Hybrid pulse position modulation/ultrashort light pulse code-division multiple-access systems - part II: time-space processor and modified schemes
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Hybrid pulse position modulation/ultrashort light pulse code-division multiple-access systems - part II: time-space processor and modified schemes

机译:混合脉冲位置调制/超短光脉冲码分多址系统-第二部分:时空处理器和改进方案

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摘要

For pt.I see ibid., vol.50, p.2018-31 (2002). In part I, we proposed and investigated a hybrid pulse position modulation/ultrashort light pulse code-division multiple-access (PPM/ULP-CDMA) system for ultrafast optical communication networks. In this scheme, the large bandwidth of a ULP is efficiently utilized by virtue of the very high time resolution of a time-space processor. More detailed analysis and discussion on the receiver scheme using the time-space processor is now presented; nonideal performance of the time-space processor, including the reference pulse realization problem, as well as amplifier and detector noise, are taken into account. Discussions on physically achievable ranges of the system parameters that determine the performance of the proposed PPM/ULP-CDMA system are also made based upon current, state of the art technology. As remedies to overcome the physical limitations on the system parameters, two modified modulation/demodulation schemes are proposed and investigated to enhance the performance of the hybrid PPM/ULP-CDMA system.
机译:关于pt,我参见同上,第50卷,第2018-31页(2002)。在第一部分中,我们提出并研究了用于超快速光通信网络的混合脉冲位置调制/超短光脉冲码分多址(PPM / ULP-CDMA)系统。在该方案中,借助于时空处理器的非常高的时间分辨率,可以有效地利用ULP的大带宽。现在介绍使用时空处理器的接收机方案的更详细的分析和讨论。考虑了时空处理器的非理想性能,包括参考脉冲实现问题以及放大器和检测器噪声。还基于当前的最新技术对确定所提出的PPM / ULP-CDMA系统的性能的系统参数的物理可达到范围进行讨论。作为克服对系统参数的物理限制的补救措施,提出并研究了两种改进的调制/解调方案以增强混合PPM / ULP-CDMA系统的性能。

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