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Error correction for free-space optical interconnects: space-time resource optimization

机译:自由空间光互连的纠错:时空资源优化

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摘要

We study the joint optimization of time and space resources within free-space optical interconnect (FSOI) systems. Both analytical and simulation results are presented to support this optimization study for two different models of FSOI cross-talk noise: diffraction from a rectangular aperture and Gaussian propagation. Under realistic power and signal-to-noise ratio constraints, optimum designs based on the Gaussian propagation model achieve a capacity of 2.91 × 10↑(15) bits s↑(-1) m↑(-2), while the rectangular model offers a smaller capacity of 1.91 × 10↑(13) bits s↑(-1) m↑(-2). We also study the use of error-correction codes (ECC) within FSOI systems. We present optimal Reed-Solomon codes of various length, and their use is shown to facilitate an increase in both spatial density and data rate, resulting in FSOI capacity gains in excess of 8.2 for the rectangular model and 3.7 for the Gaussian case. A tolerancing study of FSOI systems shows that ECC can provide tolerance to implementational error sources. We find that optimally coded FSOI systems can fail when system errors become large, and we present a compromise solution that results in a balanced design in time, space, and error-correction resources. # 1998 Optical Society of America OCIS codes: 200.4650, 200.2610.
机译:我们研究自由空间光互连(FSOI)系统中时间和空间资源的联合优化。给出了分析和仿真结果,以支持针对FSOI串扰噪声的两种不同模型的优化研究:矩形孔径的衍射和高斯传播。在现实的功率和信噪比约束下,基于高斯传播模型的最佳设计可实现2.91×10↑(15)位s↑(-1)m↑(-2)的容量。 1.91×10↑(13)位s↑(-1)m↑(-2)的较小容量。我们还研究了FSOI系统中纠错码(ECC)的使用。我们提出了各种长度的最佳Reed-Solomon码,并证明了它们的使用可促进空间密度和数据速率的增加,从而导致矩形模型的FSOI容量增加超过8.2,高斯模型的增加超过3.7。对FSOI系统的容忍度研究表明,ECC可以为实现错误源提供容忍度。我们发现,当系统错误变大时,最佳编码的FSOI系统可能会失败,并且我们提出了一种折衷的解决方案,可以在时间,空间和错误校正资源上实现平衡的设计。 #1998美国光学学会OCIS编码:200.4650、200.2610。

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