Compressive Sensing Detection of RF Signals by All-Optically Generated Binary Random Patterns

H. Nasu
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Abstract

Co-packaging is a promising solution to support high-density high-speed signal transmission for the next generation very wide bandwidth network switches. We have demonstrated solderable VCSEL-based parallel optical modules which can minimize the foot print because it does not require any electrical pluggable interface. The optical module has been adopted to 100-Gb/s QSFP28 in commercialization. Here, we study how the optical modules can support network switches on the co-packaging architecture. Based on an assumption to simplify the co-packaging structure, we study the relationship between the width of optical module, the distance between optical module and switch ASIC, the length of substrate. As discussed, a data rate per channel should be 100 Gb/s or higher. A small 1.6-Tb/s or 3.2 Tb/s optical module might be suitable for a 51.2-Tb/s network switch.
基于全光生成二进制随机模式的射频信号压缩感知检测
协同封装是支持下一代超宽带网络交换机高密度高速信号传输的一种很有前途的解决方案。我们已经展示了可焊接的基于vcsel的并行光模块,它可以最大限度地减少占地面积,因为它不需要任何电可插拔接口。该光模块已在100gb /s QSFP28上实现商用。在此,我们研究光模块如何在共封装架构下支持网络交换机。基于简化共封装结构的假设,我们研究了光模块宽度、光模块与开关ASIC之间的距离、衬底长度之间的关系。如前所述,每个通道的数据速率应该是100gb /s或更高。1.6 Tb/s或3.2 Tb/s的小光模块可能适合51.2 Tb/s的网络交换机。
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