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Information-based optical design for binary-valued imagery

机译:用于二值图像的基于信息的光学设计

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摘要

Applications such as optical data storage, optical computing, and optical interconnects require optical systems that manipulate binary-valued images. Such an optical system can be viewed as a two-dimensional array of binary communication channels. This perspective is used to motivate the use of pagewise mutual information as a metric for optical system analysis and design. Fresnel propagation and coherent imaging both are analyzed in terms of mutual-information transmission. An information-based space-bandwidth product is used to analyze the trade-off between the numerical aperture and the number of image pixels in a coherent 4f system. We propose a new merit function to facilitate information-based optical system design. Information maximization and bit-error-rate minimization both are possible with the new radially weighted encircled-energy merit function. We demonstrate the use of this new merit function through a design example and show that the information throughput is increased by 8% and the bit-error rate is reduced by 36% when compared with systems designed with traditional criteria.
机译:诸如光学数据存储,光学计算和光学互连之类的应用程序需要操纵二进制值图像的光学系统。可以将这种光学系统视为二进制通信通道的二维阵列。这种观点被用来激励使用逐页交互信息作为光学系统分析和设计的指标。菲涅耳传播和相干成像都根据互信息传输进行了分析。基于信息的空间带宽乘积用于分析相干4f系统中数值孔径与图像像素数量之间的折衷。我们提出了一个新的功绩函数,以促进基于信息的光学系统设计。新的径向加权环绕能量功函数可以实现信息最大化和误码率最小化。我们通过一个设计示例演示了此新功能的使用,并表明与传统标准设计的系统相比,信息吞吐量提高了8%,误码率降低了36%。

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