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Signed-negabinary-arithmetic-based optical computing by use of a single liquid-crystal-display panel

机译:通过使用单个液晶显示面板的基于正负负算术的光学计算

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摘要

Based on the negabinary number representation, parallel one-step arithmetic operations (that is, addition and subtraction), logical operations, and matrix-vector multiplication on data have been optically implemented, by use of a two-dimensional spatial-encoding technique. For addition and subtraction, one of the operands in decimal form is converted into the unsigned negabinary form, whereas the other decimal number is represented in the signed negabinary form. The result of operation is obtained in the mixed negabinary form and is converted back into decimal. Matrix-vector multiplication for unsigned negabinary numbers is achieved through the convolution technique. Both of the operands for logical operation are converted to their signed negabinary forms. All operations are implemented by use of a unique optical architecture. The use of a single liquid-crystal-display panel to spatially encode the input data, operational kernels, and decoding masks have simplified the architecture as well as reduced the cost and complexity. (C) 2002 Optical Society of America. [References: 40]
机译:基于负数表示,已经通过使用二维空间编码技术光学地执行了并行的一步算术运算(即加法和减法),逻辑运算和矩阵向量乘法。为了进行加法和减法,将十进制形式的一个操作数转换为无符号负整数形式,而另一个十进制数以有符号负整数形式表示。以混合负整数形式获得运算结果,并将其转换回十进制。通过卷积技术可实现无符号负整数的矩阵矢量乘法。用于逻辑运算的两个操作数都将转换为其带符号的负整数形式。所有操作都通过使用独特的光学体系结构来实现。使用单个液晶显示面板对输入数据进行空间编码,操作内核和解码蒙版,简化了体系结构,并降低了成本和复杂性。 (C)2002年美国眼镜学会。 [参考:40]

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