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Signal processing applications of massively parallel charge domain computing devices

机译:大规模并行电荷域计算设备的信号处理应用

摘要

The present invention is embodied in a charge coupled device (CCD) /charge injection device (CID) architecture capable of performing a Fourier transform by simultaneous matrix vector multiplication (MVM) operations in respective plural CCD/CID arrays in parallel in O(1) steps. For example, in one embodiment, a first CCD/CID array stores charge packets representing a first matrix operator based upon permutations of a Hartley transform and computes the Fourier transform of an incoming vector. A second CCD/CID array stores charge packets representing a second matrix operator based upon different permutations of a Hartley transform and computes the Fourier transform of an incoming vector. The incoming vector is applied to the inputs of the two CCD/CID arrays simultaneously, and the real and imaginary parts of the Fourier transform are produced simultaneously in the time required to perform a single MVM operation in a CCD/CID array.
机译:本发明体现在电荷耦合器件(CCD)/电荷注入器件(CID)体系结构中,该体系结构能够通过在O(1)中并行地在各个多个CCD / CID阵列中同时进行矩阵矢量乘法(MVM)操作来执行傅立叶变换。脚步。例如,在一个实施例中,第一CCD / CID阵列基于Hartley变换的排列存储表示第一矩阵算子的电荷包,并计算输入矢量的傅里叶变换。第二个CCD / CID阵列基于Hartley变换的不同排列存储表示第二个矩阵运算符的电荷包,并计算传入矢量的傅里叶变换。传入矢量同时应用于两个CCD / CID阵列的输入,并且在CCD / CID阵列中执行单个MVM操作所需的时间内,同时产生了傅里叶变换的实部和虚部。

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