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A quantum search algorithm of two entangled registers to realize quantum discrete Fourier transform of signal processing 被引量:2
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作者 庞朝阳 胡本琼 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第9期3220-3226,共7页
The discrete Fourier transform (DFT) is the base of modern signal processing. 1-dimensional fast Fourier transform (1D FFT) and 2D FFT have time complexity O(N log N) and O(N^2 log N) respectively. Since 1965,... The discrete Fourier transform (DFT) is the base of modern signal processing. 1-dimensional fast Fourier transform (1D FFT) and 2D FFT have time complexity O(N log N) and O(N^2 log N) respectively. Since 1965, there has been no more essential breakthrough for the design of fast DFT algorithm. DFT has two properties. One property is that DFT is energy conservation transform. The other property is that many DFT coefficients are close to zero. The basic idea of this paper is that the generalized Grover's iteration can perform the computation of DFT which acts on the entangled states to search the big DFT coefficients until these big coefficients contain nearly all energy. One-dimensional quantum DFT (1D QDFT) and two-dimensional quantum DFT (2D QDFT) are presented in this paper. The quantum algorithm for convolution estimation is also presented in this paper. Compared with FFT, 1D and 2D QDFT have time complexity O(v/N) and O(N) respectively. QDFT and quantum convolution demonstrate that quantum computation to process classical signal is possible. 展开更多
关键词 Grover's algorithm entangled state DFT QDFT
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PeerIDS - A Distributed Network Intrusion Detection System Based on the Peer-to-Peer Model
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作者 Shu Jin Fengyu Liu Manwu Xu 《通讯和计算机(中英文版)》 2006年第5期66-74,共9页
关键词 对对等模型 分布式网络入侵检测系统 PeerIDS系统 网络技术
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