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Novel Fourier-based iterative reconstruction for sparse fan projection using alternating direction total variation minimization 被引量:1
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作者 金朝 张瀚铭 +3 位作者 闫镔 李磊 王林元 蔡爱龙 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第3期458-465,共8页
Sparse-view x-ray computed tomography (CT) imaging is an interesting topic in CT field and can efficiently decrease radiation dose. Compared with spatial reconstruction, a Fourier-based algorithm has advantages in r... Sparse-view x-ray computed tomography (CT) imaging is an interesting topic in CT field and can efficiently decrease radiation dose. Compared with spatial reconstruction, a Fourier-based algorithm has advantages in reconstruction speed and memory usage. A novel Fourier-based iterative reconstruction technique that utilizes non-uniform fast Fourier transform (NUFFF) is presented in this work along with advanced total variation (TV) regularization for a fan sparse-view CT. The proposition of a selective matrix contributes to improve reconstruction quality. The new method employs the NUFFT and its adjoin to iterate back and forth between the Fourier and image space. The performance of the proposed algorithm is demonstrated through a series of digital simulations and experimental phantom studies. Results of the proposed algorithm are compared with those of existing TV-regularized techniques based on compressed sensing method, as well as basic algebraic reconstruction technique. Compared with the existing TV-regularized techniques, the proposed Fourier-based technique significantly improves convergence rate and reduces memory allocation, respectively. 展开更多
关键词 Fan iterative reconstruction fourier-based iterative reconstruction technique alternating directionmethod non-uniform fast Fourier transform
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Performance Analysis of an Optimal Circular 16-QAM for Wavelet Based OFDM Systems
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作者 Khaizuran ABDULLAH Seedahmed S. MAHMOUD Zahir M. HUSSAIN 《International Journal of Communications, Network and System Sciences》 2009年第9期836-844,共9页
The BER performance for an optimal circular 16-QAM constellation is theoretically derived and applied in wavelet based OFDM system in additive white Gaussian noise channel. Signal point constellations have been discus... The BER performance for an optimal circular 16-QAM constellation is theoretically derived and applied in wavelet based OFDM system in additive white Gaussian noise channel. Signal point constellations have been discussed in much literature. An optimal circular 16-QAM is developed. The calculation of the BER is based on the four types of the decision boundaries. Each decision boundary is determined based on the space distance d following the pdf Gaussian distribution with respect to the in-phase and quadrature components nI and nQ with the assumption that they are statistically independent to each other. The BER analysis for other circular M-ary QAM is also analyzed. The system is then applied to wavelet based OFDM. The wavelet transform is considered because it offers a better spectral containment feature compared to conventional OFDM using Fourier transform. The circular schemes are slightly better than the square schemes in most SNR values. All simulation results have met the theoretical calculations. When applying to wavelet based OFDM, the circular modulation scheme has also performed slightly less errors as compared to the square modulation scheme. 展开更多
关键词 Performance OFDM fourier-based OFDM Wavelet-Based OFDM CIRCULAR 16-QAM SQUARE 16-QAM
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The Performance Analysis of the Wavelet-OFDM New Scheme in AWGN Channel
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作者 Alaa Ghaith Rima Hatoum Hiba Mradand Ali Alaeddine 《Journal of Physical Science and Application》 2014年第2期100-106,共7页
Orthogonal frequency division multiplexing (OFDM) is a special form of multi-carrier transmission that uses the policy of divide and rule. In this scheme, a large number of orthogonal, overlapping, narrow band sub-c... Orthogonal frequency division multiplexing (OFDM) is a special form of multi-carrier transmission that uses the policy of divide and rule. In this scheme, a large number of orthogonal, overlapping, narrow band sub-channels (subcarriers) are transmitted in parallel and divide the available transmission bandwidth. This techniqueis originally based on the Fast Fourier Transform of the information data. In order to improve the performance of the OFDM and overcome some limitations, an alternative OFDM approach based on the Wavelet Transform is proposed. In this paper, we study the performance of such systems in additive white Gaussian channel (AWGN). MATLAB simulations are realized and performance comparisons are presented. 展开更多
关键词 Multi-carrier modulation discrete wavelet transform OFDM. wavelet packet transform fourier-based OFDM wavelet-based
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