Citation: | LIANG Yuan, DA Xinyu. Analysis and Implementation of Constellation Precoding System Based on Multiple Parameters Weighted-type Fractional Fourier Transform[J]. Journal of Electronics & Information Technology, 2018, 40(4): 825-831. doi: 10.11999/JEIT170673 |
MEI Lin, SHA Xuejun, and ZHANG Naitong. The approach to carrier scheme convergence based on 4-weighted fractional Fourier transform[J]. IEEE Communications Letters, 2010, 14(6): 503-505. doi: 10.1109/LCOMM.2010.06.092413.
|
SHIH C C. Fractionalization of Fourier transform[J]. Optics Communications, 1995, 118(5): 495-498. doi: 10.1016/0030- 4018(95)00268-D.
|
CARIOLARO G, ERSEGHE T, KRANIAUSKAS P, et al. A unified framework for the fractional Fourier transforms[J]. IEEE Transactions on Signal Processing, 1998, 46(12): 3206-3219. doi: 10.1109/78.735297.
|
YEUNG D S, RAN Qiwen, TSANG E C C, et al. Complete way to fractionalize Fourier transform[J]. Optics Communcations, 2004, 230(1): 55-57. doi: 10.1016/J. OPTCOM.2003.11.054.
|
LANG Jun, TAO Ran, RAN Qiwen, et al. The multiple- parameter fractional Fourier transform[J]. Science in China Series F: Information Sciences, 2008, 51(8): 1010-1024. doi: 10.1007/s11432-008-0073-6.
|
WANG Xiaolu, MEI Lin, WANG Zhenduo, et al. On the probability density function of the real and imaginary parts in WFRFT signals[J]. China Communications, 2016, 13(9): 44-52. doi: 10.1109/CC.2016.7582295.
|
HUI Yongtao, LI Bingbing, and ZHAO Tong. 4-weighted fractional Fourier transform over doubly selective channels and optimal order selecting algorithm [J]. Electronics Letters, 2015, 51(2): 177-179. doi: 10.1049/el.2014.2268.
|
WANG Zhenduo, MEI Lin, WANG Xiaolu, et al. BER analysis of hybrid carrier system based on WFRFT with carrier frequency offset[J]. Electronics Letters, 2015, 51(21): 1708-1709. doi: 10.1049/el.2015.1027.
|
达新宇, 廉晨. 一种加权傅里叶变换域通信方法[J]. 系统工程与电子技术, 2015, 37(12): 2853-2859. doi: 10.3969/j.issn. 1001-506X.2015.12.29.
|
DA Xinyu and LIAN Chen. Method of weighted Fourier transform domain communication[J]. Systems Engineering and Electronics, 2015, 37(12): 2853-2859. doi: 10.3969/j.issn. 1001-506X.2015.12.29.
|
王舒, 达新宇, 褚振勇, 等. 采用4-WFRFT和人工噪声的变换域通信物理层安全传输[J]. 四川大学学报(工程科学版), 2016, 48(3): 142-147. doi: 10.15916/j.jsuese.2016.03.019.
|
WANG Shu, DA Xinyu, CHU Zhenyong, et al. Secure transmission for TDCS using 4-WFRFT and noise insertion [J]. Journal of Sichuan University (Engineering Science Edition), 2016, 48(3): 142-147. doi: 10.15916/j.jsuese.2016.03. 019.
|
FANG Xiaojie, SHA Xuejun, and MEI Lin. Guaranteeing wireless communication secrecy via a WFRFT-based cooperative system[J]. China Communications, 2015, 12(9): 76-82. doi: 10.1109/CC.2015.7275261.
|
SESIA S, ISSAM T, and MATTHEW B. LTE-the UMTS Long Term Evolution[M]. New York: John Wiley Sons, 2015: 27-43.
|
牛进平, 苏涛. 一种适用于SC-FDMA多小区系统的协作调度和功率控制算法[J]. 电子与信息学报, 2015, 37(2): 411-416. doi: 10.11999/JEIT140542.
|
NIU Jinping and SU Tao. Multi-cell cooperative scheduling and power control in SC-FDMA systems[J]. Journal of Electronics Information Technology, 2015, 37(2): 411-416. doi: 10.11999/JEIT140542.
|
梅林, 沙学军, 张乃通. 加权分数傅立叶变换通信系统抗参数扫描及星座分裂性能分析[J]. 云南民族大学学报(自然科学版), 2011, 20(5): 361-366. doi: 10.3969/j.issn.1672-8513.2011. 05.011.
|
MEI Lin, SHA Xuejun, and ZHANG Naitong. Analysis of anti-scanning parameter ability and constellation splitting characteristic in weighted fractional Fourier transform system[J]. Journal of Yunnan University of Nationalities (Natural Sciences Edition), 2011, 20(5): 361-366. doi: 10.3969 /j.issn.1672-8513.2011.05.011.
|
FANG Xiaojie, SHA Xuejun, and LI Yue. MP-WFRFT and constellation scrambling based physical layer security system [J]. China Communications, 2016, 13(2): 138-145. doi: 10.1109/CC.2016.7405732.
|
MEI Lin, SHA Xuejun, ZHANG Qinyu, et al. The concepts of hybrid-carrier scheme communication system[C]. IEEE 6th International ICST Conference on Communications and Networking, Harbin, China, 2011: 26-33.
|
AKMOUCHE W. Detection of multicarrier modulations using 4th-order cumulants[C]. Military Communications Conference Proceedings, Atlantic City, NJ, USA, 1999: 432-436.
|
IMRE S, SNDOR F, BALZS F, et al. Quantum Computing and Communications[M]. New York: John Wiley Sons, 2013: 171-190.
|
BARNETT J, WASTSON J P, and WOODRUFF D L. BBPH: Using progressive hedging within branch and bound to solve multi-stage stochasitc mixed integer programs[J]. Operations Reesearch Letters, 2017, 45(1): 34-39. doi: 10. 1016/j.orl.2016.11.006.
|
FOSTER J D. Comparison of mixed-integer programming and genetic algorithm methods for distributed generation planning[J]. IEEE Transactions on Power Systems, 2014, 29(2): 833-843. doi: 10.1109/TPWRS.2013.2287880.
|
1. | 于卫刚,徐少坤,吴昌松,袁翔宇. 基于特征提取的ISAR成像欺骗干扰评估方法研究. 航天电子对抗. 2024(03): 16-20 . ![]() | |
2. | 韩立珣,田波,冯存前. 基于MIMO-ISAR的弹道目标结构参数估计方法. 系统工程与电子技术. 2020(03): 603-612 . ![]() | |
3. | 霍超颖,殷红成,邢笑宇,满良. 基于雷达图像特征的空间目标载荷指向估计方法. 电波科学学报. 2019(01): 45-51 . ![]() | |
4. | 鲁逸杰,宫志华,张群,王剑钦,李开明. 基于变分模态分解的进动目标微多普勒特征提取方法. 探测与控制学报. 2019(04): 30-35 . ![]() | |
5. | 任枫轩,王忠勇. 基于ISAR像序列的多旋翼无人机参数估算. 电光与控制. 2018(04): 55-60 . ![]() | |
6. | 王超,叶春茂,文树梁. 低重频宽带雷达中小幅微动目标的周期估计. 系统工程与电子技术. 2018(09): 1945-1952 . ![]() | |
7. | 徐少坤,刘记红,袁翔宇. 基于HRRP序列的中段目标二维几何特征反演方法. 电子与信息学报. 2017(10): 2366-2373 . ![]() | |
8. | 刘浩,杨清亮,陈佳东. 近程弹道导弹防御目标识别技术研究. 飞航导弹. 2017(06): 73-77 . ![]() | |
9. | 束长勇,张生俊,黄沛霖,姬金祖. 基于微多普勒估计进动锥体目标特征参数. 系统工程与电子技术. 2017(01): 15-20 . ![]() | |
10. | 王英,束长勇,张生俊,黄沛霖,姬金祖. 快慢时间域间歇采样转发干扰生成进动锥体ISAR群阵列. 电子与信息学报. 2016(02): 450-454 . ![]() | |
11. | 周叶剑,张磊,王虹现,邢孟道,牛威. 多站ISAR空间目标姿态估计方法. 电子与信息学报. 2016(12): 3182-3188 . ![]() | |
12. | 黄小红,文贡坚. L波段雷达电离层高速运动目标ISAR成像补偿方法. 电子与信息学报. 2015(12): 2971-2976 . ![]() |