default search action
Xuejun Sha
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j56]Heng Dong, Ruobin Gao, Jiazhe Li, Xiaojie Fang, Xuejun Sha, Zhuoming Li:
Physical layer security communication for IoT-aided intelligent transport systems: An approach in WFRFT signal domain. Comput. Electr. Eng. 118: 109309 (2024) - [j55]Zunqi Li, Lindong Ou, Chuanbin Zhang, Xiaojie Fang, Xuejun Sha:
A Hybrid Carrier Communication System Based on Weighted Affine Fourier Transform. IEEE Commun. Lett. 28(7): 1629-1633 (2024) - [j54]Ge Song, Xiaojie Fang, Xuejun Sha:
A Robust Extended Hybrid Carrier System for the Next Generation Wireless Communications. IEEE Trans. Veh. Technol. 73(1): 980-994 (2024) - [j53]Ke Shi, Xiaojie Fang, Xuejun Sha:
Partial DFT Codebook-Based Hybrid Precoding in Limited Feedback Millimeter Wave Massive MIMO Systems. IEEE Wirel. Commun. Lett. 13(7): 1788-1792 (2024) - 2023
- [j52]Yongxin Huang, Xuejun Sha, Xiaojie Fang, Ge Song:
Secure spatial modulation based on two-dimensional generalized weighted fractional Fourier transform encryption. EURASIP J. Wirel. Commun. Netw. 2023(1): 13 (2023) - [j51]Chengzhao Shan, Jiayan Zhang, Yongkui Ma, Xuejun Sha, Honglin Zhao, Jian-Kang Zhang, Lajos Hanzo:
Energy-Efficient Time-Modulated Beam-Forming for Joint Communication-Radar Systems. IEEE Trans. Green Commun. Netw. 7(4): 1849-1862 (2023) - [c68]Zunqi Li, Xiaojie Fang, Heng Dong, Chuanbin Zhang, Xuejun Sha:
Chirp Parameter Selection for AFDM with MMSE Equalization in Static Multipath Channels. GLOBECOM (Workshops) 2023: 1099-1104 - [c67]Heng Dong, Xiaojie Fang, Siyi Li, Xuejun Sha, Zhuoming Li:
Signal Domain Multi-Component Based Secure Hybrid Precoding for mm Wave Systems. GLOBECOM (Workshops) 2023: 1862-1867 - [c66]Xingjian Li, Zhiqun Song, Lizhe Liu, Xuejun Sha, Yong Li, Bin Wang, Chang Wang:
Fast Local Search Signal Detection for Massive MIMO Systems with One-Bit ADCs. ICCT 2023: 408-412 - 2022
- [j50]Yusi Zhang, Yong Li, Xiaojie Fang, Xuejun Sha, Yuqing Feng, Weizhi Wang:
Towards spectral efficiency enhancement for IoT-aided smart transportation: a compressive OFDM transmission and regularized recovery approach. EURASIP J. Adv. Signal Process. 2022(1): 29 (2022) - [j49]Ge Song, Xiaojie Fang, Xuejun Sha:
A Robust Extended Hybrid Carrier System for Doubly Selective Channels. IEEE Commun. Lett. 26(5): 1146-1149 (2022) - [j48]Heng Dong, Xiaojie Fang, Xuejun Sha, Liang Yan, Zhuoming Li:
Multicomponent Secure Transmission Based on GMFRFT With Imperfect CSI. IEEE Commun. Lett. 26(12): 2860-2864 (2022) - [j47]Xiaojie Fang, Zhaopeng Du, Xinyu Yin, Lei Liu, Xuejun Sha, Hongli Zhang:
Toward Physical Layer Security and Efficiency for SAGIN: A WFRFT-Based Parallel Complex-Valued Spectrum Spreading Approach. IEEE Trans. Intell. Transp. Syst. 23(3): 2819-2829 (2022) - [j46]Heng Dong, Xiaojie Fang, Xuejun Sha, Xu Lin, Ning Zhang, Zhuoming Li:
Secure Transmission for MISO Wiretap Channels Using General Multi-Fractional Fourier Transform: An Approach in Signal Domain. IEEE Trans. Veh. Technol. 71(8): 8702-8716 (2022) - [j45]Xu Lin, Lin Mei, Fabrice Labeau, Xuejun Sha, Xiaojie Fang:
Efficient Fast-Convolution Based Hybrid Carried System. IEEE Trans. Wirel. Commun. 21(5): 3508-3522 (2022) - [c65]Chengzhao Shan, Jun Shi, Honglin Zhao, Xuejun Sha, Di Zhang, Arumugam Nallanathan:
Interference Suppression in Multi-Node Joint Communication-Radar Network. GLOBECOM (Workshops) 2022: 1-6 - [c64]Xingjian Li, Zhiqun Song, Lizhe Liu, Xuejun Sha, Yong Li, Bin Wang:
Model-Based Structured Covariance-Aided Channel Estimation for Massive MIMO Systems. ICCT 2022: 973-977 - [c63]Zhuangzhuang Liao, Xiaojie Fang, Ning Zhang, Tao Han, Xuejun Sha:
On Carrier Scheme Convergence: A WFRFT-based Hybrid Carrier Scheme Demonstration. INFOCOM Workshops 2022: 1-2 - 2021
- [j44]Chengzhao Shan, Jun Shi, Yongkui Ma, Xuejun Sha, Yuhang Liu, Honglin Zhao:
Power Loss Suppression for Time-Modulated Arrays in Radar-Communication Integration. IEEE J. Sel. Top. Signal Process. 15(6): 1365-1377 (2021) - [j43]Xinyu Yin, Xiaojie Fang, Ning Zhang, Peng Yang, Xuejun Sha, Jinghui Qiu:
Online Learning Aided Adaptive Multiple Attribute-Based Physical Layer Authentication in Dynamic Environments. IEEE Trans. Netw. Sci. Eng. 8(2): 1106-1116 (2021) - [c62]Xiaojie Fang, Xinyu Yin, Ning Zhang, Xuejun Sha, Hongli Zhang, Zhu Han:
Demonstrating Physical Layer Security Via Weighted Fractional Fourier Transform. INFOCOM Workshops 2021: 1-2 - [c61]Ge Song, Xiaojie Fang, Xuejun Sha:
Design and Analysis of the EWFRFT-based Extended Hybrid Carrier System. IWCMC 2021: 1162-1167 - [c60]Yongxin Huang, Xiaojie Fang, Xuejun Sha, Weizhi Wang, Ning Zhang:
Toward Physical Layer Security via Two-dimensional Weighted Fractional Fourier Transform Based Spatial Modulation. VTC Fall 2021: 1-5 - 2020
- [j42]Xu Lin, Lin Mei, Xiaojie Fang, Xuejun Sha:
HCM Successive Transmission Scheme With Banded MMSE Equalization Based on Fast Convolution Over Doubly-Selective Fading Channels. IEEE Commun. Lett. 24(2): 451-455 (2020) - [j41]Chengfang Li, Xiaojie Fang, Xiaokang Zhou, Lin Mei, Xuejun Sha:
Enhanced signalling provisioning for UAV-enabled MEC: A GWFRFT-based energy-spreading transmission approach. IET Commun. 14(15): 2524-2531 (2020) - [j40]Xu Lin, Lin Mei, Fabrice Labeau, Xuejun Sha, Yusi Zhang:
Partial FFT Demodulation Scheme Based on Fast Convolution Structure. IEEE Signal Process. Lett. 27: 1934-1938 (2020) - [c59]Xiaojie Fang, Xinyu Yin, Lin Mei, Ning Zhang, Xuejun Sha, Jinghui Qiu:
Learning Enabled Adaptive Multiple Attribute-based Physical Layer Authentication. VTC Fall 2020: 1-5
2010 – 2019
- 2019
- [j39]Cong Ma, Xuejun Sha, Lin Mei, Xiaojie Fang:
An Equal Component Power-Based Generalized Hybrid Carrier System. IEEE Commun. Lett. 23(2): 378-381 (2019) - [j38]Zhenduo Wang, Lin Mei, Xuejun Sha, Victor C. M. Leung:
Minimum BER Power Allocation for Space-Time Coded Generalized Frequency Division Multiplexing Systems. IEEE Wirel. Commun. Lett. 8(3): 717-720 (2019) - [c58]Xiaolu Wang, Lin Mei, Zhenduo Wang, Xuejun Sha:
Enhanced Clipping and Filtering With WFRFT for PAPR Reduction in OFDM Systems. WCNC 2019: 1-6 - 2018
- [j37]Zhenduo Wang, Lin Mei, Xiaolu Wang, Xuejun Sha, Victor C. M. Leung:
On the Performance of Hybrid Carrier System Based on WFRFT With Power Allocation. IEEE Access 6: 29231-29240 (2018) - [j36]Zhenduo Wang, Lin Mei, Xuejun Sha, Naitong Zhang:
BER analysis of STBC hybrid carrier system based on WFRFT with frequency domain equalization. Sci. China Inf. Sci. 61(8): 082301:1-082301:13 (2018) - [j35]Yong Li, Zhi-Qun Song, Xuejun Sha:
The multi-weighted type fractional fourier transform scheme and its application over wireless communications. EURASIP J. Wirel. Commun. Netw. 2018: 41 (2018) - [j34]Zhenduo Wang, Lin Mei, Xuejun Sha:
BER Analysis for GFDM Systems With Gabor MMSE Receiver. IEEE Commun. Lett. 22(11): 2222-2225 (2018) - [j33]Xiaolu Wang, Fabrice Labeau, Lin Mei, Zhenduo Wang, Xuejun Sha:
Performance of uplink WFRFT-based hybrid carrier systems with non-orthogonal multiple access. IET Commun. 12(15): 1891-1899 (2018) - [j32]Yue Li, Liang Ye, Xuejun Sha:
Time-Frequency Energy Sensing of Communication Signals and Its Application in Co-Channel Interference Suppression. Sensors 18(7): 2378 (2018) - [j31]Jun Shi, Xiaoping Liu, Xiaojie Fang, Xuejun Sha, Wei Xiang, Qinyu Zhang:
Linear Canonical Matched Filter: Theory, Design, and Applications. IEEE Trans. Signal Process. 66(24): 6404-6417 (2018) - [j30]Jun Shi, Xiaoping Liu, Yanan Zhao, Shuo Shi, Xuejun Sha, Qinyu Zhang:
Filter Design for Constrained Signal Reconstruction in Linear Canonical Transform Domain. IEEE Trans. Signal Process. 66(24): 6534-6548 (2018) - [j29]Zhenduo Wang, Lin Mei, Xuejun Sha, Victor C. M. Leung:
BER Analysis of WFRFT Precoded OFDM and GFDM Waveforms With an Integer Time Offset. IEEE Trans. Veh. Technol. 67(10): 9097-9111 (2018) - [c57]Zhongyao Chen, Xuejun Sha, Xuejiao Liu:
Analysis of Timing Performance of Zadoff-Chu Sequence in WFRFT Domain under Frequency Offset Effect. CSPS (1) 2018: 171-179 - [c56]Xuejiao Liu, Xuejun Sha, Zhongyao Chen, Jing Li:
Interference Suppression Under Allocation of Intensive Spectrum Resource with Time-Varying Filter Application. CSPS (1) 2018: 1027-1035 - [c55]Xiaolu Wang, Lin Mei, Fabrice Labeau, Zhenduo Wang, Xuejun Sha:
Enhanced Uplink Transmission Performance Based on WFRFT for Future Communication Systems. VTC Spring 2018: 1-6 - 2017
- [j28]Zhenduo Wang, Lin Mei, Xiaolu Wang, Xuejun Sha, Naitong Zhang:
On the performance of hybrid carrier system with spectrum precoding based on WFRFT. EURASIP J. Wirel. Commun. Netw. 2017: 102 (2017) - [j27]Cong Ma, Xuejun Sha, Lin Mei:
Hybrid Carrier Order Selection Scheme Based on Minimum Mean Square Error Equalization. IEEE Commun. Lett. 21(12): 2598-2601 (2017) - [j26]Jun Shi, Xiaoping Liu, Xuejun Sha, Qinyu Zhang, Naitong Zhang:
A Sampling Theorem for Fractional Wavelet Transform With Error Estimates. IEEE Trans. Signal Process. 65(18): 4797-4811 (2017) - [j25]Xiaojie Fang, Ning Zhang, Shan Zhang, Dajiang Chen, Xuejun Sha, Xuemin Shen:
On Physical Layer Security: Weighted Fractional Fourier Transform Based User Cooperation. IEEE Trans. Wirel. Commun. 16(8): 5498-5510 (2017) - [c54]Yong Li, Zhi-Qun Song, Xuejun Sha:
MAX-SIR Based Optimal Modulation Order Selecting of Generalization Hybrid Carrier Systems Under Doubly Selective Channels. CSPS 2017: 848-854 - [c53]Bo Yang, Zhiqun Song, Yong Li, Xuejun Sha:
An MMSE Beamforming Algorithm Based Hybrid Carrier System over Doubly Selective Channels. CSPS 2017: 855-862 - [c52]Mo Han, Jun Shi, Xuejun Sha, Min Jia, Qingzhong Li, Naitong Zhang:
Uncertainty Principle of the Special Affine Fourier Transform for Discrete Signals. CSPS 2017: 1351-1358 - [c51]Xiaojie Fang, Ning Zhang, Xuejun Sha, Dajiang Chen, Xuanli Wu, Xuemin Sherman Shen:
Physical layer security: A WFRFT-basec cooperation approach. ICC 2017: 1-6 - [c50]Zhongchao Ma, Liang Ye, Xuejun Sha:
Application of Time-Varying Filter in Time-Frequency Resource Allocation. MLICOM (1) 2017: 682-691 - 2016
- [j24]Zhuoming Li, Zhenyu Xu, Shengge Mao, Xing Tong, Xuejun Sha:
Weighted Energy-Balanced Efficient Routing Algorithm for Wireless Body Area Network. Int. J. Distributed Sens. Networks 12(2): 7364910:1-7364910:7 (2016) - [c49]Yong Li, Zhi-Qun Song, Xuejun Sha:
Generalized Hybrid Carrier Modulation System Based M-WFRFT with Partial FFT Demodulation over Doubly Selective Channels. FSDM 2016: 592-597 - [c48]Xiaojie Fang, Xuanli Wu, Ning Zhang, Xuejun Sha, Xuemin Shen:
Safeguarding Physical Layer Security Using Weighted Fractional Fourier Transform. GLOBECOM 2016: 1-6 - [c47]Yue Li, Xuejun Sha, Liang Ye:
An SC-FDMA inter-cell interference suppression method based on a time-varying filter. INFOCOM Workshops 2016: 909-914 - [c46]Yue Li, Xuejun Sha, Fan Jiang, Liang Ye:
Sparse codes allocation in D2D communications underlaying cellular network. IWCMC 2016: 948-952 - [c45]Xiaojie Fang, Xuejun Sha, Ning Zhang, Xuanli Wu, Xuemin Shen:
Towards PHY-Aided Authentication via Weighted Fractional Fourier Transform. VTC Fall 2016: 1-5 - [c44]Yue Li, Xuejun Sha, Liang Ye:
Downlink Resource Sharing for D2D Communications in a Filtered OFDM System. VTC Spring 2016: 1-6 - [c43]Longhai Zhao, Xuejun Sha, Xuanli Wu:
Multi-Antenna Relay Beamforming Design in SC-FDMA Systems with Imperfect CSI. VTC Spring 2016: 1-5 - 2015
- [j23]Xiaojie Fang, Xuejun Sha, Yong Li:
Secret Communication Using Parallel Combinatory Spreading WFRFT. IEEE Commun. Lett. 19(1): 62-65 (2015) - [j22]Xiaoping Liu, Jun Shi, Xuejun Sha, Naitong Zhang:
A general framework for sampling and reconstruction in function spaces associated with fractional Fourier transform. Signal Process. 107: 319-326 (2015) - [c42]Boya Ren, Shuai Han, Weixiao Meng, Cheng Li, Xuanli Wu, Xuejun Sha:
Enhanced turbo detection for SCMA based on information reliability. ICCC 2015: 1-5 - [c41]Xuanli Wu, Wanjun Zhao, Xuejun Sha, Fabrice Labeau, Ye Wang:
SLNR beamforming based iterative power allocation in TD-LTE-A downlink. IWCMC 2015: 84-89 - [c40]Chunyang Tian, Wei Wu, Xuanli Wu, Xuejun Sha:
Weighted SLNR-based precoding algorithm for downlink multi-stream CoMP-JP system. IWCMC 2015: 1242-1247 - [c39]Longhai Zhao, Xuejun Sha, Xuanli Wu:
Achievable Sum Rate Comparison of MIMO OFDMA and SC-FDMA Systems with Linear Receivers. VTC Spring 2015: 1-5 - [c38]Longhai Zhao, Xuejun Sha, Fu-Chun Zheng, Xuanli Wu:
Achievable sum rates of MIMO SC-FDMA systems with different receivers. WCNC 2015: 153-158 - 2014
- [j21]Yong Li, Xuejun Sha, Kun Wang:
Hybrid Carrier Modulation System with Partial FFT Demodulation Over Doubly Selective Channels in Presence of Carrier Frequency Offset. Circuits Syst. Signal Process. 33(12): 3967-3979 (2014) - [j20]Xiaoping Liu, Jun Shi, Xuejun Sha, Naitong Zhang:
Sampling expansion in function spaces associated with the linear canonical transform. Signal Image Video Process. 8(1): 143-148 (2014) - [j19]Yong Li, Xuejun Sha, Deyun Wei:
Image scaling algorithm using multichannel sampling in the linear canonical transform domain. Signal Image Video Process. 8(2): 197-204 (2014) - [j18]Yong Li, Xuejun Sha, Fu-Chun Zheng, Kun Wang:
Low Complexity Equalization of HCM Systems with DPFFT Demodulation over Doubly-Selective Channels. IEEE Signal Process. Lett. 21(7): 862-865 (2014) - [j17]Jun Shi, Xuejun Sha, Xiaocheng Song, Naitong Zhang:
Generalized convolution theorem associated with fractional Fourier transform. Wirel. Commun. Mob. Comput. 14(13): 1340-1351 (2014) - [c37]Yong Li, Xuejun Sha:
Performance analysis of OP-HCM system with DPFFT demodulation over doubly-selective channels. WCSP 2014: 1-6 - 2013
- [j16]Lin Mei, Qinyu Zhang, Xuejun Sha, Naitong Zhang:
Digital computation of the weighted-type fractional Fourier transform. Sci. China Inf. Sci. 56(7): 1-12 (2013) - [j15]Kun Wang, Xuejun Sha, Yong Li:
Hybrid Carrier Modulation with Time-Domain Windows and Iterative Equalization over Underwater Acoustic Channels. IEEE Commun. Lett. 17(8): 1489-1492 (2013) - [j14]Lin Mei, Qinyu Zhang, Xuejun Sha, Naitong Zhang:
WFRFT Precoding for Narrowband Interference Suppression in DFT-Based Block Transmission Systems. IEEE Commun. Lett. 17(10): 1916-1919 (2013) - [j13]Yong Li, Xuejun Sha, Kun Wang:
Hybrid Carrier Communication with Partial FFT Demodulation over Underwater Acoustic Channels. IEEE Commun. Lett. 17(12): 2260-2263 (2013) - [c36]Fu-Chun Zheng, Wenjin Wang, Xiqi Gao, Xuejun Sha:
Delay-tolerant space-time codes: An overview. ICTC 2013: 128-133 - [c35]Kun Wang, Xuejun Sha, Yong Li:
Iterative frequency-domain equalization for WFRFT and EST based modulation schemes over doubly selective wireless fading channels. PIMRC 2013: 1465-1461 - 2012
- [j12]Xuejun Sha, Xin Qiu, Lin Mei:
Hybrid Carrier CDMA Communication System Based on Weighted-Type Fractional Fourier Transform. IEEE Commun. Lett. 16(4): 432-435 (2012) - [j11]Kun Wang, Xuejun Sha, Lin Mei, Xin Qiu:
Performance Analysis of Hybrid Carrier System with MMSE Equalization over Doubly-Dispersive Channels. IEEE Commun. Lett. 16(7): 1048-1051 (2012) - [j10]Jun Shi, Xuejun Sha, Qinyu Zhang, Naitong Zhang:
Extrapolation of Bandlimited Signals in Linear Canonical Transform Domain. IEEE Trans. Signal Process. 60(3): 1502-1508 (2012) - [j9]Jun Shi, Xiaoping Liu, Xuejun Sha, Naitong Zhang:
Sampling and Reconstruction of Signals in Function Spaces Associated With the Linear Canonical Transform. IEEE Trans. Signal Process. 60(11): 6041-6047 (2012) - [j8]Kun Wang, Xuejun Sha, Lin Mei:
On Interference Suppression in Doubly-Dispersive Channels with Hybrid Single-Multi Carrier Modulation and an MMSE Iterative Equalizer. IEEE Wirel. Commun. Lett. 1(5): 504-507 (2012) - [c34]Xiaocheng Song, Jun Shi, Xuejun Sha:
A hybrid overlay/underlay waveform for cognitive radio associated with fractional Fourier transform. CHINACOM 2012: 103-108 - [c33]Xiaoyan Ning, Lili Guo, Xuejun Sha:
Joint time delay and frequency offset estimation based on Fractional Fourier Transform. ICTC 2012: 318-322 - 2011
- [j7]Danyang Qin, Xuejun Sha, Yubin Xu:
A fast local routing repair scheme for wireless mobile ad hoc network. Sci. China Inf. Sci. 54(1): 111-122 (2011) - [j6]Di Lin, Xuanli Wu, Xuejun Sha:
Fractional Fourier transform based transmitted reference scheme for UWB communications. Sci. China Inf. Sci. 54(8): 1712-1722 (2011) - [c32]Lin Mei, Xuejun Sha, Qinyu Zhang, Naitong Zhang:
The concepts of hybrid-carrier scheme communication system. CHINACOM 2011: 26-33 - [c31]Tao Li, Lin Mei, Xuanli Wu, Xuejun Sha, Naitong Zhang:
Anti-interception communication system based on double layers weighted-type fractional Fourier transform. CHINACOM 2011: 88-92 - [c30]Linan Sun, Xuejun Sha, Zhun Ye, Zhongzhao Zhang:
Diversity-multiplexing tradeoff coordinated block-diagonalization precoding. CHINACOM 2011: 123-126 - [c29]Xin Qiu, Xuejun Sha, Lin Mei:
Performance of hybrid carrier DS CDMA communication system. CHINACOM 2011: 176-180 - [c28]Lin Mei, Xuejun Sha, Naitong Zhang:
PAPR of hybrid carrier scheme based on weighted-type fractional Fourier transform. CHINACOM 2011: 237-240 - [c27]Chenguang He, Xuejun Sha:
An energy-efficient virtual cluster aggregation algorithm in MAC design for wireless sensor network. CHINACOM 2011: 315-318 - [c26]Liang Ye, Deying Chen, Xuejun Sha:
Multi-node-cooperative AODV based on cross-layer. CHINACOM 2011: 350-355 - [c25]Hong Feng, Lin Mei, Xuejun Sha, Naitong Zhang:
Modulation recognition for hybrid carrier scheme based on weighted-type fractional Fourier transform. CHINACOM 2011: 381-383 - [c24]Danyang Qin, Lin Ma, Xuejun Sha, Yubin Xu:
Routing timer self-adaptive regulating algorithm based on MIMD loop control for MANET. CHINACOM 2011: 432-437 - [c23]Jun Shi, Xuejun Sha, Xiaocheng Song, Naitong Zhang:
On the linear fractional shift invariant systems associated with fractional Fourier transform. CHINACOM 2011: 511-515 - [c22]Weidang Lu, Xuanli Wu, Xuejun Sha, Naitong Zhang:
Multiple-relay selection scheme in amplify-and-forward cooperative system. CHINACOM 2011: 528-531 - [c21]Jun Shi, Xuejun Sha, Qinyu Zhang, Naitong Zhang:
Generalized sampling theorem for bandpass signals associated with fractional Fourier transform. CHINACOM 2011: 659-662 - [c20]Jin Sun, Xuanli Wu, Xuejun Sha:
Load balancing algorithm with multi-service in heterogeneous wireless networks. CHINACOM 2011: 703-707 - [c19]Yang Cui, Yubin Xu, Rongqing Xu, Xuejun Sha:
A heterogeneous wireless network selection algorithm based on non-cooperative game theory. CHINACOM 2011: 720-724 - 2010
- [j5]Lin Mei, Xuejun Sha, Qinwen Ran, Naitong Zhang:
Research on the application of 4-weighted fractional Fourier transform in communication system. Sci. China Inf. Sci. 53(6): 1251-1260 (2010) - [j4]Lin Mei, Xuejun Sha, Naitong Zhang:
The approach to carrier scheme convergence based on 4-weighted fractional fourier transform. IEEE Commun. Lett. 14(6): 503-505 (2010) - [j3]Xuanli Wu, Xuejun Sha, Cheng Li, Naitong Zhang:
Pulse shaping for cognitive ultra-wideband communications. Wirel. Commun. Mob. Comput. 10(6): 772-786 (2010) - [c18]Lin Mei, Xuejun Sha, Naitong Zhang:
Covert communication based on waveform overlay with Weighted Fractional Fourier Transform signals. WCNIS 2010: 472-475
2000 – 2009
- 2009
- [j2]Danyang Qin, Lin Ma, Xuejun Sha, Yubin Xu:
Realization of Route Reconstructing Scheme for Mobile Ad hoc Network. Int. J. Mob. Comput. Multim. Commun. 1(3): 57-77 (2009) - [c17]Weilin Jiang, Zhongzhao Zhang, Xuejun Sha, Linan Sun:
Base station cooperation based on location-aided in cellular system. CCECE 2009: 157-160 - [c16]Linan Sun, Zhongzhao Zhang, Xuejun Sha, Jing-ning Wang:
Implementation of coded cooperation using a kind of convolutional codes. CCECE 2009: 304-307 - [c15]Jun Shi, Yonggang Chi, Xuejun Sha, Naitong Zhang:
Fractional fourier domain communication system (FrFDCS): Analytic, modeling and simulation results. CCECE 2009: 423-426 - [c14]Xun Tang, Xuejun Sha, Rong-hui Wen:
A subchip multipath search method for DSSS system based on Fractional Fourier Transform. CCECE 2009: 433-436 - [c13]Xiaoyan Ning, Xuejun Sha, Lin Mei:
Narrowband interference suppression method in Cognitive Ultra-wide Band Radio. CCECE 2009: 455-458 - [c12]Qi-Wen Ran, Zhongzhao Zhang, Deyun Wei, Xuejun Sha:
Novel nearly tridiagonal commuting matrix and fractionalizations of generalized DFT matrix. CCECE 2009: 555-558 - [c11]Wei-dang Lu, Xuejun Sha, Jing-ning Wang, Naitong Zhang:
Analysis of relay handoff algorithms in cooperative diversity systems using absolute and relative measurements of energy gain. CCECE 2009: 589-592 - [c10]Jing-ning Wang, Xuejun Sha, Wei-dang Lu, Zhongzhao Zhang:
Partner selection strategy for users with high speed in cooperative diversity systems. CCECE 2009: 852-855 - [c9]Xuejun Sha, Rong-hui Wen, Xin Qiu:
A new multiple-access method based on Fractional Fourier Transform. CCECE 2009: 856-859 - [c8]Qi-Wen Ran, Hai-Ying Zhang, Zhongzhao Zhang, Xuejun Sha:
The analysis of the discrete fractional Fourier transform algorithms. CCECE 2009: 979-982 - [c7]Danyang Qin, Xuejun Sha, Yubin Xu:
A Reliable Routing Strategy for MANET Based on SGC. CSO (1) 2009: 536-540 - [c6]Ali Nawaz Khan, Xuejun Sha, Muhammad Waqas Anwar, Abid Khan:
Performance analysis of prioritized and non prioritized handoff call queuing schemes in mobile cellular networks. FIT 2009: 11:1-11:6 - [c5]Weilin Jiang, Zhongzhao Zhang, Yubin Xu, Xuejun Sha:
Interference Mitigated Receiver Based on Base Station Cooperation. IFITA (3) 2009: 256-259 - 2008
- [c4]Xuanli Wu, Xuejun Sha, Cheng Li, Naitong Zhang:
Orthogonal Wavelet Based Dynamic Pulse Shaping for Cognitive Ultra-Wideband Communications. GLOBECOM 2008: 4856-4860 - [c3]Xuanli Wu, Xuejun Sha, Naitong Zhang:
Meyer Wavelet Based Orthogonal Pulse Shaping Algorithm for UWB Communication Systems. ICC 2008: 3928-3932 - 2007
- [j1]Xuanli Wu, Xuejun Sha, Naitong Zhang:
Pulse shaping method to compensate for antenna distortion in ultra-wideband communications. Sci. China Ser. F Inf. Sci. 50(6): 878-888 (2007) - 2006
- [c2]Huiyu Wang, Qinyu Zhang, Naitong Zhang, Xuejun Sha:
Pulse Shaping for UWB Communications in Dense Multipath. ICICIC (2) 2006: 714-717 - 2005
- [c1]Yu Yang, Xuejun Sha, Zhonghua Zhang:
A low complexity bit loading algorithm for OFDM system. ISSPA 2005: 139-142
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-08-03 21:18 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint