Ziao Qin(秦子翱)
[1] Z. Qin, H. Yin, Y. Cao, W. Li, and D. Gesbert, "A partial reciprocity-based channel prediction framework for FDD massive MIMO with high mobility," IEEE Transactions on Wireless Communications, vol. 21, no. 11, pp. 9638-9652, Nov. 2022
[2] Z. Qin, H. Yin, D. Gesbert, "A channel estimation framework for high-mobility FDD massive MIMO using partial reciprocity," 2022 IEEE International Conference on Communications (ICC), Seoul, South Korea, May. 2022.
[3] W. Li, H. Yin, Z. Qin, Y. Cao, and M. Debbah, "A multi-dimensional matrix pencil-based channel prediction method for massive MIMO with mobility," IEEE Transactions on Wireless Communications, vol. 22, no. 4, pp. 2215-2230, Apr. 2023.
[4] Z. Qin, and H. Yin, "A review of codebooks for CSI feedback in 5G New Radio and beyond," submitted, available online: https://arxiv.org/abs/2302.09222, Feb. 2023.
[5] Y. Cao, H. Yin, Z. Qin, W. Li, W. Wu, and M. Debbah, "A manifold learning-based CSI feedback framework for FDD massive MIMO," submitted, available online: https://arxiv.org/abs/2304.14598, Apr. 2023.
Weidong Li(李伟东)
[1] Z. Qin, H. Yin, Y. Cao, W. Li, and D. Gesbert, "A partial reciprocity-based channel prediction framework for FDD massive MIMO with high mobility," IEEE Transactions on Wireless Communications, vol. 21, no. 11, pp. 9638-9652, Nov. 2022
[2] W. Li, H. Yin, and M. Debbah, "A super-resolution channel prediction approach based on extended matrix pencil method," 2022 IEEE International Conference on Communications (ICC), Seoul, South Korea, May 2022.
[3] W. Li, H. Yin, Z. Qin, Y. Cao, and M. Debbah, "A multi-dimensional matrix pencil-based channel prediction method for massive MIMO with mobility," IEEE Transactions on Wireless Communications, vol. 22, no. 4, pp. 2215-2230, Apr. 2023.
[4] Y. Cao, H. Yin, Z. Qin, W. Li, W. Wu, and M. Debbah, "A manifold learning-based CSI feedback framework for FDD massive MIMO," submitted, available online: https://arxiv.org/abs/2304.14598, Apr. 2023.
Xilong Pei(裴熙隆)
[1] X. Pei, H. Yin, L. Tan, L. Cao, Z. Li, K. Wang, K. Zhang, and E. Björnson, "RIS-aided wireless communications: Prototyping, adaptive beamforming, and indoor/outdoor field trials," IEEE Transactions on Communications, vol. 69, no. 12, pp. 8627-8640, Dec. 2021.
[2] Z. Wang, L. Tan, H. Yin, K. Wang, X. Pei, and D. Gesbert,"A received power model for reconfigurable intelligent surface and measurement-based validations," IEEE International Workshop on Signal Processing Advances in Wireless Communications (SPAWC 2021), Sept. 2021, Lucca, Italy. (invited)
[3] J. Hu, H. Yin, L. Tan, L. Cao, and X. Pei "RIS-aided wireless communications: Can RIS beat metal plate?" submitted, available online: https://arxiv.org/abs/2303.02938, Mar. 2023.
[4] L. Cao, H. Yin, and X. Pei, "RIS with insufficient phase shifting capability: Modeling, beamforming, and experimental validations," submitted, available online: https://arxiv.org/abs/2307.02297, Jul. 2023.
[5] X. Pei, H. Yin, L. Tan, L. Cao, and T. Yang, "Prototyping and real-world field trials of RIS-aided wireless communications," submitted, available online: https://arxiv.org/abs/2308.03263, Aug. 2023.
Yandi Cao(曹彦迪)
[1] Z. Qin, H. Yin, Y. Cao, W. Li, and D. Gesbert, "A partial reciprocity-based channel prediction framework for FDD massive MIMO with high mobility," IEEE Transactions on Wireless Communications, vol. 21, no. 11, pp. 9638-9652, Nov. 2022
[2] Y. Cao, H. Yin, G. He, and M. Debbah, "Manifold learning-based CSI feedback in massive MIMO systems," 2022 IEEE International Conference on Communications (ICC), Seoul, South Korea, May. 2022.
[3] W. Li, H. Yin, Z. Qin, Y. Cao, and M. Debbah, "A multi-dimensional matrix pencil-based channel prediction method for massive MIMO with mobility," IEEE Transactions on Wireless Communications, vol. 22, no. 4, pp. 2215-2230, Apr. 2023.
[4] Y. Cao, H. Yin, Z. Qin, W. Li, W. Wu, and M. Debbah, "A manifold learning-based CSI feedback framework for FDD massive MIMO," submitted, available online: https://arxiv.org/abs/2304.14598, Apr. 2023.
Lin Cao(曹琳)
[1] X. Pei, H. Yin, L. Tan, L. Cao, Z. Li, K. Wang, K. Zhang, and E. Björnson, "RIS-aided wireless communications: Prototyping, adaptive beamforming, and indoor/outdoor field trials," IEEE Transactions on Communications, vol. 69, no. 12, pp. 8627-8640, Dec. 2021.
[2] J. Hu, H. Yin, L. Tan, L. Cao, and X. Pei "RIS-aided wireless communications: Can RIS beat metal plate?" submitted, available online: https://arxiv.org/abs/2303.02938, Mar. 2023.
[3] L. Cao, H. Yin, and X. Pei, "RIS with insufficient phase shifting capability: Modeling, beamforming, and experimental validations," submitted, available online: https://arxiv.org/abs/2307.02297, Jul. 2023.
[4] X. Pei, H. Yin, L. Tan, L. Cao, and T. Yang, "Prototyping and real-world field trials of RIS-aided wireless communications," submitted, available online: https://arxiv.org/abs/2308.03263, Aug. 2023.
Liangcheng Han(韩良成)
[1] L. Han, H. Yin, and T. L. Marzetta, "Coupling matrix-based beamforming for superdirective antenna arrays," 2022 IEEE International Conference on Communications (ICC), Seoul, South Korea, May. 2022.
[2] L. Han, H. Yin, M. Gao, J. Xie, "A superdirective beamforming approach with impedance coupling and field coupling for compact antenna arrays," submitted, available online: https://arxiv.org/abs/2302.08203, Feb. 2023.
[3] L. Han, and H. Yin, "Superdirectivity-enhanced wireless communications: A multi-user perspective," submitted, available online: https://arxiv.org/abs/2307.06958, Jul. 2023.
[4] J. Xie, H. Yin, and L. Han, "A genetic algorithm based superdirective beamforming method under excitation power range constraints," submitted, available online: https://arxiv.org/abs/2307.02063, Jul. 2023.
[5] M. Gao, H. Yin, and L. Han, "An EEP-based robust beamforming approach for superdirective antenna arrays and experimental validations," submitted, available online: https://arxiv.org/abs/2308.11934, Aug. 2023.
Mengying Gao(高梦颖)
[1] L. Han, H. Yin, M. Gao, J. Xie, "A superdirective beamforming approach with impedance coupling and field coupling for compact antenna arrays," submitted, available online: https://arxiv.org/abs/2302.08203, Feb. 2023.
[2] M. Gao, H. Yin, and L. Han, "An EEP-based robust beamforming approach for superdirective antenna arrays and experimental validations," submitted, available online: https://arxiv.org/abs/2308.11934, Aug. 2023.
Yaoshen Cui(崔耀燊)
[1] Y. Cui, H. Yin, "Channel estimation for RIS-aided mmWave communications via 3D positioning," IEEE ICCC 2021 Workshops, Jul. 2021, Xiamen, China.
[2] Y. Cui,H. Yin, L. Tan, and M. Di Renzo, "A 3D positioning-based channel estimation method for RIS-aided mmWave communications," submitted, available online: https://arxiv.org/abs/2203.14636, Apr. 2022.
Jiangfeng Hu(胡江峰)
[1] J. Hu, H. Yin, E. Björnson, "MmWave MIMO communication with semi-passive RIS: A low-complexity channel estimation scheme," IEEE GLOBECOM 2021, Dec. 2021, Madrid, Spain.
[2] J. Hu, H. Yin, L. Tan, L. Cao, and X. Pei "RIS-aided wireless communications: Can RIS beat metal plate?" submitted, available online: https://arxiv.org/abs/2303.02938, Mar. 2023.
Zhanpeng Li(李展鹏)
[1] X. Pei, H. Yin, L. Tan, L. Cao, Z. Li, K. Wang, K. Zhang, and E. Björnson, "RIS-aided wireless communications: Prototyping, adaptive beamforming, and indoor/outdoor field trials," IEEE Transactions on Communications, vol. 69, no. 12, pp. 8627-8640, Dec. 2021.
Kai Wang(王锴)
[1] X. Pei, H. Yin, L. Tan, L. Cao, Z. Li, K. Wang, K. Zhang, and E. Björnson, "RIS-aided wireless communications: Prototyping, adaptive beamforming, and indoor/outdoor field trials," IEEE Transactions on Communications, vol. 69, no. 12, pp. 8627-8640, Dec. 2021.
[2] Z. Wang, L. Tan, H. Yin, K. Wang, X. Pei, and D. Gesbert, "A received power model for reconfigurable intelligent surface and measurement-based validations," IEEE International Workshop on Signal Processing Advances in Wireless Communications (SPAWC 2021), Sept. 2021, Lucca, Italy. (invited)
Zhibo Zhou(周志博)
Jichu Zhou(周冀楚)
Zipeng Wang(王梓鹏)
[1] Z. Wang, L. Tan, H. Yin, K. Wang, X. Pei, and D. Gesbert,"A received power model for reconfigurable intelligent surface and measurement-based validations," IEEE International Workshop on Signal Processing Advances in Wireless Communications (SPAWC 2021), Sept. 2021, Lucca, Italy. (invited)
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