Acknowledgement
Supported by : National Natural Science Foundation of China (NSFC), Tsinghua University
References
- C. H. Doan, S. Emami, D. A. Sobel, A.M. Niknejad, and R.W. Brodersen, "Design considerations for 60 GHz cmos radios," IEEE Commun. Mag., vol. 42, no. 12, pp. 132-140, Dec. 2004.
- F. Gutierrez, S. Agarwal, K. Parrish, and T. S. Rappaport, "On-chip integrated antenna structures in CMOS for 60 GHz WPAN systems," IEEE J. Sel. Areas Commun., vol. 27, no. 8, pp. 1367-1378, Oct. 2009. https://doi.org/10.1109/JSAC.2009.091007
- ECMC TC48, ECMA standard 387, "High rate 60 GHz PHY, MAC and HDMI PAL," Dec. 2008.
- IEEE 802.15.3 Working Group, "Part 15.3: Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for High Rate Wireless Personal Area Networks (WPANs)," IEEE Unapproved Draft Std P802.15.3c/D10, June 2009.
- IEEE 802.11ad Working Group, "Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications-Amendment 5: Enhancements for Very High Throughput in the 60GHz Band," IEEE Unapproved Draft Std P802.11ad/D1.0, 2010.
- J. Wang et al., "Beam codebook based beamforming protocol for multi-Gbps millimeter-wave WPAN systems," IEEE J. Sel. Areas Commun., vol. 27, no. 8, pp. 1390-1399, Oct. 2009. https://doi.org/10.1109/JSAC.2009.091009
- Y. Tsang, A. Poon, and S. Addepalli, "Coding the beams: Improving beamforming training in mmwave communication system," in Proc. IEEE GLOBECOM, (Houston, USA), Dec. 5-9, 2011, pp. 1-6.
- Y.-B. Ko, V. Shankarkumar, and N. F. Vaidya, "Medium access control protocols using directional antennas in ad hoc networks," in Proc. IEEE INFOCOM, (Tel Aviv), Mar. 26-30, 2000, pp. 13-21.
- S. Singh, F. Ziliotto, U.Madhow, E.M. Belding, and M. Rodwell, "Blockage and directivity in 60 GHz wireless personal area networks: From cross-layer model to multihop MAC design," IEEE J. Sel. Areas Commun., vol. 27, no. 8, pp. 1400-1413, Oct. 2009. https://doi.org/10.1109/JSAC.2009.091010
- J. Qiao, L. X. Cai, X. Shen, and J. Mark, "STDMA-based scheduling algorithm for concurrent transmissions in directional millimeter wave networks," in Proc. IEEE ICC, (Ottawa, Canada), June 10-15, 2012, pp. 5221-5225.
- L. X. Cai, L. Cai, X. Shen, and J.W.Mark, "REX: A randomized exclusive region based scheduling scheme for mmWave WPANs with directional antenna," IEEE Trans. Wireless Commun., vol. 9, no. 1, pp. 113-121, Jan. 2010. https://doi.org/10.1109/TWC.2010.01.070503
- C. Sum et al., "Virtual time-slot allocation scheme for throughput enhancement in a millimeter-wave multi-Gbps WPAN system," IEEE J. Sel. Areas Commun., vol. 27, no. 8, pp. 1379-1389, Oct. 2009. https://doi.org/10.1109/JSAC.2009.091008
- X. An and R. Hekmat, "Directional MAC protocol for millimeter wave based wireless personal area networks," in Proc. IEEE VTC-Spring (Singapore), May 11-14, 2008, pp. 1636-1640.
- C.-w. Pyo, F. Kojima, J. Wang, H. Harada, and S. Kato, "MAC enhancement for high speed communications in the 802.15.3c mm Wave WPAN," Springer Wireless Pers. Commun., vol. 51, no. 4, pp. 825-841, July 2009. https://doi.org/10.1007/s11277-009-9768-2
- C.-S. Sum et al., "A multi-Gbps millimeter-wave WPAN system based on STDMA with heuristic scheduling," in Proc. IEEE GLOBECOM, (Honolulu, HI), 2009, pp. 1-6.
- J. Qiao et al., "Enabling multi-hop concurrent transmissions in 60 GHz wireless personal area networks," IEEE Trans. Wireless Commun., vol. 10, no. 11, pp. 3824-3833, Nov. 2011. https://doi.org/10.1109/TWC.2011.092711.102104
- E. Shihab, L. Cai, and J. Pan, "A distributed asynchronous directional-todirectional MAC protocol for wireless ad hoc networks," IEEE Trans. Veh. Technol., vol. 58, no. 9, pp. 5124-5134, Nov. 2009. https://doi.org/10.1109/TVT.2009.2024085
- M. X. Gong, R. J. Stacey, D. Akhmetov, and S. Mao, "A directional CSMA/CA protocol for mmWave wireless PANs," in Proc. IEEE WCNC (Sydney, NSW), Apr. 18-21, 2010, pp. 1-6.
- Q. Chen, X. Peng, J. Yang, and F. Chin, "Spatial reuse strategy inmmWave WPANs with directional antennas," in Proc. IEEE GLOBECOM, (Anaheim, CA), Dec. 3-7, 2012, pp. 5392-5397.
- I. K. Son, S. Mao, M. X. Gong, and Y. Li, "On frame-based scheduling for directional mmWave WPANs," in Proc. IEEE INFOCOM, (Orlando, FL), Mar. 25-30, 2012, pp. 2149-2157.
- Q. Chen, J. Tang, D. Wong, X. Peng, and Y. Zhang, "Directional cooperative MAC protocol design and performance analysis for IEEE 802.11 ad WLANs," IEEE Trans. Veh. Technol., vol. 62, no. 6, pp. 2667-2677, July 2013. https://doi.org/10.1109/TVT.2013.2245352
- Y. Niu, Y. Li, D. Jin, L. Su, and D. Wu, "Blockage robust and efficient scheduling for directional mmWave WPANs," IEEE Trans. Veh. Technol., vol. 64, no. 2, pp. 728-742, Feb. 2015. https://doi.org/10.1109/TVT.2014.2322660
- Z. Genc et al., "Robust 60 GHz indoor connectivity: Is it possible with reflections?" in Proc. IEEE VTC, (Taipei, Taiwan), May 16-19, 2010, pp. 1-5.
- X. An et al., "Beam switching support to resolve link-blockage problem in 60 GHz WPANs," in Proc. IEEE PIMRC, (Tokyo, Japan), Sept. 13-16, 2009, pp. 390-394.
- S. Y. Geng, J. Kivinen, X. W. Zhao, and P. Vainikainen, "Millimeter-wave propagation channel characterization for short-range wireless communications," IEEE Trans. Veh. Technol., vol. 58, no. 1, pp. 3-13, Jan. 2009. https://doi.org/10.1109/TVT.2008.924990
- X. Zhang et al., "Improving network throughput in 60GHz WLANs via multi-AP diversity," in Proc. IEEE ICC, (Ottawa, Canada), June 10-15, 2012, pp. 4803-4807.
- J. Qiao et al., "Enabling device-to-device communications in millimeterwave 5G cellular networks," IEEE Commun. Mag., vol. 53, no. 1, pp. 209-215, Jan. 2015. https://doi.org/10.1109/MCOM.2015.7010536
- J. Ning, T.-S. Kim, S. V. Krishnamurthy, and C. Cordeiro, "Directional neighbor discovery in 60 GHz indoor wireless networks," in Proc. ACM MSWiM, (Tenerife, Spain), Oct. 26-30, 2009, pp. 365-373.
- Y. Niu, Y. Li, D. Jin, L. Su, and D. Wu, "A two stage approach for channel transmission rate aware scheduling in directional mmWave WPANs," Wireless Commun. Mobile Comput., Aug. 2014.
- X. Xu and S. Tang, "A constant approximation algorithm for link scheduling in arbitrary networks under physical interference model," in Proc. ACM FOWANC, May, 2009, pp. 13-20.
- H. D. Sherali and W. P. Adams, A Reformulation-Linearization Technique for Solving Discrete and Continuous Nonconvex Problems. Boston, MA: Kluwer Academic, 1999.
- S. Kompella, S.Mao, Y. T. Hou, and H. D. Sherali, "On path selection and rate allocation for video in wireless mesh networks," IEEE Trans. Netw., vol. 17, no. 1, pp. 212-224, Feb. 2009. https://doi.org/10.1109/TNET.2008.925942
- YALMIP YALMIP Wiki [Online]. Available: http://users.isy.liu.se/johanl/yalmip/