Study of Routing in Wireless Mesh Network
Keywords:
Wireless, Antenna, Mesh Network, WLAN.Abstract
Routing protocol design is also highly jointed with the underlying link and physical layers. For example, designing a routing protocol for a network using a multi-channel MAC protocol will tend to favor channel diversity and load balancing among channels. Routing in networks with directional antennas will try to benefit from the uni-casting capability of the directional antennas and alleviate problems that arise for such types of networks. In the present paper, we discuss routing protocols developed for best-effort traffic.
References
- Z. Zhang, \DTRA: Directional Transmission and Reception Algorithms in WLANs with Directional Antennas for QoS Support," IEEE Network, pp. 27-32, vol. 19, no. 3, May-June 2005.
- J. H. Winters, \Smart Antenna Techniques and Their Application to Wireless Ad Hoc Networks," IEEE Wireless Communications, pp. 77-83, vol. 13, no. 4, Aug. 2006.
- J. A. Stine, \Exploiting Smart Antennas in Wireless Mesh Network Using Contention Access," IEEE Wireless Communications, pp. 38-49, vol. 13, no. 2, April 2006.
- I. F. Akyldiz, X. Wang, \A Survey on Wireless Mesh Networks," IEEE Com munications Magazine, pp. 23-30, vol. 43, issue 9, Sept. 2005.
- L. M. Si, H. J. Sun, and X. Lv, “Numerical simulations of backward-to-forward leaky-wave antenna with composite right/left-handed coplanar waveguide,” Chinese Physics Letters, vol. 27, no. 3, Article ID 034106, 2010.
- L.-M. Si, H.-J. Sun, and X. Lv, “THz leaky-wave antenna with high-directivity and beam-steering using CPW CRLH metamaterial resonators,” in Proceedings of the 3rd International Symposium on Photoelectronic Detection and Imaging, Beijing, China, 2009.
- Y. Liu, L. M. Si, S. Zhu, and H. Xin, “Experimental realization of an integrated THz electromagnetic crys-tals (EMXT) Hplane horn antenna,” Electronics Letters, vol. 47, no. 2, pp. 80– 82, 2011.
- L. M. Si, Y. Liu, S. H. Zhu, and H. Xin, “Integrated THz horn antenna using EBG structures,” in Proceedings of the IEEE International Symposium on Antennas and Propagation and USNC/CNC/URSI National Radio Science Meeting, University of Colorado at Boulder, 2011.
- Y. Liu, Y. Yuan, X. Lv, and L.-M. Si, “Design of 0.5 THz 2D square lattice EBG waveguide transmission line and power-divider using MEMS technology,” in Proceedings 3rd International Symposium on Photoelectro
- Yi, X.; Huitema, L.; Wong, H. Polarization and pattern reconfigurable cuboid quadrifilar helical antenna. IEEE Trans. Antennas Propag. 2018, 66, 2707–2715. [CrossRef]
- Trong, N.N.; Mobashsher, A.T.; Abbosh, A.M. Reconfigurable shorted patch antenna with polarization and pattern diversity. In Proceedings of the 2018 Australian Microwave Symposium (AMS), Brisbane, Australia, 6–7 February 2018.
- Lin, W.; Wong, H. Polarization reconfigurable wheel-shaped antenna with conical-beam radiation pattern. IEEE Trans. Antennas Propag. 2015, 63, 491–499. [CrossRef]
- Yang, K.; Loutridis, A.; Bao, X. Printed inverted-F antenna with reconfigurable pattern and polarization. In Proceedings of the 10th European Conference on Antennas and Propagation (EuCAP), Davos, Switzerland, 10–15 April 2016.
- Lin, W.; Wong, H.; Ziolkowski, R.W. Circularly-polarized antenna with reconfigurable broadside and conical beams facilitated by a mode switchable feed network. IEEE Trans. Antennas Propag. 2018, 66, 996–1001. [CrossRef]
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