Abstract
With little interference from atmospheric environment, the prospect of ultraviolet (UV) communication in the solar blind region (220 nm–280 nm) is promising. Due to the large path-loss propagation and the no-line-of-sight (NLOS) attenuation, the intensities of UV beams may be severely degraded, and thereby the efficient transmission distance is heavily decreased. In this paper, we design and implement a scheme of UV communication system, with polar channel coding to enhance the efficient transmission distance. Both numerical and experimental results show that our scheme is able to reach a longer efficient transmission distance in contrast with the existing low-density parity-check (LDPC) scheme and uncoded OOK scheme, in the UV communication system.
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References
Trakhovsky, E., Ben-Shalom, A., Oppenheim, U.P., Devir, A.D., Balfour, L.S., Engel, M.: Contribution of oxygen to attenuation in the solar blind UV spectral region. Appl. Opt. 28(8), 1588–1591 (1989)
Shaw, G.A., Siegel, A.M., Model, J.: Ultraviolet comm links for distributed sensor networks. In: Digest of the LEOS Summer Topical Meetings. IEEE (2005)
Luo, P., Zhang, M., Han, D., Li, Q.: Performance analysis of short-range NLOS UV communication system using Monte Carlo simulation based on measured channel parameters. Opt. Express 20(21), 23 489–23 501 (2012)
Kedar, D.: Multiaccess interference in a non-line-of-sight ultraviolet optical wireless sensor network. Appl. Opt. 46(23), 5895–5901 (2007)
Zhang, M., Luo, P., Guo, X., Zhang, X., Han, D., Li, Q.: Spread spectrum-based ultraviolet communication with experiments. Chin. Opt. Lett. 12(10), 100602 (2014)
Wu, M., Han, D., Zhang, X., Zhang, F., Zhang, M., Yue, G.: Experimental research and comparison of LDPC and RS channel coding in ultraviolet communication systems. Opt. Express 22(5), 5422–5430 (2014)
Xing, Y., Zhang, M., Han, D., Ghassemlooy, Z.: Experimental study of a 2 \(\times \) 2 mimo scheme for ultraviolet communications. In: 2016 15th International Conference on Optical Communications and Networks (ICOCN), pp. 1–3. IEEE (2016)
Guo, L., Mu, X., Pan, X., Liu, K., Meng, D., Han, D.: DSTBC experimental research on UV communication system. Photonic Netw. Commun. 1–8 (2016)
Wang, L., Li, Y., Xu, Z.: On connectivity of wireless ultraviolet networks. JOSA A 28(10), 1970–1978 (2011)
Shatalov, M., Zhang, J., Chitnis, A., Adivarahan, V., Yang, J., Simin, G., Khan, M.A.: Deep ultraviolet light-emitting diodes using quaternary AlInGaN multiple quantum wells. IEEE J. Sel. Topics Quantum Electron. 8(2), 302–309 (2002)
Shen, S.-C., Zhang, Y., Yoo, D., Limb, J.-B., Ryou, J.-H., Yoder, P.D., Dupuis, R.D.: Performance of deep ultraviolet GaN Avalanche photodiodes grown by MOCVD. IEEE Photonics Technol. Lett. 19(21), 1744–1746 (2007)
Chen, G., Xu, Z., Ding, H., Sadler, B.M.: Path loss modeling and performance trade-off study for short-range non-line-of-sight ultraviolet communications. Opt. Express 17(5), 3929–3940 (2009)
Xu, Z., Sadler, B.M.: Ultraviolet communications: potential and state-of-the-art. IEEE Commun. Mag. 46(5) (2008)
Arikan, E.: Channel polarization: a method for constructing capacity-achieving codes for symmetric binary-input memoryless channels. IEEE Trans. Inf. Theory 55(7), 3051–3073 (2009)
Wei, Z., Li, B., Zhao, C.: On the polar code for the 60-GHz millimeter-wave systems. EURASIP J. Wirel. Commun. Netw. 2015(1), 31 (2015)
He, Q., Sadler, B.M., Xu, Z.: Modulation and coding tradeoffs for non-line-of-sight ultraviolet communications. In: SPIE Optical Engineering+ Applications, p. 74 640H. International Society for Optics and Photonics (2009)
Acknowledgement
This work is supported by NSFC Project No. 61471052 and the Royal Society Newton International Exchanges between U.K. and China under Grant NI140188.
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Hu, W., Zhang, M., Han, D., Chen, Q., Wu, M., Ai, L. (2019). Polar Channel Coding for the Ultraviolet Communication System Combating Path-Loss Propagation and NLOS Effects. In: Liang, Q., Mu, J., Jia, M., Wang, W., Feng, X., Zhang, B. (eds) Communications, Signal Processing, and Systems. CSPS 2017. Lecture Notes in Electrical Engineering, vol 463. Springer, Singapore. https://doi.org/10.1007/978-981-10-6571-2_105
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DOI: https://doi.org/10.1007/978-981-10-6571-2_105
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