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[1] Agha Yasir Ali, Zhang Zaichen, Abdeldime M.S.Abdelgader, Zong Baiqing, et al. Mitigation of inter-cell interference in visible light communication [J]. Journal of Southeast University (English Edition), 2015, 31 (4): 437-442. [doi:10.3969/j.issn.1003-7985.2015.04.002]
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Mitigation of inter-cell interference in visible light communication()
光通信系统中的区间干扰抵消
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Journal of Southeast University (English Edition)[ISSN:1003-7985/CN:32-1325/N]

Volumn:
31
Issue:
2015 4
Page:
437-442
Research Field:
Information and Communication Engineering
Publishing date:
2015-12-30

Info

Title:
Mitigation of inter-cell interference in visible light communication
光通信系统中的区间干扰抵消
Author(s):
Agha Yasir Ali1, Zhang Zaichen1, Abdeldime M.S.Abdelgader1, Zong Baiqing2
1National Mobile Communications Research Laboratory, Southeast University, Nanjing 210096, China
2 ZTE Corporation, Shenzhen 518057, China
Agha Yasir Ali1, 张在琛1, Abdeldime M.S.Abdelgader1, 宗白庆2
1东南大学移动通信国家重点实验室, 南京210096; 2中兴通讯股份有限公司, 深圳518057
Keywords:
visible light communication inter-cell interference orthogonal pulses
光通信 区间干扰 正交脉冲
PACS:
TN929.53
DOI:
10.3969/j.issn.1003-7985.2015.04.002
Abstract:
This paper proposes the orthogonal and non-orthogonal schemes in the interference environments for visible light communication(VLC)systems. The proposed schemes pay attention to the case when different bit streams from multiple cells are simultaneously transmitted, which consequently causes inter-cell interference(ICI)and greatly deteriorates the bit error rate(BER)and channel capacity performance of the system. The performance of the new developed multi-cell system in indoor VLC systems is evaluated. The bipolar phase shift keying(BPSK)modulation scheme with orthogonal pulses(OPs)for multiple cells environments is employed to mitigate the ICI problem and improve the BER and channel capacity performances. Since the use of different OPs in each cell requires more number of OPs, which requires high bandwidth, OPs are reused at certain distances. Three different schemes, which are OPs, orthogonal and non-orthogonal pulses(NOP)reuse, are compared. This paper investigates the impact of using these schemes and compared their performances in the ICI environments. The BER and channel capacity using the proposed schemes are comprehensively examined. Simulation and theoretical results show that the OPs schemes are more effective in the interference areas of the room and significantly outperform NOP.
提出了可见光通信系统中针对小区间干扰(ICI)环境下的的正交和非正交调制传输方案设计.所提出的调制传输方案设计着重改善多小区同时传输非同步光信号而导致的小区间干扰对可见光系统误码率性能及信道传输容量的影响, 并给出了正交调制传输方案的性能分析和仿真.用干扰环境下的正交脉冲(OP)信号的双极相移键控(BPSK)调制方案来消除小区间干扰的问题, 改善系统误码率性能并提高传输容量.由于每个区间的脉冲信号正交, 小区个数的增加使得调制信号带宽增大.设计了非正交脉冲(NOP)方案使得相邻较远的小区可以复用相同的脉冲信号来减小系统带宽需求.比较了正交脉冲、复用正交脉冲和非正交脉冲3种不同的调制传输方案对小区间干扰问题的改善效果, 同时也给出了3种调制传输方案的误码率和信道容量的理论解和仿真结果.结果表明:正交脉冲传输方案在小区干扰环境下传输效率更高, 并且系统性能明显优于非正交脉冲调制方案.

References:

[1] Komine T, Nakagawa M. Fundamental analysis for visible-light communication system using LED lights[J]. IEEE Transactions on Consumer Electronics, 2004, 50(1): 100-107.
[2] Zeng L, O’Brien D, Minh H, et al. High data rate multiple input multiple output(MIMO)optical wireless communications using white LED lighting[J]. IEEE Journal on Selected Areas in Communications, 2009, 27(9): 1654-1662.
[3] Rahaim M, Little T. SINR analysis and cell zooming with constant illumination for indoor VLC networks [C]//The 2nd International Workshop on Optical Wireless Communications(IWOW). Newcastle Upon Tyne, UK, 2013: 20-24.
[4] Wang Z, Yu C, Zhong W D, et al. Performance of a novel LED lamp arrangement to reduce SNR fluctuation for multi-user visible light communication systems[J]. Optics express, 2012, 20(4): 4564-4573.
[5] Guerra-Medina M, Gonzalez O, Rojas-Guillama B, et al. Ethernet-OCDMA system for multi-user visible light communications[J]. Electronics Letters, 2012, 48(4): 227-228.
[6] Wu Z, Little T. Network solutions for the line-of-sight problem of new multi-user indoor free-space optical system[J]. IET Communications, 2012, 6(5): 525-531.
[7] Chen J, Hong Y, Wang Z. Performance of precoding multi-user MIMO indoor visible light communications [C]//IEEE Photonics Conference(IPC), WG4. Reston, USA, 2013: 541-542.
[8] Spencer Q H, Swindlehurst A L, Haardt M. Zero-forcing methods for downlink spatial multiplexing in multiuser MIMO channels[J]. IEEE Transactions on Signal Processing, 2004, 52(2): 461-471.
[9] Spencer Q H, Peel C B, Haardt M. An introduction to the multi-user MIMO downlink[J]. IEEE Communications Magazine, 2004, 42(10): 60-67.
[10] Ali A Y, Zhang Z, Zong B. Pulse position and shape modulation for visible light communication system [C]//International Conference on Electromagnetics in Advanced Applications(ICEAA). Palm Beach, Aruba, 2014:546-549.
[11] Uddin M S, Cha J S, Kim J Y, et al. Mitigation technique for receiver performance variation of multi-color channels in visible light communication[J]. Sensors, 2011, 11(6): 6131-6144.
[12] Ali A Y, Zhang Z. Received power based area estimation for indoor visible light communication[C]//International Conference on Information & Intelligent Systems(ICIIS). Sousse, Tunisia, 2013:1-8.

Memo

Memo:
Biographies: Agha Yasir Ali(1979—), male, graduate, aghayasirali@hotmail.com; Zhang Zaichen(corresponding author), male, doctor, professor, zczhang@seu.edu.cn.
Foundation items: The National High Technology Research and Development Program of China(863 Program)(No. 2013AA013601), the National Natural Science Foundation of China(No. 61223001), the Natural Science Foundation of Jiangsu Province(No.BK20140646), the Research Fund of National Mobile Communication Research Laboratory(No.2014A03, 2014B03, 2014B04), the Research Fund of Zhongxing Telecommunication Equipment Corporation, the Fundamental Research Funds of the Central Universities(No.2242014K40033), the United Creative Foundation of Jiangsu Province(No.BY2013095-1-18).
Citation: Agha Yasir Ali, Zhang Zaichen, Abdeldime M.S. Abdelgader, et al. Mitigation of inter-cell interference in visible light communication[J].Journal of Southeast University(English Edition), 2015, 31(4):437-442.[doi:10.3969/j.issn.1003-7985.2015.04.002]
Last Update: 2015-12-20