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1.北京科技大学计算机与通信工程学院,北京 100083
2.中国移动通信集团江西有限公司,江西南昌 330000
3.北京大学物理学院,人工微结构物理和介观物理国家重点实验室,北京 100081
Received:15 January 2021,
Revised:2021-04-26,
Published:25 October 2021
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金建力,路慧敏,陈丹阳等.一种抗可见光蜂窝网小区间干扰的光学发射天线设计[J].电子学报,2021,49(10):1975-1981.
JIN Jian-li,LU Hui-min,CHEN Dan-yang,et al.Design of Anti-Cell Interference Optical Transmitting Antenna for Visible Light Cellular Network[J].ACTA ELECTRONICA SINICA,2021,49(10):1975-1981.
金建力,路慧敏,陈丹阳等.一种抗可见光蜂窝网小区间干扰的光学发射天线设计[J].电子学报,2021,49(10):1975-1981. DOI: 10.12263/DZXB.20210111.
JIN Jian-li,LU Hui-min,CHEN Dan-yang,et al.Design of Anti-Cell Interference Optical Transmitting Antenna for Visible Light Cellular Network[J].ACTA ELECTRONICA SINICA,2021,49(10):1975-1981. DOI: 10.12263/DZXB.20210111.
本文提出了一种应用于可见光蜂窝网的自由曲面光学发射天线,用于改善整个网络范围内的信号质量以提高系统的通信性能.首先基于能量映射关系和斯涅尔定律,设计了目标光分布区域为矩形的基于自由曲面透镜的光学发射天线,应用该天线能使半导体发光二极管(LED)光源发出的光信号均匀分布在0.8 m × 0.8 m的正方形范围内.而后将设计的光学发射天线应用于可见光蜂窝网,并进一步对网络接收区域的光信号质量和系统性能做了分析.结果表明,在一个3 m × 3 m × 3 m房间中安装有16个LED光源作为接入点,采用所设计的自由曲面光学发射天线,网络覆盖区域的光信号分布均匀度达到了0.8以上,同信道干扰基本消除,平均信干噪比为12.6 dB,系统具有较好的误码率性能,能够有效地保证可见光蜂窝网的通信质量.
A novel optical transmitting antenna based on free-form lens is proposed for visible light cellular network in order to improve the signal quality in the whole coverage area and communication performance of the system. Based on the energy mapping relation and Snell’s law
the optical transmitting antenna based on free-form lens is designed to realize rectangle light receiving areas. Using this optical transmitting antenna
the light signal from light emitting diodes (LED) source can be distributed uniformly in a square area of 0.8 m × 0.8 m. On this basis
a visible light cellular network with the novel optical transmitting antenna is applied
of which the quality of the receiving light signal and system performance are further investigated. It is demonstrated that in a 3 m × 3 m × 3 m room with 16 LEDs using the designed optical antenna
the uniformity of light distribution in the light network converage reaches 0.8. With the elimination of co-channel interference
the average signal to interference and noise ratio (SINR) is 12.6 dB
which can effectively improve the bit error ratio (BER) and ensure the communication performance of visible light cellular networks.
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