OFDM visible light communication transmitter based on LED array

来源 :ChineseOpticsLetters | 被引量 : 0次 | 上传用户:xueyingnn
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
In this letter, we present a scheme generating OFDM signals in optical domain instead of electrical domain by transmitting subcarrier signals with multiple LEDs. According to the simulation, this scheme can effectively eliminate signal degradation caused by the high peak-to-average power ratio of OFDM signals in traditional transmitter. Computational complexity in digital part of the transmitter can be reduced by using look-up table. Receiver will stay unchanged.
其他文献
All-optical logic gates including AND, XOR, and NOT gates, as well as a half-adder, are realized based on two-dimensional lithium niobate photonic crystal (PhC) circuits with PhC micro-cavities. The proposed all-optical devices have an extinction ratio as
We report the fast lateral photovoltaic effect in pure congruent LiNbO3 crystal induced by pulsed laser and continuous wave laser with wavelengths of 355, 532, and 1064 nm. A typical ultrafast photovoltage can be observed on the surface perpendicular to t
期刊
为了解决粗大调整误差下大口径光学平面镜的子孔径拼接检测问题,基于迭代梯度算法,建立了一套合理的拼接算法和数学模型,同时编制了拼接程序。结合工程实例,利用F600mm干涉仪实现了对F800mm平面镜的拼接测量。检测中,基于靶标对各子孔径实现对准,拼接所得面形光滑连续无狭缝。实验结果表明,利用迭代梯度算法可以高精度地完成粗大调整误差下大口径平面镜的拼接检测。
期刊
The nitrogen-vacancy (N-V) center in diamond is a widely used platform for quantum information processing and sensing. The electron-spin state of the N-V center could be initialized, read out optically, and manipulated by resonate microwave fields. In thi
期刊
针对工业机器人和形貌传感器组成的三维形貌机器人测量系统精度低的问题,提出一种基于室内全局定位系统(iGPS)的三维形貌复杂曲面测量系统,并介绍了该测量系统的总体设计方案,建立了相应的数学模型。对长度测量精度和重复测量精度进行实验验证,结果表明,此测量系统在大型复杂曲面形貌测量中具有较高的精度及可靠性。对包含双拱形曲面的大尺寸工件进行形貌测量,测量结果验证了此测量系统的可行性。
为了消除激光吸收光谱信号中噪声对分析结果的影响, 提出了基于小波变换的阈值去噪方法。利用气体分子的直接吸收光谱信号,结合MATLAB软件进行仿真实验, 深入对比分析了阈值方法、分解层数和小波基函数类型对降噪效果的影响,最后将获得的最佳滤波参数用于人体呼出气体的光谱信号分析中。结果表明, 小波变换去噪算法模型对呼出气体吸收光谱信号的去噪效果良好。通过选择其他波段的可调谐激光光源,即可实现对其他呼出气体成分的实时分析;量子级联激光光谱系统可广泛应用于呼出气体诊断等领域。
本文采用振荡-放大装置测量了铜蒸气激光5106谱线的增益和饱和能量密度,它们分别为0.2cm~(-1)和22.3μJcm~(-2).并对实验结果进行了讨论.
期刊