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首页> 外文期刊>Journal of Lightwave Technology >Compensation of Sampling Frequency Offset With Digital Interpolation for OFDM-Based Visible Light Communication Systems
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Compensation of Sampling Frequency Offset With Digital Interpolation for OFDM-Based Visible Light Communication Systems

机译:基于OFDM的可见光通信系统的数字插值采样频率偏移补偿

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摘要

Compared with the traditional wireless communication systems, a visible light communication (VLC) system with intensity modulation and direct detection suffers nonlinearity and bandwidth-limitation of practical light emitting diodes (LEDs), which affect the synchronization and transmission performance of an orthogonal frequency division multiplexing signal. To improve the system spectral efficiency for relatively high capacity, an effective scheme for compensation of a sampling frequency offset (SFO) is required to achieve a high-signal-to-interference-plus-noise ratio (SINR). From the practical system design point of view, a fourth-order piecewise polynomial interpolator using the Farrow structure is proposed to digitally compensate SFO for the VLC systems. The LED nonlinearity causes extra high-frequency components in the signal spectrum, which may aggravate the aliasing effect when digital compensation of SFO is applied at the receiver. A theoretical study is, therefore, given to the impact of both the LED nonlinearity and SFO-induced intercarrier interference on the SINR based on a second-order polynomial nonlinear LED model. It is shown that the minimum required oversampling rate for achieving the maximum SINR using the fourth-order interpolator is reduced by approximately 15% and 50% compared to the second- and third-order interpolators, respectively. Both numerical and experimental results indicate that the proposed scheme can be used to effectively compensate a local oscillator frequency offset up to ±1000 ppm at a minimum oversampling rate of 1.3 at the receiver.
机译:与传统的无线通信系统相比,具有强度调制和直接检测功能的可见光通信(VLC)系统存在实际发光二极管(LED)的非线性和带宽限制的问题,这会影响正交频分复用的同步和传输性能信号。为了针对相对较高的容量提高系统频谱效率,需要一种有效的采样频率偏移(SFO)补偿方案,以实现高信号干扰加噪声比(SINR)。从实际系统设计的角度出发,提出了一种使用Farrow结构的四阶分段多项式插值器,以对VLC系统的SFO进行数字补偿。 LED的非线性会在信号频谱中产生额外的高频成分,当在接收器上应用SFO的数字补偿时,这可能会加剧混叠效应。因此,基于二阶多项式非线性LED模型,对LED非线性和SFO引起的载波间干扰对SINR的影响进行了理论研究。结果表明,与二阶和三阶内插器相比,使用四阶内插器实现最大SINR所需的最小过采样率分别降低了约15%和50%。数值和实验结果均表明,所提出的方案可用于以最小的接收机过采样率为1.3来有效补偿高达±1000 ppm的本地振荡器频率偏移。

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