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Advantage of CAP Signaling for VLC Systems Under Non-Linear LED Characteristics

机译:非线性LED特性下VLC系统的CAP信令优势

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We consider the use of carrier-less amplitude and phase (CAP) modulation together with frequency-domain equalization (FDE)for high-speed data transmission in indoor visible-light communication systems and investigate the suitability of this transmission scheme under non-linear LED characteristics, which has to be dealt with in practical implementations of these networks. We focus on the non-linear characteristic of the LED within its dynamic-range, while neglecting the effect of upper signal clipping which has been subject of extensive research so far. The LED is modeled by the Hammerstein model, which consists of a linear time-invariant system followed by a memoryless non-linear part. Through Monte-Carlo simulations we show that, for a given spectral efficiency, the CAP-FDE scheme suffers less from LED non-linearity in terms of electrical power, as compared with the classical DC-biased optical orthogonal-frequency-division-multiplexing.
机译:我们考虑将无载波幅度和相位(CAP)调制与频域均衡(FDE)一起用于室内可见光通信系统中的高速数据传输,并研究这种传输方案在非线性LED下的适用性特性,这些特性必须在这些网络的实际实现中处理。我们专注于LED在其动态范围内的非线性特性,而忽略了上信号削波的影响,迄今为止,该信号一直是广泛研究的主题。 LED由Hammerstein模型建模,该模型由线性时不变系统和紧随其后的无记忆非线性部分组成。通过蒙特卡洛仿真,我们表明,与传统的DC偏置光学正交频分多路复用相比,对于给定的频谱效率,CAP-FDE方案在电功率方面受LED非线性影响较小。

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