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An adaptive scaling and biasing scheme for OFDM-based visible light communication systems

机译:用于基于OFDm的可见光通信系统的自适应缩放和偏置方案

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摘要

Orthogonal frequency-division multiplexing (OFDM) has been widely used in visible light communication systems to achieve high-rate data transmission. Due to the nonlinear transfer characteristics of light emitting diodes (LEDs) and owing the high peak-to-averagepower ratio of OFDM signals, the transmitted signal has to be scaled and biased before modulating the LEDs. In this contribution, an adaptive scaling and biasing scheme is proposed for OFDM based visible light communication systems, which fully exploits the dynamic range of the LEDs and improves the achievable system performance. Specifically, the proposed scheme calculates near-optimal scaling and biasing factors for each specific OFDM symbol according to the distribution of the signals, which strikes an attractive trade-off between the effective signal power and the clipping distortion power. Our simulation results demonstrate that the proposed scheme significantly improves the performance without changing the LED’s emitted power, while maintaining the same receiver structure.
机译:正交频分复用(OFDM)已广泛用于可见光通信系统中,以实现高速率数据传输。由于发光二极管(LED)的非线性传输特性,并且由于OFDM信号的峰均功率比很高,因此在调制LED之前,必须对传输的信号进行缩放和偏置。在此贡献中,针对基于OFDM的可见光通信系统提出了一种自适应缩放和偏置方案,该方案充分利用了LED的动态范围,并改善了可实现的系统性能。具体地,所提出的方案根据信号的分布为每个特定的OFDM符号计算接近最优的缩放比例和偏置因子,这在有效信号功率和削波失真功率之间进行了有吸引力的折衷。我们的仿真结果表明,所提出的方案可以在不改变LED发射功率的情况下显着提高性能,同时保持相同的接收器结构。

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