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Joint Rate-Brightness Control using Variable Rate MPPM for LED Based Visible Light Communication Systems

机译:基于可变速率MPPM的基于LED的可见光通信系统的联合速率-亮度控制

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摘要

LED based lighting systems provide an opportunity for data transmission in addition to their traditional use as source of illumination. Brightness control is required to achieve either desired level of illumination or to achieve energy conservation. Conventionally, simultaneous data transmission as well as brightness control is achieved using two different modulation schemes. Either pulse width modulation or pulse amplitude modulation is used for brightness control and some variants of pulse position modulation are employed for data transmission. The need for two different modulation schemes, to meet the dual objective, makes the system design complex. In this paper we propose variable-rate multi-pulse-position-modulation (VR-MPPM), for LED based visible light communication system, to achieve joint brightness control and data transmission. The proposed approach eradicates the need for either pulse width modulation or pulse amplitude modulation and still achieves the brightness control. Encoder and decoder algorithms for VR-MPPM realization are developed and are implemented on the hardware testbed. Experimental results revealing the effect of brightness level variation on symbol error rate are also provided. Existence of an underlying trade-off between achievable resolution for brightness control and the corresponding successful data transmission rate is recognized. To exploit this trade-off, an optimization problem is formulated.
机译:基于LED的照明系统除了传统上用作照明源之外,还提供了数据传输的机会。需要亮度控制以达到所需的照明水平或实现节能。常规地,使用两种不同的调制方案来实现同时的数据传输以及亮度控制。脉冲宽度调制或脉冲幅度调制都用于亮度控制,而脉冲位置调制的某些变体则用于数据传输。为了满足双重目标,需要两种不同的调制方案,使系统设计变得复杂。本文针对基于LED的可见光通信系统提出了可变速率多脉冲位置调制(VR-MPPM),以实现联合亮度控制和数据传输。所提出的方法消除了对脉冲宽度调制或脉冲幅度调制的需求,并且仍然实现了亮度控制。开发了用于VR-MPPM实现的编码器和解码器算法,并在硬件测试平台上实现了该算法。实验结果还揭示了亮度水平变化对符号错误率的影响。可以识别出亮度控制可达到的分辨率与相应的成功数据传输速率之间存在潜在的权衡。为了利用这种折衷,提出了优化问题。

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