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Bandwidth efficient multi-level MPPM encoding decoding algorithms for joint brightness-rate control in VLC systems

机译:用于VLC系统中联合亮度速率控制的高效带宽高效多级MPPM编码解码算法

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A number of binary modulation schemes are proposed for LED based Visible Light Communication (VLC) systems to jointly achieve data transmission and brightness control. These binary modulation based solutions are spectrally inefficient because they consider the LED light source as single device. We observe that most of the commercial LED lights use more than one LED per light source and the possibility of individual current control of these LEDs would provide better brightness control resolution as well as higher data transmission rates. To achieve this we propose multi-level multi-pulse position modulation block coding scheme to jointly control multiple LEDs providing flicker free VLC link. The brightness level of the light source is controlled based on the number of LEDs switched on simultaneously. New algorithms are developed for symbol encoding/decoding as well as to enumerate the maximum number of symbols that can be encoded for the selected brightness level and the number of levels. Improvement in spectral efficiency is analyzed and compared with the contending binary modulation schemes.
机译:针对基于LED的可见光通信(VLC)系统,提出了许多二进制调制方案,以共同实现数据传输和亮度控制。这些基于二进制调制的解决方案在频谱上效率低下,因为它们将LED光源视为单个设备。我们观察到,大多数商用LED灯每个光源使用一个以上的LED,并且对这些LED进行单独电流控制的可能性将提供更好的亮度控制分辨率以及更高的数据传输速率。为了实现这一点,我们提出了多级多脉冲位置调制块编码方案,以共同控制提供无闪烁VLC链接的多个LED。光源的亮度级别是根据同时打开的LED数量来控制的。开发了用于符号编码/解码的新算法,并枚举了针对所选亮度级别和级别数量可以编码的最大符号数量。分析了频谱效率的提高,并将其与竞争性二进制调制方案进行了比较。

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