空气-水界面高效鲁棒可见光通信的自适应DPPM

M. Islam, M. Younis
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引用次数: 7

摘要

光功率的稀缺性是水下可见光通信面临的主要挑战。由于光在空气-水界面的反射,使得通过空气-水界面的通信变得最差。差分脉冲位置调制(DPPM)是一种功率高效调制技术。在L- dppm中,$M=log_{2}L$输入数据块被映射到仅包含一个芯片的L个不同波形中的一个。DPPM包的大小是可变的,取决于输入数据和L的值,这使得错误检测非常具有挑战性。在本文中,我们提出了一种帧结构,可以有效地在DPPM的各种符号长度L的数据包中进行错误检测。我们还提出了一种使用这种帧结构的算法,可以有效地检测数据包错误,并自适应地改变L的值以获得最佳的功率效率,同时满足一定的数据包错误率(PER)。我们将我们提出的协议命名为自适应差分脉冲位置调制(ADPPM)。通过仿真研究了不同信噪比下的比特率和PER。给出了ADPPM与固定L的OOK、DPPM的比较。
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An Adaptive DPPM for Efficient and Robust Visible Light Communication Across the Air-Water Interface
The scarcity of the optical power is the main challenge for underwater visible light communication. It becomes worst for communication across the air-water interface because of the reflection of light from the air-water interface. Differential pulse position modulation (DPPM) is one of the power efficient modulation techniques. In L-DPPM a block of $M=log_{2}L$ input data is mapped into one of the L distinct waveforms containing only one on’ chip. The size of the DPPM packet is variable and depends on the value of input data and L, which makes error detection quite challenging. In this paper, we propose a frame structure that efficiently enables error detection within a packet for various symbol length, L, of DPPM. We also propose an algorithm using such a frame structure to enable effective detection of packet errors and for adaptively changing the value of L for optimal power efficiency while meeting a certain bound on the packet error rate (PER). We have named our proposed protocol as adaptive differential pulse position modulation (ADPPM). The Bit rate and PER have been studied for different signal-to-noise ratio (SNR) through simulation. A comparison between ADPPM and OOK, DPPM with fixed L is provided.
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