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Performance studies of MIMO based DCO-OFDM in underwater wireless optical communication systems

机译:基于MIMO基于DCO-OFDM在水下无线光通信系统中的性能研究

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The research in underwater communication system is focused towards wireless networks in view of recent developments in wireless technology and increasing need for deep sea data mining. The underwater wireless optical communication (UWOC) have more advantages for short-range wireless links due to very high bandwidth and data rate than acoustic communication. Although UWOC offers high capacity links at low latencies, they suffer from limited communication range due to various distinctive characteristics of underwater channel. A major degrading effect associated with the underwater channel is turbulence-induced fading. To mitigate this fading and to extend the viable communication range, spatial multipath diversity techniques can be adopted over UWOC links. The proposed work evaluates the performance of a multicarrier modulation scheme, i.e., MIMO based DC biased Optical Orthogonal Frequency Division Multiplexing (DCO-OFDM) for underwater wireless optical channel. The simulation of MIMO-DC biased optical OFDM technique employing spatial diversity in underwater optical communication is a novel approach towards the determination of an optimal modulation technique for underwater optical wireless channels. The performance is evaluated based on the various parameters such as Signal to Interference plus Noise Ratio (SINR), Throughput and Bit Error Rate (BER). A simple experiment is conducted to demonstrate the BER performance assessment for different link distance of 0.45 m and 1.5 m with different transmitter and receiver configurations (SIMO and MIMO) for both clear water and coastal water using MIMO DCO OFDM technique.
机译:鉴于无线技术的最新发展以及对深海数据挖掘的越来越需要,鉴于近期的深海数据挖掘需求,对无线网络的研究专注于无线网络。由于非常高的带宽和数据速率,水下无线光通信(UWOC)对短距离无线链路具有比声学通信的高度和数据速率更高。虽然UWOC在低延迟处提供高容量的环节,但由于水下渠道的各种独特特征,它们遭受了有限的通信范围。与水下通道相关的重大降解效果是湍流诱导的衰落。为了减轻这种衰落并扩展可行的通信范围,可以通过UWOC链路采用空间多路径分集技术。所提出的工作评估了用于水下无线光学信道的MIMO基于基于DC偏置光正交频分复用(DCO-OFDM)的多载波调制方案的性能。水下光通信中采用空间分集的MIMO-DC偏置光学OFDM技术的模拟是朝向水下光学无线通道确定最佳调制技术的新方法。基于各种参数评估性能,例如信号与干扰加噪声比(SINR),吞吐量和误码率(BER)。进行了一个简单的实验,以证明使用MIMO DCO OFDM技术的不同发射器和接收器配置(SIMO和MIMO)的不同发射器和接收器配置(SIMO和MIMO)的不同连杆距离。

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