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An enhanced multi-channel bacterial foraging optimization algorithm for MIMO communication system

机译:MIMO通信系统中一种改进的多通道细菌觅食优化算法

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摘要

Channel estimation and optimisation are the main challenging tasks in Multi Input Multi Output (MIMO) wireless communication systems. In this work, a Multi-Channel Bacterial Foraging Optimization Algorithm approach is proposed for the selection of antenna in a transmission area. The main advantage of this method is, it reduces the loss of bandwidth during data transmission effectively. Here, we considered the channel estimation and optimisation for improving the transmission speed and reducing the unused bandwidth. Initially, the message is given to the input of the communication system. Then, the symbol mapping process is performed for converting the message into signals. It will be encoded based on the space-time encoding technique. Here, the single signal is divided into multiple signals and it will be given to the input of space-time precoder. Hence, the multiplexing is applied to transmission channel estimation. In this paper, the Rayleigh channel is selected based on the bandwidth range. This is the Gaussian distribution type channel. Then, the demultiplexing is applied on the obtained signal that is the reverse function of multiplexing, which splits the combined signal arriving from a medium into the original information signal. Furthermore, the long-term evolution technique is used for scheduling the time to channels during transmission. Here, the hidden Markov model technique is employed to predict the status information of the channel. Finally, the signals are decoded and the reconstructed signal is obtained after performing the scheduling process. The experimental results evaluate the performance of the proposed MIMO communication system in terms of bit error rate, mean squared error, average throughput, outage capacity and signal to interference noise ratio.
机译:信道估计和优化是多输入多输出(MIMO)无线通信系统中的主要挑战性任务。在这项工作中,提出了一种多通道细菌觅食优化算法的方法来选择传输区域中的天线。这种方法的主要优点是,它有效地减少了数据传输期间的带宽损失。在这里,我们考虑了信道估计和优化,以提高传输速度并减少未使用的带宽。最初,该消息被提供给通信系统的输入。然后,执行符号映射过程以将消息转换为信号。将基于空时编码技术对其进行编码。在此,将单个信号分为多个信号,并将其提供给时空预编码器的输入。因此,复用被应用于传输信道估计。本文基于带宽范围选择瑞利信道。这是高斯分布类型通道。然后,对所获得的信号进行多路分解,该信号是多路复用的逆函数,它将从介质到达的组合信号分离为原始信息信号。此外,长期演进技术用于在传输期间调度到信道的时间。这里,采用隐马尔可夫模型技术来预测信道的状态信息。最后,在执行调度过程之后,对信号进行解码并获得重建的信号。实验结果从误码率,均方误差,平均吞吐量,中断容量和信噪比等方面评估了所提出的MIMO通信系统的性能。

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