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Adaptive noise cancellation based on beehive pattern evolutionary digital filter

机译:基于蜂巢模式进化数字滤波器的自适应噪声消除

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Evolutionary digital filtering (EDF) exhibits the advantage of avoiding the local optimum problem by using cloning and mating searching rules in an adaptive noise cancellation system. However, convergence performance is restricted by the large population of individuals and the low level of information communication among them. The special beehive structure enables the individuals on neighbour beehive nodes to communicate with each other and thus enhance the information spread and random search ability of the algorithm. By introducing the beehive pattern evolutionary rules into the original EDF, this paper proposes an improved beehive pattern evolutionary digital filter (BP-EDF) to overcome the defects of the original EDF. In the proposed algorithm, a new evolutionary rule which combines competing cloning, complete cloning and assistance mating methods is constructed to enable the individuals distributed on the beehive to communicate with their neighbours. Simulation results are used to demonstrate the improved performance of the proposed algorithm in terms of convergence speed to the global optimum compared with the original methods. Experimental results also verify the effectiveness of the proposed algorithm in extracting feature signals that are contaminated by significant amounts of noise during the fault diagnosis task.
机译:进化数字滤波(EDF)的优势在于,通过在自适应噪声消除系统中使用克隆和匹配搜索规则来避免局部最优问题。但是,聚合性能受到大量个人以及他们之间信息交流水平低的限制。特殊的蜂巢结构使相邻蜂巢节点上的个体能够相互通信,从而增强了算法的信息传播和随机搜索能力。通过将蜂巢模式进化规则引入原始EDF中,提出了一种改进的蜂巢模式进化数字滤波器(BP-EDF),以克服原始EDF的缺陷。在提出的算法中,构造了一种新的进化规则,该规则结合了竞争性克隆,完全克隆和辅助交配方法,以使分布在蜂箱上的个体能够与其邻居进行通信。仿真结果表明,与原始方法相比,该算法在收敛速度达到全局最优方面具有改进的性能。实验结果还验证了该算法在故障诊断任务期间提取被大量噪声污染的特征信号中的有效性。

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