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Convergence and performance comparison of three different structures of bootstrap blind adaptive algorithm for multisignal co-channel separation

机译:三种不同结构对多功能信道分离的三种不同结构的收敛性和性能比较

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The authors extend the previously reported three structures of bootstrap blind adaptive separators to the multisignal channel case. They suggest a recursive weight updating algorithm for the three structures: power-power, correlator-correlator, and power-correlator. The optimum weights for these separators were found analytically in the absence of noise. The signal separation process was shown via simulation by the output learning curve. It was shown that the different bootstrap separators converge to their steady states almost with the same speed for a two or three signal channel. The steady-state interference residues of the three separators are different, lowest for power-power and highest for correlator-correlator. The use of equalization (automatic gain control) at the output of these structures improves the depth of interference cancellation dramatically.
机译:作者将先前报告的三个引导盲自适应分离器的三个结构延伸到多功能通道箱。他们建议三种结构的递归权重更新算法:电源,相关器 - 相关器和电源相关器。在没有噪声的情况下,分析发现这些分离器的最佳重量。通过输出学习曲线通过模拟示出了信号分离过程。结果表明,不同的引导分离器几乎以相同的速度收敛到它们的稳态,对于两个或三个信号通道。三个隔膜的稳态干涉残留物不同,功率功率最低,以及相关器 - 相关器的最高。在这些结构的输出时使用均衡(自动增益控制)可显着提高干扰消除深度。

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