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A new method for solving broadband matching problems

机译:解决宽带匹配问题的新方法

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A new method for computing the component values of LC ladder equalizers for broadband matching purposes is presented. The method is inspired by the theory of recursive identification and results in a very compact algorithm. As in the usual real frequency technique, the load and generator impedances have to be known only at a small number of frequencies. Starting from an assumed topology for the equalizer with random values for the components, the equalizer components are iteratively built with a recursive identification algorithm, in order to satisfy asymptotically a least mean squares criterion. In contrast to the usual deterministic least mean squares algorithms used in existing equalization techniques a stochastic algorithm has been developed. This stochastic treatment leads to very simple equalization techniques. On the basis of the solution found with the stochastic recursive identification algorithm a random search of a limited region of the component hyperspace is initiated in order to refine the solution. The paper includes many examples in which the above method has been successfully applied. As a special feature, the method has been applied to equalizers made up of series and parallel resonant circuits.
机译:提出了一种用于宽带匹配的计算LC梯形均衡器分量值的新方法。该方法受到递归识别理论的启发,并产生了非常紧凑的算法。与通常的实频技术一样,必须仅在少量频率下才知道负载阻抗和发电机阻抗。从均衡器的假定拓扑开始,并为各个分量提供随机值,然后使用递归识别算法迭代构建均衡器分量,以渐近满足最小均方准则。与在现有均衡技术中使用的通常的确定性最小均方算法相反,已经开发了一种随机算法。这种随机处理导致非常简单的均衡技术。基于使用随机递归识别算法找到的解决方案,开始对组件超空间的有限区域进行随机搜索,以完善解决方案。本文包含了许多成功应用上述方法的示例。作为一个特殊功能,该方法已应用于由串联和并联谐振电路组成的均衡器。

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