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Hybrid knowledge-based system/multilayer perceptron approach for the post-assembly tuning of electronic filters

机译:基于混合知识的系统/多层感知器方法用于电子滤波器的组装后调整

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A generic approach to the development of a hybrid knowledge-based system (KBS)-multilayer perceptron (MLP) system for the post-assembly tuning of filters is described. This KBS uses rules derived using the Iterative Dichotomiser 3 to advise upon which filter component to adjust and in which direction. The problem is divided into a number of search spaces corresponding to three levels of decision, and numerical attribute values are represented by numerical ranges with logical names. How far to turn is determined by a set of MLPs, trained on the amplitude responses of a typical filter. It is established that the task requires a hybrid system and cannot be satisfactorily performed by either a KBS or MLP alone. When applied to the amplitude response tuning of four-pole asymmetric bandpass crystal filters three adjustments are typically required, on average, to tune the stopbands of 79% of those tested. The lengthy development times needed per filter type of 1-2 weeks are compensated for as the task is within the capabilities of a trained operator.
机译:描述了用于滤波器的组装后调整的,基于混合知识的系统(KBS)-多层感知器(MLP)系统的开发的通用方法。此KBS使用使用迭代二分法器3派生的规则来建议要调整的滤波器组件和方向。该问题分为与三个决策级别相对应的多个搜索空间,并且数值属性值由带有逻辑名称的数值范围表示。转向的距离由一组MLP决定,这些MLP经过典型滤波器的幅度响应训练。已经确定该任务需要混合系统,并且不能仅由KBS或MLP令人满意地执行。当将其应用于四极非对称带通晶体滤波器的幅度响应调谐时,通常通常需要进行三项调整,以调整79%的阻带。由于该任务在受过培训的操作人员的能力范围内,因此可以补偿每种过滤器类型所需的漫长的开发时间1-2周。

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