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Modeling Circuits With Arbitrary Topologies and Active Linear Multiports Using Wave Digital Filters

机译:使用波数字滤波器对具有任意拓扑和有源线性多端口的电路建模

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The wave digital filter (WDF) technique derives digital filters from analog prototypes that classically have been restricted to passive circuits with series/parallel topologies. Since most audio circuits contain active elements (e.g., op-amps) and complex topologies, WDFs have only had limited use in virtual analog modeling. In this paper, we extend the WDF approach to accommodate the unbounded class of non-series/parallel junctions which may absorb linear multiports. We present four modified-nodal-analysis-based scattering matrix derivations for these junctions, using parametric waves with voltage, power, and current waves as particular cases. Three derivations afford implementations whose cost in multiplies are lower than multiplying by the scattering matrix. Negative port resistances may be needed in WDF modeling of active circuits, restricting the WDF to voltage or current waves. We propose two techniques for localizing this restriction. Case studies on the Baxandall tone circuit and a “Frequency Booster” guitar pedal demonstrate the proposed techniques in action.
机译:波动数字滤波器(WDF)技术从模拟原型派生出数字滤波器,这些原型通常局限于具有串联/并联拓扑的无源电路。由于大多数音频电路包含有源元件(例如运算放大器)和复杂的拓扑,因此WDF仅在虚拟模拟建模中使用有限。在本文中,我们扩展了WDF方法,以适应可能吸收线性多端口的无界类非串联/并联结。对于特殊的情况,我们使用电压,功率和电流波的参数波,针对这些结点提出了四种基于改进的节点分析的散射矩阵推导。三个推导提供了实现,其实现的成本要比乘以散射矩阵的成本低。在有源电路的WDF建模中可能需要使用负端口电阻,从而将WDF限制为电压或电流波。我们提出了两种本地化此限制的技术。在Baxandall音调电路和“ Frequency Booster”吉他踏板上的案例研究证明了所提出的技术在实际中的应用。

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