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首页> 外文期刊>IEEE Transactions on Circuits and Systems >Design of switched-capacitor and wave digital filters with linear phase and high amplitude selectivity
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Design of switched-capacitor and wave digital filters with linear phase and high amplitude selectivity

机译:具有线性相位和高幅度选择性的开关电容器和波动数字滤波器的设计

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摘要

A design technique, and the associated algorithm, are presented for selective linear-phase low-pass and high-pass sampled data filters. The resulting filter transfer functions are particularly suitable for realization as leap-frog lossless discrete integrator (LDI) switched-capacitor structures and also in wave digital form. Due to the specific form of the transfer function, the filters generally have no lumped-element counterparts. The technique leads to an optimum compromise between amplitude selectively and passband phase linearity under the restriction of a prescribed form of the transfer function, and allows the use of finite j omega -axis zeros of transmission for achieving high amplitude selectivity. The transfer functions presented are also capable of realization as distributed microwave filters, but these require the use of coupled-wire networks in the form of distributed Brune sections, if j omega -axis zeros of transmission are introduced.
机译:提出了一种用于选择性线性相位低通和高通采样数据滤波器的设计技术和相关算法。所产生的滤波器传递函数特别适合实现为跳越式无损离散积分器(LDI)开关电容器结构,并且也以波形数字形式实现。由于传递函数的特定形式,滤波器通常没有集总元件。该技术导致在传递函数的规定形式的限制下,选择性地在幅度和通带相位线性之间取得最佳折衷,并允许使用有限的ω轴零轴传输来实现高幅度选择性。提出的传递函数也能够实现为分布式微波滤波器,但是如果引入了j轴的零传输,则这些函数需要使用分布式Brune部分形式的耦合网络。

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