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Design of recursive variable digital filters with theoretically guaranteed stability

机译:具有理论上保证的稳定性的递归可变数字滤波器的设计

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Stability is one of the most concerned issues in designing a recursive variable digital filter (VDF). This is because the coefficients of a recursive VDF constantly vary in the tuning process, and updating the coefficients may incur instability. Thus, an appropriate measure needs to be taken for ensuring its stability. This paper presents a new coefficient transformation (CT) method for transforming the coefficients of a recursive transfer-function denominator into a set of new coefficients. From the viewpoint of conventional constant-coefficient filter (constant filter) design, the new coefficients can take arbitrary values without incurring instability. For designing a stable VDF, we apply this CT to the variable case and approximate each transformed coefficient as a distinct polynomial in the tuning parameter. Thus, we can change the filter coefficients by changing the value of the tuning parameter, and thus tune the magnitude response. Thanks to the proposed CT, updating the filter coefficients will never incur instability. This is the core part of the CT-based design approach. In this paper, we utilise a weighting function to ignore the transition-band errors and thus enhance the design accuracy of important frequency bands (passband and stopband). Moreover, the polynomials use different degrees so as to reduce the VDF complexity. Two design examples (lowpass VDF and bandpass VDF) are provided for verifying the design accuracy and checking the stability.
机译:稳定性是设计递归可变数字滤波器(VDF)时最关注的问题之一。这是因为递归VDF的系数在调整过程中不断变化,更新系数可能会导致不稳定。因此,需要采取适当的措施以确保其稳定性。本文提出了一种新的系数变换(CT)方法,用于将递归传递函数分母的系数转换为一组新系数。从常规的恒定系数滤波器(恒定滤波器)设计的角度来看,新系数可以取任意值而不会引起不稳定。为了设计稳定的VDF,我们将此CT应用于可变情况,并将每个变换系数近似为调整参数中的不同多项式。因此,我们可以通过更改调整参数的值来更改滤波器系数,从而调整幅度响应。由于提出了CT,更新滤波器系数将永远不会造成不稳定。这是基于CT的设计方法的核心部分。在本文中,我们利用加权函数来忽略过渡带误差,从而提高了重要频带(通带和阻带)的设计精度。而且,多项式使用不同的度数以降低VDF的复杂度。提供两个设计示例(低通VDF和带通VDF)来验证设计精度和检查稳定性。

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