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Journal ArticleDOI

A new type of wave digital filter

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TLDR
In this paper, a wave digital filter derived from doubly terminated LC-ladder networks is proposed, which replaces each series or shunt arm element of the ladder by its equivalent digital two-port.
Abstract
This paper proposes a new wave digital filter derived from doubly terminated LC-ladder networks by replacing each series or shunt arm element of the ladder by its equivalent digital two-port. It is shown that such two-ports may be cascaded without the use of adapters defined by Fettweis ( 1 ). A number of realizations of the wave digital two-ports, which are canonic with respect to both multipliers and delays, have been obtained. Also a realization which is canonic with respect to multipliers only is given and an example considered using this realization. The sensitivity of this filter with respect to the multiplier coefficient changes due to finite word length is compared with the conventional cascaded digital filter and also the one proposed by Renner and Gupta. It is found that the proposed filter appears to be a more desirable form of implementation than the conventional cascade form and comparable to that of Renner and Gupta ( 2 ).

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Citations
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Journal ArticleDOI

Wave digital filters: Theory and practice

TL;DR: Wave digital filters (WDFs) as discussed by the authors are modeled after classical filters, preferably in lattice or ladder configurations or generalizations thereof, and have very good properties concerning coefficient accuracy requirements, dynamic range, and especially all aspects of stability under finite-arithmetic conditions.
Journal ArticleDOI

A new approach to the realization of low-sensitivity IIR digital filters

TL;DR: A new implementation of an IIR digital filter transfer function is presented that is structurally passive and, hence, has extremely low pass-band sensitivity.
Journal ArticleDOI

Design of doubly-complementary IIR digital filters using a single complex allpass filter, with multirate applications

TL;DR: It is shown that a large class of real-coefficient doubly-complementary IIR transfer function pairs can be implemented by means of a single complex allpass filter.
Journal ArticleDOI

Low passband sensitivity digital filters: A generalized viewpoint and synthesis procedures

TL;DR: A new theory is developed for low-sensitivity discrete-time filter structures that cover special cases such as wave digital filters, which are derived from continuous-time networks, and digital lattice structures, which is closely related to unit elements of distributed network theory.
Journal ArticleDOI

A unified approach to orthogonal digital filters and wave digital filters, based on LBR two-pair extraction

TL;DR: In this article, the LBR-extraction approach is extended in order to derive wave digital filters and several orthogonal digital filters in a unified manner, which can therefore be implemented based on a simple building block, namely, the "planar rotation" operator.
References
More filters
Journal ArticleDOI

Digital filters with true ladder configuration

TL;DR: In this paper, it was shown that any LC-ladder filter can be translated into a corresponding digital structure requiring only as many multipliers as corresponds to the number of degrees of freedom in the original LC-filter.
Journal ArticleDOI

Digital ladder networks

TL;DR: In this paper, a method of characterization of two-input-two-output digital filters is presented, which is particularly suitable for the analysis of cascaded networks of this type, leading to a new realization method of ladder-type digital filters.
Journal ArticleDOI

On the design of wave digital filters with low sensitivity properties

TL;DR: The exact nature of the relationship between the wave-digital-filter structure and the MAP networks and how the sensitivity property arises is examined, which permits implementation of the digital structure with a lower coefficient word length than that possible with the conventional structures.
Journal ArticleDOI

Reciprocity, inter‐reciprocity, and transposition in wave digital filters

TL;DR: In this article, basic theorems for wave digital filters are derived, which have a similarity to the difference form of Tellegen's theorem for classical networks, and the properties of reciprocity and inter-reciprocity are defined.
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