2003Unpublished venueRequires access

A canonical realization form of multi-input multi-output two-dimensional systems

Atsushi Kawakami

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Abstract

Proposes a method for obtaining a canonical form of the state-space realization of two-dimensional transfer function matrices. This canonical form contains arbitrary constants, and by designating them properly, coefficients can be designated variously. With these free parameters, the flexibility of circuit design can be extended, so that it is effective in low-sensitivity realization. Conditions for the existence of the canonical realization are obtained.>

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Proposes a method for obtaining a canonical form of the state-space realization of two-dimensional transfer function matrices. This canonical form contains arbitrary constants, and by designating them properly, coefficients can be designated variously. With these free parameters, the flexibility of circuit design can be extended, so that it is effective in low-sensitivity realization. Conditions for the existence of the canonical realization are obtained.>

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Available abstract

Proposes a method for obtaining a canonical form of the state-space realization of two-dimensional transfer function matrices. This canonical form contains arbitrary constants, and by designating them properly, coefficients can be designated variously. With these free parameters, the flexibility of circuit design can be extended, so that it is effective in low-sensitivity realization. Conditions for the existence of the canonical realization are obtained.>

Key concepts: Realization (probability), Canonical form, Flexibility (engineering), Minimal realization, Transfer function, Function (biology), Computer science, Topology (electrical circuits)

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