2004•Unpublished venueRequires access

Generalizations of adjoint networks technique for RLC interconnects model-order reductions

Herng-Jer Lee, Chia‐Chi Chu, Wu‐Shiung Feng

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Abstract

The adjoint network reduction technique has been shown to reduce 50% of the computational complexity of constructing the congruence transformation matrix. The method was suitable for analyzing the special multi-port driving-point impedance of RLC interconnect circuits. This paper extends this technique for the general circumstance of RLC interconnects. Comparative studies among the conventional methods and the proposed method are also investigated. Experimental results demonstrate the accuracy and efficiency of the proposal method.

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What this paper is about

The adjoint network reduction technique has been shown to reduce 50% of the computational complexity of constructing the congruence transformation matrix. The method was suitable for analyzing the special multi-port driving-point impedance of RLC interconnect circuits. This paper extends this technique for the general circumstance of RLC interconnects. Comparative studies among the conventional methods and the proposed method are also investigated. Experimental results demonstrate the accuracy and efficiency of the proposal method.

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Available abstract

The adjoint network reduction technique has been shown to reduce 50% of the computational complexity of constructing the congruence transformation matrix. The method was suitable for analyzing the special multi-port driving-point impedance of RLC interconnect circuits. This paper extends this technique for the general circumstance of RLC interconnects. Comparative studies among the conventional methods and the proposed method are also investigated. Experimental results demonstrate the accuracy and efficiency of the proposal method.

Key concepts: RLC circuit, Model order reduction, Impedance parameters, Electrical impedance, Reduction (mathematics), Interconnection, Computer science, Network analysis

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