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Passive interconnect reduction algorithm for distributed/measured networks
DOI:10.1109/82.839664.png)
Abstract
En 中文
This paper presents an efficient algorithm for transient simulation of multiport distributed interconnect networks in the presence of nonlinear subcircuits, The proposed multilevel multipoint model-reduction algorithm combines the merits of recently proposed Krylov-space techniques and block complex frequency-hopping to generate compact time-domain macromodels, The method overcomes the difficulty of slower transient simulation caused by redundant poles in reduced-order models obtained by Krylov-space methods. Also, it provides an efficient means to translate Krylov-space-based reduced models of distributed/measured networks with frequency-dependent descriptions into time-domain macromodels, In addition, a strategy to preserve the passivity of macromodels during multilevel reduction is presented. An important advantage of the proposed algorithm is that it can directly handle distributed stamps such as transmission lines described by Telegrapher's equations, frequency-dependent parameters, full-wave, and measured subnetworks.
Keywords:
circuit simulation
complex frequency hopping
distributed networks
high-speed interconnects
Krylov-space techniques
model reduction
moment-matching techniques
transmission lines
Journal
I
IF:
4.9
Papers:
8.8K
Citations:
2.5W
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