SYSYJul 7

FlexRC: A Flexible Multi-Point Model Order Reduction Method for Many-Port RC Networks

arXiv:2607.059348.2
Predicted impact top 20% in SY · last 90 daysOriginality Incremental advance
AI Analysis

For circuit designers needing efficient post-layout simulation of many-port RC networks, FlexRC offers a more flexible and faster reduction method than prior approaches.

FlexRC introduces a flexible multi-point model order reduction method for many-port RC networks that overcomes limitations of existing elimination-based methods. It achieves faster reduction and transient simulation times on industrial and IBM power-grid examples.

Efficient model order reduction for many-port resistor-capacitor (RC) networks is essential in post-layout circuit simulation. Existing high-accuracy elimination-based methods have certain limitations, such as fixed frequency points, large reduced-order models, or high reduction cost. This paper proposes FlexRC, a flexible multi-point model order reduction method for many-port RC networks. FlexRC starts from the same elimination step as previous methods, and then constructs a nonorthogonal projection basis by a modified block rational Arnoldi process to generate a sparse banded reduced model. FlexRC features three adjustable components: user-specified frequency points, a tolerance-controlled port-reduction technique for the internal subsystem, and an optional sparsity-control strategy. We discuss passivity under port-reduction perturbations, analyze moment matching, and provide a conservative error estimate for port reduction. Numerical experiments on industrial RC examples and IBM power-grid examples demonstrate the effectiveness of FlexRC in terms of reduction time and transient simulation time.

Foundations

The foundational work for this paper's niche, ranked by how specifically the neighbourhood builds on it — not by global fame.

Your Notes