Efficient analysis of massive on-chip power delivery networks is among the most challenging problems facing the EDA industry today. In this paper, we present a new preconditioned iterative method for fast DC and transient simulation of large-scale power grids found in contemporary nanometer-scale ICs. The emphasis is placed on the preconditioner which reduces the number of iterations by a factor of 5X for a 2.6M-node industrial design and by 72.6X for a 6.2M-node synthetic benchmark, compared with incomplete factorization preconditioners. Moreover, owing to the preconditioner's special structure that allows utilizing a Fast Transform solver, the preconditioning system can be solved in a near-optimal number of operations, while it is extreme...
SPICE-accurate simulation of present-day large-scale nonlinear integrated circuit (IC) systems with ...
Time domain simulation (TDS) is an important tool for the analysis of the dynamic behavior of power ...
The challenging task of analyzing on-chip power (ground) distribution networks with multimillion nod...
Efficient analysis of on-chip power delivery networks is one of the most challenging problems that E...
Leveraging the power of nowadays graphics processing units for robust power grid simulation remains ...
Efficient analysis of massive on-chip power delivery networks is among the most challenging problems...
In this paper, we propose preconditioned Krylov-subspace iterative methods to perform efficient DC a...
Robust and efficient algorithms for power grid analysis are crucial for both VLSI design and optimiz...
It is increasingly challenging to analyze present day large-scale power delivery networks (PDNs) due...
This thesis deals with two research problems. The first research problem is motivated by the numeric...
To evaluate and verify the functional correction and reliability of circuit designs, circuit compone...
Large VLSI on-chip power delivery networks (PDN) are challenging to analyze due to sheer network com...
Efficient full-chip thermal simulation is among the most challenging problems facing the EDA industr...
Abstract—In this paper, we present a novel pattern-based method to simulate large-scaled power/groun...
The research conducted in this thesis provides a robust implementation of a preconditioned iterative...
SPICE-accurate simulation of present-day large-scale nonlinear integrated circuit (IC) systems with ...
Time domain simulation (TDS) is an important tool for the analysis of the dynamic behavior of power ...
The challenging task of analyzing on-chip power (ground) distribution networks with multimillion nod...
Efficient analysis of on-chip power delivery networks is one of the most challenging problems that E...
Leveraging the power of nowadays graphics processing units for robust power grid simulation remains ...
Efficient analysis of massive on-chip power delivery networks is among the most challenging problems...
In this paper, we propose preconditioned Krylov-subspace iterative methods to perform efficient DC a...
Robust and efficient algorithms for power grid analysis are crucial for both VLSI design and optimiz...
It is increasingly challenging to analyze present day large-scale power delivery networks (PDNs) due...
This thesis deals with two research problems. The first research problem is motivated by the numeric...
To evaluate and verify the functional correction and reliability of circuit designs, circuit compone...
Large VLSI on-chip power delivery networks (PDN) are challenging to analyze due to sheer network com...
Efficient full-chip thermal simulation is among the most challenging problems facing the EDA industr...
Abstract—In this paper, we present a novel pattern-based method to simulate large-scaled power/groun...
The research conducted in this thesis provides a robust implementation of a preconditioned iterative...
SPICE-accurate simulation of present-day large-scale nonlinear integrated circuit (IC) systems with ...
Time domain simulation (TDS) is an important tool for the analysis of the dynamic behavior of power ...
The challenging task of analyzing on-chip power (ground) distribution networks with multimillion nod...