Broadband macromodeling of large multiport systems by vector fitting can be time consuming and resource demanding when all elements of the system matrix share a common set of poles. This letter presents a robust approach which removes the sparsity of the block-structured least-squares equations by a direct application of the QR decomposition. A 60-port printed circuit board example illustrates that considerable savings in terms of computation time and memory requirements are obtained
Abstract — The Vector Fitting algorithm [1] is an iterative procedure to compute rational approximat...
Abstract—Rational fitting techniques are often used for the macromodeling of linear systems from tab...
This paper introduces a new approach for rational macromodeling of multiport devices that ensures hi...
Broadband macromodeling of large multiport systems by vector fitting can be time consuming and resou...
Abstract—Broadband macromodeling of large multiport systems by vector fitting can be time consuming ...
Abstract—Common-pole modeling of frequency responses can be time consuming for systems with highly r...
As operating frequencies and signal speeds continue to increase in modern devices, the effects of pa...
The calculation of broadband macromodels from large tabulated frequency responses can be computation...
Vector Fitting is a robust macromodeling technique for transfer function synthesis in the frequency ...
Common-pole modeling of frequency responses can be time consuming for systems with highly resonant r...
Efficient macromodeling techniques used to model multi-port distributed systems using tabulated data...
Abstract—Rational macromodeling via Vector Fitting algo-rithms is a standard practice in Signal and ...
A novel least-squares fitting technique is presented for the macromodeling of parameterized frequenc...
We present a discrete-time time-domain vector fitting algorithm, called TD-VFz, for rational functio...
As operating frequencies and signal speeds continue to increase in modern devices, the effects of pa...
Abstract — The Vector Fitting algorithm [1] is an iterative procedure to compute rational approximat...
Abstract—Rational fitting techniques are often used for the macromodeling of linear systems from tab...
This paper introduces a new approach for rational macromodeling of multiport devices that ensures hi...
Broadband macromodeling of large multiport systems by vector fitting can be time consuming and resou...
Abstract—Broadband macromodeling of large multiport systems by vector fitting can be time consuming ...
Abstract—Common-pole modeling of frequency responses can be time consuming for systems with highly r...
As operating frequencies and signal speeds continue to increase in modern devices, the effects of pa...
The calculation of broadband macromodels from large tabulated frequency responses can be computation...
Vector Fitting is a robust macromodeling technique for transfer function synthesis in the frequency ...
Common-pole modeling of frequency responses can be time consuming for systems with highly resonant r...
Efficient macromodeling techniques used to model multi-port distributed systems using tabulated data...
Abstract—Rational macromodeling via Vector Fitting algo-rithms is a standard practice in Signal and ...
A novel least-squares fitting technique is presented for the macromodeling of parameterized frequenc...
We present a discrete-time time-domain vector fitting algorithm, called TD-VFz, for rational functio...
As operating frequencies and signal speeds continue to increase in modern devices, the effects of pa...
Abstract — The Vector Fitting algorithm [1] is an iterative procedure to compute rational approximat...
Abstract—Rational fitting techniques are often used for the macromodeling of linear systems from tab...
This paper introduces a new approach for rational macromodeling of multiport devices that ensures hi...