Loading [MathJax]/extensions/MathMenu.js
Implicit - integration dynamics simulation with the GridPACK framework | IEEE Conference Publication | IEEE Xplore

Implicit - integration dynamics simulation with the GridPACK framework


Abstract:

Fast dynamics simulation of large-scale power systems is a computational challenge because of the need to solve a large set of stiff, nonlinear differential-algebraic equ...Show More

Abstract:

Fast dynamics simulation of large-scale power systems is a computational challenge because of the need to solve a large set of stiff, nonlinear differential-algebraic equations (DAE) at every time step. This paper presents a new implicit-integration dynamics simulation application added to the GridPACK™ framework. This new dynamics simulation application uses implicit integration schemes and offers several features such as variable time-stepping capabilities, automatic network partitioning, and accurate handling of discontinuities. The implementation details of this new dynamics simulation application is discussed in this paper and performance results are presented for a large 12,000 bus network.
Date of Conference: 26-29 July 2021
Date Added to IEEE Xplore: 20 December 2021
ISBN Information:

ISSN Information:

Conference Location: Washington, DC, USA

Funding Agency:

No metrics found for this document.

I. Introduction

Power systems undergo disturbances of various types, including balanced and unbalanced short circuits, outage of generators, transmission lines and other equipment, breaker tripping, etc. [1]. System planning engineers routinely conduct dynamic security assessment (DSA) studies to analyze the impact of different events, such as a new generator interconnection request or a new equipment installation (e.g. SVCs), or the loss of critical lines or loads. Such studies require the simulation of a lot of what-if scenarios that analyze the system impact of disturbances relative to the base case and different contingency conditions. Typically, such studies for large utility networks are extremely time-consuming and hence DSA is restricted to offline analysis.

Usage
Select a Year
2025

View as

Total usage sinceDec 2021:98
00.511.522.53JanFebMarAprMayJunJulAugSepOctNovDec220000000000
Year Total:4
Data is updated monthly. Usage includes PDF downloads and HTML views.
Contact IEEE to Subscribe

References

References is not available for this document.