paper-with-me

홈 › Papers

Simulating the Power Electronics-Dominated Grid using Schwarz-Schur Complement based Hybrid Domain Decomposition Algorithm

2022-12-09 · Fatemeh Kalantari, Jian Shi, Harish Krishnamoorthy

This paper proposes a novel two-stage hybrid domain decomposition algorithm to speed up the dynamic simulations and the analysis of power systems that can be computationally demanding due to the high penetration of renewables. On the first level of the decomposition, a Schwarz-based strategy is used to decouple the original problem into various subsystems through boundary variable relaxation, while on the second level, each decoupled subsystem is further decomposed into subdomains that are solved independently using the Schur-complement approach. Convergence is checked in both stages to ensure that the parallelized implementation of the subsystems can produce identical results to the original problem. The proposed approach is tested on an IEEE 9 bus system in which one synchronous generator is replaced with a solar PV farm through a grid-forming inverter (GFM) with an admittance control method to evaluate its effectiveness and applicability for large-scale and very-large-scale implementations. Since conventional dual-loop GFMs are not stable when connecting to a stronger grid with a small grid inductance, a virtual inductance method is adopted to increase the equivalent inductance connecting the grid to enhance stability.

📄 PDF Abstract BibTeX arXiv:2212.05044

Code (0)

등록된 구현이 없습니다.

Methods 이 논문이 사용한 방법론

SPEED The monocular depth estimation (MDE) is the task of estimating depth from a single frame. This information is an essential knowledge in many computer vision tasks such as scene…

Similar Papers 제목 키워드 기반

Leveraging Digital Twin and Machine Learning Techniques for Anomaly Detection in Power Electronics Dominated Grid

2025-01-23 · Ildar N. Idrisov, Divine Okeke, Abdullatif Albaseer, Mohamed Abdallah 외

Modern power grids are transitioning towards power electronics-dominated grids (PEDG) due to the increasing integration of renewable energy sources and energy storage systems. This shift introduces complexities in grid o…

Anomaly Detection

AI-Enhanced Inverter Fault and Anomaly Detection System for Distributed Energy Resources in Microgrids

2024-11-13 · Swetha Rani Kasimalla, Kuchan Park, Junho Hong, Young-Jin Kim 외

The integration of Distributed Energy Resources (DERs) into power distribution systems has made microgrids foundational to grid modernization. These DERs, connected through power electronic inverters, create power electr…

Anomaly DetectionFault Detection

Quantifying Grid-Forming Behavior: Bridging Device-level Dynamics and System-Level Stability

2025-03-31 · Kehao Zhuang, Huanhai Xin, Verena Häberle, Xiuqiang He 외

Grid-Forming (GFM) technology is considered a promising solution to build power electronics-dominated power systems. However, the impact of GFM converters on the system stability is still unquantified, creating a gap bet…

Dynamic Model of Back-to-Back Converter for System-Level Phasor Simulation

2024-02-26 · Hisham Mahmood, Samrat Acharya, Francis Tuffner, Priya Mana 외

The power system is expected to evolve rapidly with the increasing deployment of power electronic interface and conditioning systems, microgrids, and hybrid AC/DC grids. Among power electronic systems, back-to-back (BTB)…

Computational Efficiency

Gain and Phase: Decentralized Stability Conditions for Power Electronics-Dominated Power Systems

2023-09-14 · Linbin Huang, Dan Wang, Xiongfei Wang, Huanhai Xin 외

This paper proposes decentralized stability conditions for multi-converter systems based on the combination of the small gain theorem and the small phase theorem. Instead of directly computing the closed-loop dynamics, e…