A Pure Data-Driven Method for Online Inertia Estimation in Power Systems Using Local Rational Model Approach
Artikel i vetenskaplig tidskrift, 2023

This paper presents an online data-driven method to estimate the inertia constant of synchronous generators (SGs) and the virtual inertia of converter-based resources (CBRs), which enables time-dependent inertia tracking in the normal operation of a power system. The proposed method is based on continuous monitoring of frequency response functions (FRFs) of SGs and CBRs, which are identified by ambient wide-area measurements of phasor measurement units (PMUs). To identify FRFs, a novel non-parametric approach, namely the local rational model (LRM), is used which does not require correct model order selection. LRM approach has a low computational burden and requires a short window of data, both of which are essential for estimating time-dependent inertia using ambient data. The applicability of the proposed method is evaluated in the IEEE 39-bus system and an actual system. The results demonstrate the accuracy, robustness to noise, and effectiveness of the proposed method in estimating the time-dependent inertia of power systems.

Data models

local rational model

non-parametric identification

Load modeling

Ambient data

Power system stability

Time-frequency analysis

PMU measurements

Estimation

Frequency estimation

Phasor measurement units

converter-based resource

inertia estimation

Författare

Mohammadreza Mazidi

Chalmers, Elektroteknik, Elkraftteknik

Tomas McKelvey

Chalmers, Elektroteknik, Signalbehandling och medicinsk teknik

Peiyuan Chen

Chalmers, Elektroteknik, Elkraftteknik

IEEE Transactions on Industry Applications

0093-9994 (ISSN) 1939-9367 (eISSN)

Vol. 59 5 5506-5516

Ämneskategorier

Energisystem

Reglerteknik

Annan elektroteknik och elektronik

DOI

10.1109/TIA.2023.3288503

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Senast uppdaterat

2024-03-07