商品情報にスキップ
1 1

同期機モデルにおける横軸回路の模擬が系統事故時の周波数変動の解析結果に及ぼす影響

同期機モデルにおける横軸回路の模擬が系統事故時の周波数変動の解析結果に及ぼす影響

通常価格 ¥770 JPY
通常価格 セール価格 ¥770 JPY
セール 売り切れ
税込

カテゴリ: 論文誌(論文単位)

グループ名: 【B】電力・エネルギー部門

発行日: 2024/12/01

タイトル(英語): Impacts of Quadrature-axis Equivalent Circuit Model of Turbine Generator on Simulation Results of Frequency Change in Grid Fault

著者名: 青木 廉((一財)電力中央研究所),天野 博之((一財)電力中央研究所)

著者名(英語): Ren Aoki (Central Research Institute of Electric Power Industry), Hiroyuki Amano (Central Research Institute of Electric Power Industry)

キーワード: タービン発電機,横軸リアクタンス,周波数変化率,インバータ脱落  turbine generator,quadrature-axis reactance,rate of change of frequency,inverter trip

要約(英語): In power system dynamic analysis, especially voltage analysis at load disconnection, it is known that the turbine generator model considering quadrature axis transient reactance Xq' (called LGT =5 in CRIEPI's Power System Analytical Tools (CPAT)) is more accurate than ignoring Xq' (called LGT =4 in CPAT). However, in power system analysis in Japan, LGT =4 seems to be used as the model for the turbine generator rather than LGT =5. It seems to be primarily because there is no significant difference between them in rotor angle stability analysis. However, it is not clear whether there is great difference between them in the analysis on the inverters trip in grid fault. In such an analysis, the change of frequency of inverters connection node is mainly important. In this paper, the impacts of Xq' of the turbine generator on the frequency change after grid fault are investigated. Through the time-domain simulations, it was found that the frequency change in grid fault of LGT =4 tend to be larger than that of LGT =5, indicating that there is a clear difference between the results of frequency analysis using LGT =4 and LGT =5.

本誌: 電気学会論文誌B(電力・エネルギー部門誌) Vol.144 No.12 (2024)

本誌掲載ページ: 616-625 p

原稿種別: 論文/日本語

電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejpes/144/12/144_616/_article/-char/ja/

販売タイプ
書籍サイズ
ページ数
詳細を表示する