An Inversion-Free Robust Power-Flow Algorithm for Microgrids

被引:14
作者
Kumar, Abhishek [1 ]
Das, Swagatam [2 ]
Mallipeddi, Rammohan [3 ]
机构
[1] Indian Inst Technol BHU Varanasi, Dept Elect Engn, Varanasi 221005, Uttar Pradesh, India
[2] Indian Stat Inst, Elect & Commun Sci Unit, Kolkata 700108, India
[3] Kyungpook Natl Univ, Sch Elect Engn, Dept Artificial Intelligence, Daegu 41566, South Korea
关键词
Jacobian matrices; Steady-state; Reactive power; Voltage control; Tools; Optimization; Convergence; Power flow problem; islanded microgrid; distributed generation unit; Newton-Traub composition; neutral conductor; grounding resistance; BACKWARD/FORWARD SWEEP ALGORITHM; PARALLEL-CONNECTED INVERTERS; NEWTON-RAPHSON; SYSTEMS; OPERATION;
D O I
10.1109/TSG.2021.3064656
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Recently, several numerical algorithms have been proposed to solve the power flow (PF) problems of islanded microgrids (MGs). However, these algorithms approximate the steady-state model of the distributed generation units (DGs) as linear equations. In some cases, this linear approximation leads to inaccurate PF solutions due to dead-zone and generation limits of the given DGs. To fill this gap, we propose a new non-linear approximation of the steady-state model of the DGs considering dead-zone and generation limits of the DG. Besides, an inversion-free PF algorithm based on the improved Newton-Traub composition (INTC) is proposed for solving PF problems of grid-connected and islanded MGs more robustly and accurately, where the inverse of the Jacobian matrix is updated by using the Broyden's method. To include the power losses of the neutral conductor and grounding resistance, four-conductor based PF formulation is proposed. The numerical results on several test systems suggest that the proposed algorithm can provide an accurate steady-state solution as compared to other state-of-the-art algorithms.
引用
收藏
页码:2844 / 2859
页数:16
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