دانلود مقاله ISI انگلیسی شماره 142477
ترجمه فارسی عنوان مقاله

کنترل توزیع قدرت ناپایداری سیستم های قدرت - کنترل فرکانس ثانویه

عنوان انگلیسی
Power-Imbalance Allocation Control of Power Systems-Secondary Frequency Control
کد مقاله سال انتشار تعداد صفحات مقاله انگلیسی
142477 2018 14 صفحه PDF
منبع

Publisher : Elsevier - Science Direct (الزویر - ساینس دایرکت)

Journal : Automatica, Volume 92, June 2018, Pages 72-85

ترجمه کلمات کلیدی
سیستم های قدرت، کنترل فرکانس ثانویه، اعزام نیروی اقتصادی، عدم تعادل قدرت، بیش از حد، انحراف فرکانس بزرگ،
کلمات کلیدی انگلیسی
Power systems; Secondary frequency control; Economic power dispatch; Power imbalance; Overshoot; Large frequency deviation;
پیش نمایش مقاله
پیش نمایش مقاله  کنترل توزیع قدرت ناپایداری سیستم های قدرت - کنترل فرکانس ثانویه

چکیده انگلیسی

The traditional secondary frequency control of power systems restores nominal frequency by steering Area Control Errors (ACEs) to zero. Existing methods are a form of integral control with the characteristic that large control gain coefficients introduce an overshoot and small ones result in a slow convergence to a steady state. In order to deal with the large frequency deviation problem, which is the main concern of the power system integrated with a large number of renewable energy, a faster convergence is critical. In this paper, we propose a secondary frequency control method named Power-Imbalance Allocation Control (PIAC) to restore the nominal frequency with a minimized control cost, in which a coordinator estimates the power imbalance and dispatches the control inputs to the controllers after solving an economic power dispatch problem. The power imbalance estimation converges exponentially in PIAC, both overshoots and large frequency deviations are avoided. In addition, when PIAC is implemented in a multi-area controlled network, the controllers of an area are independent of the disturbance of the neighbor areas, which allows an asynchronous control in the multi-area network. A Lyapunov stability analysis shows that PIAC is locally asymptotically stable and simulation results illustrate that it effectively eliminates the drawback of the traditional integral control based methods.