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PSS Design for a Single-Machine Power System Using Honey Bee Mating Optimization

机译:使用蜜蜂配合优化的单机电源系统PSS设计

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A Honey Bee Mating Optimization (HBMO) technique is proposed for the optimal tuning of the Power System Stabilizer (PSS) in this paper. The design problem of robustly selecting PSS parameters is formulated as an optimization problem according to the time domain-based objective function which is solved by the HBMO technique that has a strong ability to find the most optimistic results. To achieve desired level of robust performance and improve power system low frequency oscillations damping, The design process takes a wide range of operating conditions. The effectiveness of the proposed HBMO based PSS is demonstrated on a Single-Machine Infinite-Bus (SMIB) power system through the nonlinear time domain simulation and some performance indices under different operating conditions in comparison with the genetic algorithm based tuned stabilizer and conventional PSS. Results evaluation show that the designed HBMO based PSS has an excellent capability in damping power system low frequency oscillations and enhance greatly the dynamic stability of the power systems.
机译:本文提出了一种蜜蜂交配优化(HBMO)技术来优化电力系统稳定器(PSS)。根据时域为基础的目标函数,将鲁棒选择PSS参数的设计问题表述为优化问题,该问题由HBMO技术解决,该技术具有很强的寻找最乐观结果的能力。为了达到所需的鲁棒性能水平并改善电源系统的低频振荡阻尼,设计过程需要广泛的工作条件。通过基于非线性时域仿真和在不同工作条件下的一些性能指标,与基于遗传算法的调谐稳定器和常规PSS相比,基于HBMO的PSS的有效性在单机无穷大(SMIB)电力系统上得到了证明。结果评估表明,所设计的基于HBMO的PSS具有出色的阻尼电力系统低频振荡的能力,并大大提高了电力系统的动态稳定性。

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