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The mechanism of eliminating harmonic resonance with controllers by over-voltage in the power systems

机译:通过电力系统中的过电压消除与控制器的谐波谐振的机制

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The phenomenon of anti-symmetrical bifurcation of periodic solutions occurring near an integral manifold is the intrinsic cause resulting in harmonic resonance over-voltage in power systems. On the basis of this conclusion, the principle of eliminating harmonic resonance by using an anti-bifurcation approach is presented, which means that the theoretical basis of every measure to eliminate resonance is unified firstly from a point of view of basic theory. Our discussion models depend on a class of non-linear control model produced by over-voltage in the power systems. Using the direct Lyapunov technique, a complete theoretical proof is given in accordance with the measure of eliminating resonance by connecting non-linear resistors in series to the neutral point of PT and applying the feedback control law. It comprises the action of the parameters of the resistors to eliminate resonance and the actual process of eliminating resonance, that is, to go against the bifurcation process which forces the big harmonic solutions to retreat to the integral manifold gradually and disappear eventually, by using the non-linear controllers. This ensures that the intrinsic cause of resonance is eliminated thoroughly.
机译:积分歧管附近出现的周期解的反对称分叉现象是导致电力系统谐波谐振过电压的内在原因。在此结论的基础上,提出了利用分叉消除谐波谐振的原理,这意味着从基本理论的观点出发,首先消除谐振的各种措施的理论基础是统一的。我们的讨论模型取决于由电力系统中的过电压产生的一类非线性控制模型。使用直接的Lyapunov技术,通过将非线性电阻串联到PT的中性点并应用反馈控制律,根据消除谐振的措施,给出了完整的理论证明。它包括电阻器参数的作用,以消除共振和消除共振的实际过程,即,与分叉过程相反,分叉过程迫使大谐波解决方案逐渐退回到积分歧管并最终消失,非线性控制器。这样可以确保彻底消除共振的内在原因。

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