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Stabilisation of asymmetrically structured back-to-back static synchronous compensator system with non-linear damping control

机译:具有非线性阻尼控制的非对称结构背靠背静态同步补偿器系统的镇定

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摘要

This study describes a new back-to-back static synchronous compensator (BTB STATCOM) system with asymmetrically structured converters and develops its mathematical model. BTB STATCOM uses pulse-width modulation technology for a rectifier station along with multipulse technology for an inverter station. The authors propose a control strategy for the following three control variables: DC voltage and both active and reactive rectifier powers. In the rectifier station, input-output linearisation via the feedback control law is applied for independent control of the active and reactive powers. Conversely, the controller is not applicable for maintaining the DC voltage because of its irregularity. They design an alternative indirect damping controller for the reactive current within the inverter station. The proposed controller improves the stability margin and decreases the oscillation of DC voltage with a degraded reactive current tracking performance of the inverter. Using simulation, they validate the proposed method, comparing its effectiveness to that of a proportional-plus-integral-plus-derivative controller. They investigate the semi-globally exponential stability of the damped internal dynamics using a parameter-dependent Lyapunov (PDL) function. Using a composite Lyapunov function based on the PDL function, the uniform boundedness of the output regulation error as well as the closed-loop stability is established.
机译:这项研究描述了一种具有不对称结构转换器的新型背靠背静态同步补偿器(BTB STATCOM)系统,并开发了其数学模型。 BTB STATCOM使用整流器站的脉宽调制技术以及逆变器站的多脉冲技术。作者针对以下三个控制变量提出了一种控制策略:直流电压以及有功和无功整流器功率。在整流站中,通过反馈控制律的输入-输出线性化被用于独立控制有功功率和无功功率。相反,由于其不规则性,该控制器不适用于维持直流电压。他们为逆变器站内的无功电流设计了一种替代的间接阻尼控制器。所提出的控制器提高了稳定性裕度,并降低了直流电压的振荡,同时降低了逆变器的无功电流跟踪性能。通过仿真,他们验证了所提方法的有效性,并将其与比例加积分加微分控制器的有效性进行了比较。他们使用参数依赖的Lyapunov(PDL)函数研究阻尼内部动力学的半全局指数稳定性。使用基于PDL函数的复合Lyapunov函数,可以建立输出调节误差的均匀有界性以及闭环稳定性。

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