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Power system stability enhancement using static synchronous series compensator

机译:使用静态同步串联补偿器增强电力系统的稳定性

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A power system is becoming more complex and heavily loaded day by day. Earlier electric power systems were small and localized. Thus, Real and reactive power compensation in transmission line is essential which will improve the stability of ac system. Flexible Alternating Current Transmission System (FACTS) technology provides new opportunity to control the power and enhancing the capacity of the present as well as new line sit is used to investigate the effect of this device in controlling active and reactive powers as well as damping power system oscillations in transient mode. A Transmission line needs controllable compensation for power flow control and voltage regulation. This can be achieved by FACTS controllers. The employed compensators are three-phase (IGBT) based, Pulse Width Modulation (PWM) operated Converter (VSC). The proposed control employ proportional-integral (PI) controller to generate a constant error. Static Synchronous Series Compensator (SSSC) is series reactive power compensation to a power system. The output of an SSSC is series injected voltage, which leads or lags line current by 90°, thus emulating a controllable inductive or capacitive reactance. SSSC can be used to reduce the line impedance and enhance the active power transfer capability of the line. With the parameters and control, the SSSC is found effective to regulate load voltage during sudden change of the loads. The SSSC also provides stable operation with dynamic induction motor load and mitigates the unstable and oscillating behaviour that is resulting during the operation of compensated Alternator with dynamic motor load. The presented results prove that SSSC systems provide satisfactory performance The advantage of this approach is that it can handle the nonlinearities, at the same time it is faster than other conventional controllers and it improve the reactive power of the system. Simulation studies will be carried out in MATLAB/Simulink environment to evaluate the effectiveness of the proposed Static synchronous series compensator (SSSC). Results will show that the proposed SSSC based damping controllers improve the damping performance event of a major disturbance as well as Reactive power control.
机译:电力系统变得越来越复杂,并且日趋繁重。早期的电力系统规模较小且已本地化。因此,输电线路的有功功率和无功功率补偿必不可少,它将提高交流系统的稳定性。灵活的交流输电系统(FACTS)技术提供了控制功率和增强现有能力的新机会,同时还使用了新的线路座来研究该设备在控制有功和无功功率以及阻尼电源系统中的作用瞬态模式下的振荡。传输线需要可控制的补偿,以进行功率流控制和电压调节。这可以通过FACTS控制器来实现。所采用的补偿器是基于三相(IGBT)的,由脉宽调制(PWM)操作的转换器(VSC)。所提出的控制采用比例积分(PI)控制器来产生恒定误差。静态同步串联补偿器(SSSC)是电力系统的串联无功补偿。 SSSC的输出是串联注入的电压,它使线电流超前或滞后90°,从而模拟了可控的电感或电容电抗。 SSSC可用于降低线路阻抗并增强线路的有功功率传输能力。通过参数和控制,SSSC在负载突然变化期间可有效地调节负载电压。 SSSC还可以在动态感应电动机负载下提供稳定的运行,并减轻在动态电动机负载情况下补偿式交流发电机运行过程中引起的不稳定和振荡行为。提出的结果证明SSSC系统可提供令人满意的性能。此方法的优点是它可以处理非线性,同时比其他常规控制器更快,并且可以改善系统的无功功率。仿真研究将在MATLAB / Simulink环境中进行,以评估所提出的静态同步串联补偿器(SSSC)的有效性。结果将表明,基于SSSC的阻尼控制器的建议可改善重大扰动以及无功功率控制的阻尼性能。

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