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Compensation of disturbances from the electrical network using the Dynamic Voltage Restorer (DVR)

机译:使用动态电压恢复器(DVR)补偿来自电网的干扰

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This work presents the analysis of the necessary requirements for the control of the compensation of electrical network disturbances (sag, swell and interruption of voltage), using the Dynamic Voltage Restorer (DVR), in order to protect the sensitive load. The control system was implemented based on the synchronous coordinate system “dq”, using the Park transform, since it is a symmetrical and balanced three-phase system. This methodology was adopted as a way of simplifying the project and reducing the number of controllers applied. In a first stage of the control project, it was possible to identify the DVR transfer function by estimating some characteristic parameters such as: damping factor (ζ), natural frequency (ωn) and gain (K). In a second step, the controllers were designed by the Internal Model Control (IMC) method, applying them in the complete simulation of the DVR. With this, tests were carried out in the simulation, inserting disturbances with amplitudes and varied durations, observing the dynamic behavior of the DVR. Finally, in the simulation results section, it was observed the compensation of the disturbances inserted in the network, protecting the critical load and validating the design and development of the DVR.
机译:这项工作提出了使用动态电压恢复器(DVR)来控制电网干扰(骤降,骤升和电压中断)的补偿的必要要求的分析,以保护敏感负载。由于该控制系统是对称且平衡的三相系统,因此使用Park变换基于同步坐标系“ dq”实现了该控制系统。采用这种方法是简化项目并减少所应用控制器数量的一种方式。在控制项目的第一阶段,可以通过估计一些特征参数来识别DVR传递函数,例如:阻尼系数(ζ),固有频率(ω n )和增益(K)。第二步,通过内部模型控制(IMC)方法设计控制器,并将其应用于DVR的完整仿真中。以此为基础,在模拟中进行了测试,插入了幅度和持续时间不同的干扰,并观察了DVR的动态行为。最后,在模拟结果部分中,观察到了对插入网络中的干扰的补偿,保护了临界负载并验证了DVR的设计和开发。

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