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Investigation on the limitation of the BTB-VSC converter to control the active and reactive power flow

机译:研究BTB-VSC转换器控制有功和无功潮流的局限性

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The back-to-back (BTB) converter based on voltage source converters (VSC) is a common topology used to control the electric power flow in several applications, including renewable power systems. The popularity of this converter lies in its flexibility to independently control active and reactive powers. This paper introduces an approach to establish the power limitations of the BTB-VSC converter in the linear region. The theoretical expressions are developed using the dq model of the system. The methodology is functional and identifies the capabilities and limitations of the BTB-VSC converter in controlling the active and reactive powers. The study is useful for (1) assigning appropriate references to the controllers and avoiding unreachable power references and (2) dismissing the attribution of possible failures to the control system. As a result, it is possible to establish whether the power application requirements are covered by the BTB-VSC converter. Results validate the boundaries of the active and reactive powers and an algorithm is implemented to construct the graphic areas of the active and reactive power regions. Moreover, a nonlinear control strategy based on input-output feedback linearization is implemented to corroborate the approach. Simulation and experimental tests are conducted with a 3 kVA system. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于电压源转换器(VSC)的背靠背(BTB)转换器是一种常见的拓扑,用于控制包括可再生能源系统在内的多种应用中的电力潮流。该转换器的普及之处在于它具有独立控制有功和无功功率的灵活性。本文介绍一种建立线性区域中BTB-VSC转换器功率限制的方法。理论表达式是使用系统的dq模型开发的。该方法具有功能性,并确定了BTB-VSC转换器在控制有功功率和无功功率方面的功能和局限性。该研究对于(1)为控制器分配适当的参考,并避免无法达到的功率参考,以及(2)消除控制系统可能出现的故障的原因很有用。结果,可以确定BTB-VSC转换器是否满足电源应用要求。结果验证了有功和无功功率的边界,并实施了一种算法来构造有功和无功功率区域的图形区域。此外,基于输入-输出反馈线性化的非线性控制策略被实施以证实该方法。使用3 kVA系统进行仿真和实验测试。 (C)2016 Elsevier B.V.保留所有权利。

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