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AC Voltage Sag/Swell Compensator Based on Three-Phase Hybrid Transformer With Buck-Boost Matrix-Reactance Chopper

机译:基于带降压-升压矩阵电抗斩波器的三相混合变压器的交流电压骤降/骤升补偿器

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The parameters of electrical energy such as voltage amplitude are very important, particularly from the viewpoint of the final consumer and sensitive loads connected to the grid. The dynamic states in the power grid-deep voltage sags and swells-might cause faults and defects in sensitive loads. This paper deals with a three-phase hybrid transformer (HT) without dc energy storage to compensate voltage sags and swells and to protect sensitive loads against the rapid and extensive changes in supply voltage amplitude. The analyzed HT contains two main units: the first one is the conventional electromagnetic transformer, realizing an electromagnetic coupling, and the second one is the buck-boost matrix-reactance chopper, realizing an electrical coupling in the HT unit. In the presented solution, output voltage is transformed in two ways-electromagnetically and electrically. This paper presents an operational description, the theoretical analysis, and the experimental test results from a 2-kVA laboratory model. On the basis of the authors' research, it can be stated that the HT makes it possible to compensate deep voltage sags (deeper than 50% of nominal source voltage) and overvoltages (up to 140% of nominal source voltage) while maintaining good dynamic properties. The main advantages of the proposed solution, in comparison to other conventional solutions, are the ability to control the output voltage in the range of 0.66-3.5 US, good dynamics (transient state during source voltage uS amplitude change is shorter than 10 ms), and galvanic separation between source and load (such as in the case of the conventional electromagnetic transformer).
机译:电能的参数(例如电压幅度)非常重要,特别是从最终用户和连接到电网的敏感负载的角度来看。电网中的动态状态-电压骤降和骤升-可能会导致敏感负载出现故障和缺陷。本文研究了一种不带直流能量存储的三相混合变压器(HT),以补偿电压骤降和骤升,并保护敏感负载免受电源电压幅度快速而广泛的变化的影响。所分析的HT包含两个主要单元:第一个是实现电磁耦合的常规电磁变压器,第二个是实现HT单元中的电耦合的升降压矩阵电抗斩波器。在提出的解决方案中,输出电压以电磁和电两种方式转换。本文介绍了2-kVA实验室模型的操作说明,理论分析和实验测试结果。根据作者的研究,可以说HT可以补偿深电压骤降(深度超过标称电源电压的50%)和过电压(高达标称电源电压的140%),同时保持良好的动态属性。与其他常规解决方案相比,提出的解决方案的主要优点是能够将输出电压控制在0.66-3.5 US的范围内,具有良好的动态特性(电源电压幅值变化期间的瞬态小于10 ms),源和负载之间的电隔离(例如,在常规电磁变压器中)。

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