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Power electronics converters without DC energy storage in the future electrical power network

机译:未来电力网络中不带直流能量存储的电力电子转换器

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Power electronics is an integral part of modern energy systems. Moreover, its use adds costs to capital investments in energy systems, along with some reliability issues. Therefore, innovative solutions in power networks require power electronics topologies that are less expensive and more dependable. The use of power electronics without DC energy storage elements (all-silicon solution) is one way to address these issues. This paper provides a comprehensive review of past and present converter topologies without DC energy storage elements which can be employed in novel energy systems. In this paper the converters are divided into two groups: with constant output frequency, and with variable output frequency. The first group includes topologies of matrix and matrix-reactance choppers and their applications in hybrid transformers and power electronic transformers. The second group includes frequency converters based on the matrix converter, covering the conventional, indirect, sparse matrix converter and the matrix-reactance frequency converter. The second part of the article concerns the application of the mentioned converters in the power system functioning as a power interface with AC distributed sources and systems for improving energy quality and the control of power flow in the power network. The sections in this part of the paper present an operational description, and simulation and experimental test results of selected converters and their applications. In the last part of the article there is a brief discussion of current trends, challenges and areas of potential applications and limitations. (C) 2015 Elsevier B.V. All rights reserved.
机译:电力电子是现代能源系统不可或缺的一部分。此外,它的使用增加了能源系统资本投资的成本以及一些可靠性问题。因此,电力网络中的创新解决方案需要更便宜,更可靠的电力电子拓扑。使用不带直流储能元件的电力电子设备(全硅解决方案)是解决这些问题的一种方法。本文提供了不带直流储能元件的过去和现在的转换器拓扑的全面综述,这些储能元件可用于新型能源系统。在本文中,转换器分为两组:恒定输出频率和可变输出频率。第一组包括矩阵和矩阵电抗斩波器的拓扑及其在混合变压器和电力电子变压器中的应用。第二组包括基于矩阵转换器的频率转换器,涵盖了传统的,间接的,稀疏的矩阵转换器和矩阵电抗频率转换器。本文的第二部分涉及所提到的转换器在电力系统中的应用,该电力系统用作与AC分布式电源的电力接口,以及用于改善能源质量和控制电力网络中电力流的系统。本文这一部分的各节介绍了所选转换器及其应用的操作说明,仿真和实验测试结果。在文章的最后部分,简要讨论了当前的趋势,挑战以及潜在应用和限制的领域。 (C)2015 Elsevier B.V.保留所有权利。

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