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Effective Utilization of Parallel-Connected Megawatt Three-Level Back-to-Back Power Converters in Variable Speed Pumped Storage Units

机译:变速抽水蓄能器中并联使用的兆瓦级三电平背靠背电源转换器的有效利用

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摘要

Power electronic converter plays a significant role in the hydropower generating systems of both fixed and variable speed types. These converters are used in the form of a simple rectifier for the static dc excitation in the fixed speed system and in the form of the ac excitation (ac-ac or ac-dc-ac) in the variable speed system. The parallel-connected multiple three-level neutral-point-clamped (3L-NPC) megawatt back-to-back (BTB) converters have been adopted in recently commissioned variable speed pumped storage units (VSPSU). For such configurations, reliability and efficiency are considered to be prominent. This article proposes amethodology for effective utilization of a parallel-connected BTB power converter for VSPSU of large capacity by performing the load-dependent activation/deactivation of converters. A vector control strategy for the active and reactive power deliveries of VSPSU is formulated. This article also focusses on the losses and thermal behavior of converters at different speeds of generator in accordance with water head variations. The proposed control system is designed in such a way to decrease overall losses in the power converter system. The effectiveness of the proposed method is explained on a real scale of 250-MW doubly fed induction machinewith 5x5MWpower converters using MATLAB/PLECS software, and experimental validation is performed through a downscaled 2.2-kW laboratory prototype.
机译:电力电子转换器在定速和变速类型的水力发电系统中都扮演着重要角色。这些转换器以简单整流器的形式用于定速系统中的静态直流励磁,而在变速系统中以交流励磁(ac-ac或ac-dc-ac)形式使用。最近调试的变速抽水存储单元(VSPSU)已采用并联的多个三级中性点钳位(3L-NPC)兆瓦背靠背(BTB)转换器。对于这样的配置,可靠性和效率被认为是突出的。本文提出了一种方法,该方法可通过执行转换器的负载相关激活/停用来有效利用大容量VSPSU的并联BTB电源转换器。制定了用于VSPSU有功和无功输出的矢量控制策略。本文还着重于根据水头变化而在不同发电机转速下的转换器的损耗和热性能。所提出的控制系统以减少功率转换器系统中的总损耗的方式设计。使用MATLAB / PLECS软件在具有5x5MW功率转换器的250 MW双馈感应电机的实际规模上说明了该方法的有效性,并通过缩小规模的2.2 kW实验室原型进行了实验验证。

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