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New architecture and SCADA for stand-alone hybrid (medium-sized asynchronous wind turbine + UPS with battery + photovoltaic array) power system without diesel generator

机译:独立混合动力车(带电池+光伏阵列的中型异步风力涡轮机+ UPS的新架构和SCADA)没有柴油发电机的电力系统

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摘要

In general, the commercialized medium-sized asynchronous wind turbines are fully automated facilities designed to operate in parallel connection to the grid; in case of isolated operation, they need to be combined with diesel generator. This paper aims at studying the method of producing electricity of maximal quality with the wind, by constructing a new stand-alone hybrid (medium-sized asynchronous wind turbines, UPS with battery, and photovoltaic array) power system without diesel generator. This paper proposes a new architecture of stand-alone hybrid power system that consists of medium-sized asynchronous wind turbine, UPS, current limiter (reactor), photovoltaic array, and consumer and dump loads; accordingly, a supervisory control and data acquisition (SCADA) for this system is suggested along with the operation strategies depending on the output power of the UPS and wind turbine, consumer load, and the battery voltage of UPS. The case study was confirmed through the simulation results of the operation of a new stand-alone hybrid (two 110 kW of asynchronous wind turbines, 250 kVA of UPS with battery, reactor, 36 kW of photovoltaic array, and consumer and dump loads) power system. The results of the simulation showed that the system frequency change of the new stand-alone hybrid power system was 60 +/- 0.5 Hz, and the one of the wind + diesel stand-alone hybrid system was 60 +/- 1 Hz, for the sudden change of consumer load and gust. This new system can be eligible as a standardizing option for the architecture of nondiesel stand-alone hybrid system and its SCADA system.
机译:通常,商业化的中型异步风力涡轮机是全自动设施,设计用于与网格的并联连接操作;在隔离操作的情况下,他们需要与柴油发电机组合。本文旨在通过构建新的独立式混合动力(中型异步风力涡轮机,UPS,电池和光伏阵列)电力系统,研究利用风电力生产最大质量的电力。本文提出了一种独立混合动力系统的新架构,包括中型异步风力涡轮机,UPS,电流限制器(反应堆),光伏阵列和消费者和倾倒负载;因此,根据UPS和风力涡轮机,消费者负载和UPS电池电压的输出功率提出了该系统的监督控制和数据采集(SCADA)。通过新独立混合动力车的操作的仿真结果确认了案例研究(两个110kW的异步风力涡轮机,250 kVA,电池,电抗器,36 kW的光伏阵列,以及消费者和倾倒负载)的功率系统。模拟结果表明,新的独立混合动力系统的系统频率变化为60 +/- 0.5Hz,风+柴油独立混合系统之一为60 +/- 1 Hz,为消费者负荷和阵风的突然变化。这个新系统可以符合Nondiesel独立混合系统及其SCADA系统的体系结构的标准化选项。

著录项

  • 来源
    《Wind Energy》 |2019年第7期|959-974|共16页
  • 作者单位

    Kim Chaek Univ Technol Fac Automat 60 Kyougu Yonggwang St Pyongyang North Korea;

    Kim Chaek Univ Technol Fac Automat 60 Kyougu Yonggwang St Pyongyang North Korea;

    Kim Chaek Univ Technol Fac Automat 60 Kyougu Yonggwang St Pyongyang North Korea;

    Kim Chaek Univ Technol Fac Automat 60 Kyougu Yonggwang St Pyongyang North Korea;

    Kim Chaek Univ Technol Sch Sci & Engn Pyongyang North Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    asynchronous wind turbine; UPS; reactor; supervisory control; diesel generator;

    机译:异步风力涡轮机;UPS;反应堆;监督控制;柴油发电机;

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