Characteristic of small-scale BESS for HOTT generation system

Mohammad Lutfur Rahman, Kazuki Nishimura, Kei Motobayashi, Shotaro Fujioka, Y. Shirai
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引用次数: 3

Abstract

Integrating a small-scale battery energy storage system (BESS) with a hybrid offshore-wind and tidal turbine (HOTT) generation system can smooth out the intermittent power generated by the offshore-wind turbine. In this system, tidal turbine is connected to an IGBT bi-directional converter and offshore-wind turbine is connected to a diode rectifier. They are connected at DC side. The power flow of tidal turbine is controlled by switching of the bi-directional converter and wind fluctuation is compensated by changing tidal turbine output. There are some problems to compensate the offshore-wind power fluctuation by the tidal output power. First, tidal turbine cannot change its output very fast because of its inertia. So there is some delay to control the output. Another problem is the loss of tidal turbine generated power due to change of the slip. However, the capacity and response speed of tidal turbine is inadequate to achieve good compensation. That's why it is required to integrate BESS with HOTT generation system to enhance reliability, increase throughput of existing grid infrastructure and yield various ancillary benefits such as to reduce system losses and improve power factor control. As a large-scale BESS is still an expensive option for renewable resources, an optimal control strategy is necessary for the use of small-scale feasible BESS. In this paper, BESS is connected to help tidal turbine to compensate fast fluctuations of offshore wind turbine. The effect of the battery is investigated through simulations. This is a small capacity simulation study which is prepared to use in our small experimental model HOTT system with BESS.
热发电系统小型BESS特性研究
将小型电池储能系统(BESS)与海上风能和潮汐涡轮机(HOTT)混合发电系统相结合,可以消除海上风力涡轮机产生的间歇性电力。在该系统中,潮汐涡轮机连接到IGBT双向变流器,海上风力涡轮机连接到二极管整流器。它们在直流侧连接。通过双向变流器的开关控制潮汐能发电机组的潮流,通过改变潮汐能发电机组的输出来补偿风力波动。利用潮汐能发电补偿海上风电的波动存在一些问题。首先,由于惯性,潮汐涡轮机不能快速改变输出。所以有一些延迟来控制输出。另一个问题是由于滑差的变化而造成潮汐能发电的损失。然而,潮汐发电机组的容量和响应速度不足以实现良好的补偿。这就是为什么需要将BESS与HOTT发电系统集成,以提高可靠性,增加现有电网基础设施的吞吐量,并产生各种辅助效益,例如减少系统损耗和改善功率因数控制。由于大规模BESS仍然是一种昂贵的可再生资源选择,因此小型可行BESS的最优控制策略是必要的。本文将BESS连接起来,帮助潮汐能发电机组补偿海上风力发电机组的快速波动。通过仿真研究了电池的影响。这是一个小容量的模拟研究,准备用于我们的小型实验模型HOTT系统与BESS。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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