Electrical power conversion of river and tidal power generator

E. Muljadi, V. Gevorgian, A. Wright, J. Donegan, C. Marnagh, J. Mcentee
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引用次数: 3

Abstract

As renewable generation has become less expensive during recent decades, and it becomes more accepted by the global population, the focus on renewable generation has expanded to include new types with promising future applications, such as river and tidal generation. Although the utilization of power electronics and electric machines in industry is phenomenal, the emphasis on system design is different for various sectors of industry. In precision control, robotics, and weaponry, the design emphasis is on accuracy and reliability with less concern for the cost of the final product. In energy generation, the cost of energy is the prime concern; thus, capital expenditures (CAPEX) and operations and maintenance expenditures (OPEX) are the major design objectives. This paper describes the electrical power conversion aspects of river and tidal generation. Although modern power converter control is available to control the generation side, the design was chosen on the bases of minimizing the CAPEX and OPEX; thus, the architecture is simple and modular for ease of replacement and maintenance. The power conversion is simplified by considering a simple diode bridge and a DC-DC power converter to take advantage of abundant and low-cost photovoltaic inverters that have well-proven grid integration characteristics (i.e., the capability to produce energy with good power quality and control real power and voltage on the grid side).
河、潮发电机的电力转换
近几十年来,由于可再生能源发电的成本越来越低,并且越来越被全球人口所接受,对可再生能源发电的关注已经扩大到包括具有未来应用前景的新类型,如河流发电和潮汐发电。虽然电力电子和电机在工业中的应用是显著的,但不同工业部门对系统设计的重视程度是不同的。在精密控制、机器人和武器方面,设计的重点是精度和可靠性,而不是最终产品的成本。在能源生产中,能源成本是首要问题;因此,资本支出(CAPEX)和运营和维护支出(OPEX)是主要的设计目标。本文介绍了河流发电和潮汐能发电的电力转换问题。虽然现代电源变换器控制可以控制发电侧,但在最小化CAPEX和OPEX的基础上选择了设计;因此,该体系结构简单且模块化,便于更换和维护。通过考虑一个简单的二极管桥和一个DC-DC功率转换器来简化功率转换,以利用丰富且低成本的光伏逆变器,这些逆变器具有良好的并网特性(即能够产生良好的电能质量并控制电网侧的实际功率和电压)。
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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