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Assessment of Technical Parameters of Renewable Energy System : An Overview

机译:可再生能源系统技术参数评估:概述

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This paper discusses different components of hybrid renewable energy system on basis of technical parameters, sizing issues, power converter architecture and challenges faced by each of them. Since optimal operating point of whole hybrid system is required, it is necessary that not only each component operate at its own optimal operating point, but it should also complement operating point of other components. Main challenge with PV system is associated with partial shading and local maximum power point, which affects maximum power extraction from system. In case of Wind system, sizing of turbines, power fluctuation which can affect grid frequency is major issue. Battery energy storage system suffers from battery aging issues. Technical limitations of individual components can somewhat be addressed by complimentary advantage of other component and power flow fluctuation can addressed by suitable design of energy storage system. Cost of energy storage system be reduced too if extra power can be injected to the grid as in the case of grid connected system. Some hybrid system provides possibility of better resource utilization potential, while other can provide better dynamic and/or steady state performance depending on requirements. Hybrid system can also address shortcoming of one energy resource by providing complimentary parameter which can make up for such shortcoming. Factors which determine what hybrid system to choose for depends purely on requirements.
机译:本文基于技术参数,尺寸问题,功率转换器架构以及它们各自面临的挑战,讨论了混合可再生能源系统的不同组成部分。由于需要整个混合动力系统的最佳工作点,因此不仅每个组件都必须以其自己的最佳工作点进行操作,而且还必须补充其他组件的工作点。光伏系统的主要挑战与部分阴影和局部最大功率点有关,这会影响从系统提取最大功率。在风力系统中,涡轮机的尺寸确定会影响电网频率的功率波动是主要问题。电池能量存储系统遭受电池老化问题的困扰。单个组件的技术局限性可以通过其他组件的互补优势得到解决,而功率流的波动可以通过能量存储系统的适当设计来解决。如果可以像在并网系统中那样向电网注入额外的电力,则也可以降低储能系统的成本。一些混合系统提供了更好的资源利用潜力的可能性,而其他混合系统则可以根据需求提供更好的动态和/或稳态性能。混合系统还可以通过提供可以弥补这种缺点的互补参数来解决一种能源的缺点。确定选择哪种混合动力系统的因素完全取决于需求。

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