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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Analysis of Tower Shadow Effects on Battery Lifetime in Standalone Hybrid Wind-Diesel-Battery Systems
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Analysis of Tower Shadow Effects on Battery Lifetime in Standalone Hybrid Wind-Diesel-Battery Systems

机译:塔式阴影对独立混合风能-柴油-电池系统中电池寿命的影响分析

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摘要

In a standalone hybrid wind-diesel-battery system, the battery lifetime is often optimistically over-predicted by hybrid system designers and battery manufacturers. As a result, battery replacement takes place more often than required. One of the reasons is due to the underestimation of battery wear from the short charge–discharge cycles, otherwise known as microcycles. A microcycle takes place when the power generation closely matches the load demand. The detrimental effect of microcycles on a battery-based standalone hybrid renewable energy system was previously investigated, however, only from the perspective of short-term renewable energy fluctuations. This research paper provides a new insight on the battery lifetime reduction, resulting from microcycles that are generated through the tower shadow phenomena. Downwind wind turbines are considered here, as their tower shadow effects are more significant compared to the upwind counterpart. This paper briefly presents the modeling of tower shadow profiles for both tubular and four-leg tower configurations. Experimental results have shown that the microcycles due to this nonideal effect are significant in a battery-based standalone hybrid system. The quantification of the battery lifetime reduction due to this effect is demonstrated. Finally, the paper concludes with a sensitivity analysis of the battery lifetime reduction for different tower configurations, operating at different load conditions.
机译:在独立的混合型风能-柴油-电池系统中,混合动力系统设计人员和电池制造商常常乐观地预测电池寿命。结果,更换电池的次数比需要的多。原因之一是由于短时的充放电循环(也称为微循环)而低估了电池的磨损。当发电量与负载需求紧密匹配时,就会发生微循环。但是,以前仅从短期可再生能源波动的角度研究了微循环对基于电池的独立混合可再生能源系统的不利影响。该研究论文提供了有关通过塔影子现象产生的微循环而导致电池寿命减少的新见解。此处考虑了顺风风力涡轮机,因为它们的塔影效应比逆风风力涡轮机更为显着。本文简要介绍了管状和四腿塔式配置的塔式阴影轮廓的建模。实验结果表明,由于这种不理想的影响,微循环在基于电池的独立混合动力系统中非常重要。证明了由于这种影响而导致的电池寿命减少的量化。最后,本文以在不同负载条件下运行的不同塔式配置的电池寿命减少的敏感性分析作为结束。

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