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Adaptive control of hybrid battery energy storage systems under capacity fade

机译:容量衰减下混合动力电池储能系统的自适应控制

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摘要

There is an increasing call for applications which use a mixture of batteries. These hybrid battery solutions may contain different battery types for example; using second life ex-transportation batteries in grid support applications or a combination of high power, low energy and low power, high energy batteries to meet multiple energy requirements or even the same battery types but under different states of health for example, being able to hot swap out a battery when it has failed in an application without changing all the batteries and ending up with batteries with different performances, capacities and impedances. These types of applications typically use multi-modular converters to allow hot swapping to take place without affecting the overall performance of the system. A key element of the control is how the different battery performance characteristics may be taken into account and the how the power is then shared among the different batteries in line with their performance. This paper proposes a control strategy which allows the power in the batteries to be effectively distributed even under capacity fade conditions using adaptive power sharing strategy. This strategy is then validated against a system of three different battery types connected to a multi-modular converter both with and without capacity fade mechanisms in place.
机译:越来越多地要求使用混合电池的应用。例如,这些混合电池解决方案可能包含不同的电池类型;例如:在电网支持应用中使用二次生命防爆运输电池,或将高功率,低能量和低功率,高能量电池组合使用,以满足多种能量需求,甚至使用相同类型的电池,但处于不同的健康状态,例如,能够在应用程序发生故障时,热拔出电池,而无需更换所有电池,最后换成性能,容量和阻抗不同的电池。这些类型的应用程序通常使用多模数转换器,以允许进行热插拔而不影响系统的整体性能。控制的关键要素是如何考虑不同的电池性能特征,以及如何根据其性能在不同的电池之间分配功率。本文提出了一种控制策略,该策略可以使用自适应功率共享策略,即使在容量衰减条件下也能有效分配电池中的功率。然后,针对连接到多模块转换器的三种不同电池类型的系统(有无容量衰​​减机制)对这种策略进行了验证。

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