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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Control of Cascaded DC–DC Converter-Based Hybrid Battery Energy Storage Systems—Part I: Stability Issue
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Control of Cascaded DC–DC Converter-Based Hybrid Battery Energy Storage Systems—Part I: Stability Issue

机译:基于级联DC-DC转换器的混合电池储能系统的控制—第一部分:稳定性问题

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There is an emerging application, which uses a mixture of batteries within an energy storage system. These hybrid battery solutions may contain different battery types. A dc-side cascaded boost converters along with a module-based distributed power sharing strategy has been proposed to cope with variations in battery parameters such as, state-of-charge (SOC) and/or capacity. This power sharing strategy distributes the total power among the different battery modules according to these battery parameters. Each module controller consists of an outer voltage-loop with an inner current-loop where the desired control reference for each control-loop needs to be dynamically varied according to battery parameters to undertake this sharing. As a result, the designed control bandwidth (BW) or stability margin of each module control-loop may vary in a wide range, which can cause a stability problem within the cascaded converter. This paper reports such a unique issue and thoroughly investigates the stability of the modular converter under the distributed sharing scheme. The paper shows that a cascaded PI control-loop approach cannot guarantee the system stability throughout the operating conditions. A detailed analysis of the stability issue and the limitations of the conventional approach are highlighted. Finally in-depth experimental results are presented to prove the stability issue using a modular hybrid battery energy storage system prototype under various operating conditions.
机译:有一个新兴的应用程序,它在能量存储系统中使用混合电池。这些混合电池解决方案可能包含不同的电池类型。已经提出了直流侧级联升压转换器以及基于模块的分布式功率共享策略,以应对电池参数(例如充电状态(SOC)和/或容量)的变化。该功率共享策略根据这些电池参数在不同的电池模块之间分配总功率。每个模块控制器都由一个外部电压环路和一个内部电流环路组成,其中每个控制环路的所需控制参考需要根据电池参数动态变化以进行共享。结果,每个模块控制回路的设计控制带宽(BW)或稳定性裕量可能会在很宽的范围内变化,这可能会导致级联转换器内部出现稳定性问题。本文报告了这样一个独特的问题,并在分布式共享方案下彻底研究了模块化转换器的稳定性。本文表明,级联PI控制回路方法无法保证整个工作条件下系统的稳定性。强调了对稳定性问题和常规方法的局限性的详细分析。最后,提出了深入的实验结果,以证明使用模块化混合电池储能系统原型在各种运行条件下的稳定性问题。

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