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Comprehensive Small Signal Stability Analyses for Hybrid Energy Storage System under Novel Transient Power Allocation Strategy

机译:新型瞬态电力分配策略下的混合能量存储系统综合小信号稳定性分析

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Multiple ESs with different characteristics help to constitute hybrid energy storage systems (HESSs) which should bear desirable power/energy density and dynamic performances. For this purpose, an advanced power allocation strategy combining traditional voltage-power (V-P) droops and integral droops (IDs), could be utilized. With the harmonized integration of V-P and ID, ESs with high energy density but restrained dynamics naturally respond to low frequency components of load power, while ESs with adequate power density but limited stored energy compensate the fast changes of power demand autonomously. Regardless of the merits of presented strategy, comprehensive stability analyses for a HESS with such power management scheme have not been studied. In this paper, the HESS is fully modeled in the small signal sense, with no dynamic state being neglected. The entire system stability is analyzed through comprehensive eigenvalue loci investigations. Tome domain simulations perfectly verify the effectiveness and accuracy of the eigenvalue analyzing results.
机译:具有不同特征的多个ES有助于构成混合能量存储系统(HESSS),其应该承担所需的功率/能量密度和动态性能。为此目的,可以利用组合传统电压(V-P)滴水和整体滴水(ID)的高级功率分配策略。随着V-P和ID的统一集成,具有高能量密度但受限制的动力学的ESS自然地响应了负载功率的低频分量,而ESS具有足够的功率密度,但储存能量有限地补偿了权力的快速变化。无论提出的策略的优点如何,尚未研究具有这种电力管理方案的HESS的综合稳定性分析。在本文中,HESS在小信号感染中完全建模,没有动态状态被忽略。通过全面的特征值基因座调查分析整个系统稳定性。 Tome Domain Simulations完全验证特征值分析结果的有效性和准确性。

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