首页> 外文会议>Power Electronics for Distributed Generation Systems (PEDG), 2012 3rd IEEE International Symposium on >Analysis and optimization of the battery energy storage systems for frequency control in autonomous microgrids, by means of hardware-in-the-loop simulations
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Analysis and optimization of the battery energy storage systems for frequency control in autonomous microgrids, by means of hardware-in-the-loop simulations

机译:通过硬件在环仿真分析和优化自主微电网中用于频率控制的电池储能系统

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摘要

This paper presents an original hardware-in-the-loop (HIL) solution for real-time testing and optimization of the frequency control mechanism in autonomous microgrids (MG), when battery energy storage systems (BESS) are integrated along classical and RES-based generators to stabilize the frequency. The focus is on autonomous MGs that dynamically should perform similarly to the conventional power systems. During MG autonomous operation, the generators should accomplish the frequency control process, by means of their automatic generation control. However, RES-based generators have poor controllability in terms of active power, and therefore the need of improving the MG power reserve by adding energy storage systems is often demanded. The proposed HIL solution aims to improve the design of the BESS frequency control systems according to the MG characteristics, being based on aggregated models of the involved mechanisms in the MG dynamics. An experimental test bench including a real-time digital simulator with BESS controller in the HIL structure is used for assessing the proposed system performances.
机译:本文提出了一种原始的硬件在环(HIL)解决方案,用于实时测试和优化自主微电网(MG)中的频率控制机制,当电池储能系统(BESS)沿经典和RES-集成在一起时发电机以稳定频率。重点是自主MG,其动态性能应类似于常规电源系统。在MG自主运行期间,发电机应通过其自动发电控制来完成频率控制过程。然而,基于RES的发电机在有功功率方面具有差的可控制性,因此经常需要通过增加能量存储系统来改善MG功率储备的需求。所提出的HIL解决方案旨在基于MG动力学中所涉及机制的汇总模型,根据MG特性来改进BESS频率控制系统的设计。在HIL结构中包括带有实时数字仿真器和BESS控制器的实验测试台用于评估建议的系统性能。

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