Department of Electrical and Computer Engineering, COMSATS University Islamabad, Abbottabad Campus, Abbottabad, KP, Pakistan.
Department of Electrical and Computer Engineering, COMSATS University Islamabad, Islamabad, Pakistan.
PLoS One. 2020 May 14;15(5):e0232638. doi: 10.1371/journal.pone.0232638. eCollection 2020.
The state-of-charge (SoC) of an energy storage system (ESS) should be kept in a certain safe range for ensuring its state-of-health (SoH) as well as higher efficiency. This procedure maximizes the power capacity of the ESSs all the times. Furthermore, economic load dispatch (ELD) is implemented to allocate power among various ESSs, with the aim of fully meeting the load demand and reducing the total operating cost. In this research article, a distributed multi-agent consensus based control algorithm is proposed for multiple battery energy storage systems (BESSs), operating in a microgrid (MG), for fulfilling several objectives, including: SoC trajectories tracking control, economic load dispatch, active and reactive power sharing control, and voltage and frequency regulation (using the leader-follower consensus approach). The proposed algorithm considers the hierarchical control structure of the BESSs and the frequency/voltage droop controllers with limited information exchange among the BESSs. It embodies both self and communication time-delays, and achieves its objectives along with offering plug-and-play capability and robustness against communication link failure. Matlab/Simulink platform is used to test and validate the performance of the proposed algorithm under load disturbances through extensive simulations carried out on a modified IEEE 57-bus system. A detailed comparative analysis of the proposed distributed control strategy is carried out with the distributed PI-based conventional control strategy for demonstrating its superior performance.
为了确保储能系统(ESS)的健康状态(SoH)以及更高的效率,其充电状态(SoC)应保持在一定的安全范围内。这一程序始终最大限度地提高了 ESS 的功率容量。此外,实施经济负荷调度(ELD)是为了在各个 ESS 之间分配电力,目的是充分满足负载需求并降低总运营成本。在这篇研究文章中,提出了一种基于分布式多代理共识的控制算法,用于微电网(MG)中的多个电池储能系统(BESS),以实现多个目标,包括:SoC 轨迹跟踪控制、经济负荷调度、有功和无功功率共享控制以及电压和频率调节(使用领导者-跟随者共识方法)。所提出的算法考虑了 BESS 的分层控制结构和具有有限信息交换的频率/电压下垂控制器。它体现了自身和通信时滞,并实现了目标,同时提供即插即用功能和对通信链路故障的鲁棒性。通过在修改后的 IEEE 57 母线系统上进行广泛的仿真,使用 Matlab/Simulink 平台测试和验证了在负载干扰下提出的算法的性能。对所提出的分布式控制策略进行了详细的比较分析,并与基于分布式 PI 的传统控制策略进行了比较,以证明其优越的性能。