Interruption reduction in secondary substations using battery energy storage systems

A. Narayanan, T. Kaipia, J. Partanen
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引用次数: 2

Abstract

Reliable electric power supply is extremely important in modern societies. Distribution system operators (DSOs) are obligated to ensure high supply security, especially in deregulated electricity markets. DSO face penalties or pay compensatory costs when they are unable to supply electricity reliably to customers. DSOs can increase their supply reliability by either employing expensive high-reliability technology or backup power supply such as battery energy storage systems (BESSs) or generators. We have presented a novel mixed integer linear programming model to determine the economic feasibility of installing BESSs at a secondary substation in a medium voltage network. We have also determined the minimum capacity and optimal schedule of the installed BESS. Moreover, we have examined the cost-effectiveness of using BESSs if they are also used for peak shaving instead of remaining idle when there are no outages. We validated our simple but effective methodology by applying it to a substation network in Finland. All the interruptions were reduced with a BESS capacity of 112 kWh, and the savings were significant for BESS costs less than 300 €/kWh. Moreover, peak shaving increased the cost savings. However, the current costs of lithium-ion-based BESSs are nearly thrice as high, and they must decrease further before BESSs can be cost-effectively used for interruption management and peak shaving.
利用电池储能系统减少二次变电站的中断
可靠的电力供应在现代社会是极其重要的。配电系统运营商(dso)有义务确保高供应安全性,特别是在放松管制的电力市场。当他们无法可靠地向客户供电时,他们将面临罚款或支付补偿性费用。dso可以通过采用昂贵的高可靠性技术或备用电源(如电池储能系统(bess)或发电机)来提高供电可靠性。我们提出了一种新的混合整数线性规划模型来确定在中压电网二次变电站安装bess的经济可行性。我们还确定了已安装BESS的最小容量和最佳调度。此外,我们还研究了使用bess的成本效益,如果它们也用于调峰,而不是在没有中断时保持闲置。我们通过将其应用于芬兰的变电站网络来验证我们简单而有效的方法。所有的中断都减少了,BESS容量为112千瓦时,节省的BESS成本低于300欧元/千瓦时。此外,调峰增加了成本节约。然而,目前锂离子bess的成本几乎是锂离子bess的三倍,在bess能够经济有效地用于中断管理和调峰之前,成本必须进一步降低。
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