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Network-Aware Coordination of Residential Distributed Energy Resources

机译:住宅分布式能源的网络感知协调

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Rooftop solar and batteries, along with other distributed energy resources (DERs), add a new demand-side flexibility, which, when harnessed, will enable distribution operators to more efficiently manage their constrained networks. This paper presents network-aware coordination (NAC), an approach for coordinating DER within unbalanced distribution network constraints, which utilizes the alternating direction method of multipliers (ADMMs) to solve a distributed receding-horizon OPF. As far as we are aware, this paper is the first to report on the practical implementation and performance of an ADMM-based technique solving a significant network problem in live operations. We present real-world trial results of NAC coordinating 31 residential batteries on a constrained feeder within Tasmania's 11-kV distribution network. The batteries are coordinated to manage the network's constraints during periods of high feeder demand, decreasing the need for expensive conventional network management, in this case a diesel generator. We achieve a 34% reduction in diesel over seven peaks with 31 batteries capable of meeting 10% of peak demand. Supplementary simulations indicate the potential for a 74% diesel reduction if battery numbers were increased to 100. We find that compared to uncoordinated battery response, the NAC achieves 13% lower total costs over the trial period.
机译:屋顶太阳能和电池,以及其他分布式能源(DER),增加了需求侧的新灵活性,如果加以利用,它将使配电运营商能够更有效地管理其受约束的网络。本文提出了一种网络感知协调(NAC),一种在不平衡配电网络约束下协调DER的方法,该方法利用乘数的交替方向方法(ADMM)来解决分布式后向水平OPF。据我们所知,本文是第一个报告基于ADMM的技术的实际实现和性能的解决方案,该技术解决了实时运行中的重大网络问题。我们展示了NAC在塔斯马尼亚州11 kV配电网络内的受约束馈线上协调31块家用电池的实际试验结果。在高馈线需求期间协调电池以管理网络的约束,从而减少了对昂贵的常规网络管理(在这种情况下为柴油发电机)的需求。我们通过31个能够满足峰值需求10%的电池,使柴油在七个高峰期减少了34%的柴油。补充的模拟表明,如果将电池数量增加到100个,则有可能减少74%的柴油。我们发现,与电池响应不协调相比,NAC在试用期内的总成本降低了13%。

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