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Online Optimization for Networked Distributed Energy Resources With Time-Coupling Constraints

机译:具有时间耦合约束的网络分布式能源在线优化

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摘要

This paper proposes a Lyapunov optimization-based online distributed (LOOD) algorithmic framework for active distribution networks (ADNs) with numerous photovoltaic inverters and inverter air conditionings (IACs). In the proposed scheme, ADNs can track an active power setpoint reference at the substation in response to transmission-level requests while concurrently minimizing the social utility loss and ensuring the security of voltages. Conventional distributed optimization methods are rarely feasible to track the optimal solutions in fast variable environments using a fine-grained sampling interval where the underlying optimization problem evolves with the iterations of the algorithms. In contrast, based on the framework of online convex optimization (OCO), the developed approach uses a distributed algebraic update to compute the next round decisions relying on the current feedback of measurements. Notably, the time-coupling constraints of IACs are decoupled for online implementation with Lyapunov optimization technique. An incentive scheme is tailored to coordinate the customer-owned assets in lieu of the direct control from network operators. Optimality and convergency are characterized analytically. Finally, we corroborate the proposed method on a modified version of 33-node test feeder. Benchmark tests show that the proposed method is computationally and economically efficient, and outperforming existing algorithms.
机译:本文提出了一种基于Lyapunov优化的在线分布式(Lood)算法框架,用于具有许多光伏逆变器和逆变器空调(IACS)的主动分配网络(ADN)。在所提出的方案中,ADN可以在变电站上追踪变频器的有效电源设定值参考,同时同时最小化社交实用损耗并确保电压的安全性。使用细粒度的采样间隔跟踪快速变量环境中的最佳解,常规分布式优化方法很少可行,其中底层优化问题随着算法的迭代而发展。相比之下,基于在线凸优化(OCO)的框架,开发方法使用分布式代数更新来计算依赖于电流测量反馈的下一轮决定。值得注意的是,IACS的时耦合约束与Lyapunov优化技术一起解耦以进行在线实现。根据网络运营商的直接控制,根据网络运营商的直接控制来定制激励计划以协调客户所有资产。在分析上表征了最优性和收敛性。最后,我们在33节点测试馈线的修改版本上证实了所提出的方法。基准测试表明,该方法在计算上和经济上有效,并且优于现有算法。

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