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Distributed Energy Management for Hybrid AC/DC Microgrid Parks

机译:交流/直流混合微电网园区的分布式能源管理

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To realize the energy sharing among hybrid AC/DC microgrid (MG) parks, a distributed management scheme is proposed. Considering the uncertainty of loads and photovoltaic generators (PVs), the intra-day energy management of each MG is formulated as an adjustable robust optimization problem, which is reformulated to a deterministic optimization problem. Together with the power flow on DC networks, the energy management of MG park is formulated as a nonconvex optimization problem. Using conic relaxation, this nonconvex optimization problem is reformulated to its exact convex equivalent. The convex optimization problem is solved by the alternating direction method of multipliers (ADMM), which guarantees the information privacy of each MG and global convergence of the scheme. Simulations are implemented on a MG park with three MGs, connecting with other MGs through DC transmission lines. Results verify the effectiveness of proposed scheme, reducing the operational cost via energy sharing among MG parks.
机译:为了实现交流/直流微电网(MG)混合园区之间的能量共享,提出了一种分布式管理方案。考虑到负载和光伏发电机(PV)的不确定性,每个MG的日间能量管理被公式化为可调整的鲁棒优化问题,将其重新表述为确定性优化问题。连同直流网络上的潮流,MG园区的能源管理被表述为非凸优化问题。使用圆锥松弛,可将此非凸优化问题重新公式化为其精确的凸等效值。通过乘数交替方向法(ADMM)解决了凸优化问题,保证了每个MG的信息保密性和方案的全局收敛性。在具有三个MG的MG公园中执行模拟,并通过DC传输线与其他MG连接。结果证明了该方案的有效性,通过MG公园之间的能源共享降低了运营成本。

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