产消配电网中发电成本的分布式最小化

G. Cavraro, A. Bernstein, R. Carli, S. Zampieri
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引用次数: 4

摘要

传统上,电力是由大型发电厂产生的。生产能源的成本与燃料(如碳或天然气)的成本以及维护发电厂的成本有关。随着分布式能源的出现,电力可以通过一种新型的代理直接在电网的边缘产生:产消者。产消者是既消耗电力又产生电力的实体,例如通过光伏板。由于来自分布式发电机的能源基本上是免费的,因此产消者生产电力的成本不再与燃料消耗有关。相反,成本与产消者因提供服务而应得到的报酬有关。所提出的控制策略使上述情况下的有功发电成本最小化。该控制方案要求产消者测量其电压,然后根据连续时间反馈控制律(投影梯度下降策略)调整注入功率。通过仿真来说明算法的行为。
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Distributed Minimization of the Power Generation Cost in Prosumer-Based Distribution Networks
Traditionally, electrical power was generated in big power plants. The cost of producing energy was related to the cost of fuel, e.g., carbon or gas, and by the cost of maintaining the power plants. With the advent of distributed energy resources, power can be produced directly at the edge of the electrical network by a new type of agent: the prosumer. Prosumers are entities that both consume and generate power, e.g., by means of photovoltaic panels. The cost of the power produced by prosumers is no longer related to fuel consumption since energy coming from distributed generators is essentially free. Rather, the cost is related to the remuneration that is due to the prosumers for the services they provide. The proposed control strategy minimizes the active power generation cost in the aforementioned scenario. The control scheme requires that the prosumers measure their voltage and then adjust the amount of injected power, according to a continuous time feedback control law that is a projected gradient descent strategy. Simulations are provided to illustrate the algorithm behavior.
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