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Coordinating shiftable loads for collective photovoltaic self-consumption: A multi-agent approach

机译:用于集体光伏自耗的协调可移载荷:多种子体方法

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Collective photovoltaic self-consumption is an extension of traditional, single user self-consumption, whose objective is to maximize the share of local generated energy that is consumed at the generation point with multiple consumers sharing a photovoltaic system. With demand-side management, consumption profiles can be adapted to generation profiles which can be posed as an optimization problem. In this work, the problem of scheduling uninterruptible shiftable devices is addressed from a multiagent perspective considering two different approaches. On one hand, a centralized architecture assumes that a single agent has the capacity to solve all agents problems. On the other, a new partially distributed architecture is proposed to solve the same problem by distributing decision-making among agents using an heuristic algorithm with a virtual dynamic tariff as coordination mechanism. A computational experiment is set up in order to test increasing numbers of agents. Results show that the centralized approach, although finding the optimal solution, shows running times that are two orders of magnitude greater than the decentralized method, which is able to find high quality solutions at lower time cost but with increased monetary cost. This trade-off becomes more relevant as the number of agents increase.(c) 2021 Elsevier Ltd. All rights reserved.
机译:集体光伏自我消费是传统的单一用户自我消费的延伸,其目的是最大化局部产生的能量的份额,这些能量在具有共享光伏系统的多个消费者的发电点消耗的份额。随着需求侧管理,消耗配置文件可以适应可以作为优化问题构成的生成配置文件。在这项工作中,考虑两种不同方法的多元透视来解决调度不间断移动设备的问题。一方面,集中式架构假定单个代理具有解决所有代理问题的能力。另一方面,建议使用具有虚拟动态关税作为协调机制的启发式算法在代理中分发决策来解决相同的问题。建立计算实验以测试越来越多的代理。结果表明,集中方法虽然找到了最佳解决方案,但是显示了比分散方法大的两个数量级的运行时间,这能够以较低的时间成本找到高质量的解决方案,但随着货币成本增加。随着代理商的数量增加,这种权衡变​​得更加重要。(c)2021 Elsevier Ltd.保留所有权利。

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