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Consumer preference–enabled intelligent energy management for smart cities using game theoretic social tie

机译:利用博弈论的社会纽带,基于消费者偏好的智能城市智能能源管理

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In smart cities, balanced energy usage is a classic scheduling target in decision-making of power systems. To handle multiple energy consumers, energy management is usually built based on game theory. Despite their effectiveness, they do not consider consumer preferences, which are however important in developing salient scheduling frameworks. For the first time, this work explores consumer preference–based social networking in computing-optimized schedules to facilitate the incorporation in energy management. We propose the consumer preference driven intelligent energy management technique for smart cities using game theoretic social tie. In our technique, social communities are constructed based on the preference of electricity usage. To support dynamic decisions in the consumer preference–induced game, community pricing strategy is adjusted during each time period through leveraging cooperative game theory. The simulation results demonstrate the effectiveness and efficiency of the proposed intelligent energy management technique.
机译:在智慧城市中,平衡的能源使用是电力系统决策中的经典调度目标。为了处理多个能源消耗者,通常基于博弈论建立能源管理。尽管它们很有效,但是他们没有考虑消费者的偏好,但是消费者的偏好在开发显着的调度框架中很重要。这项工作首次在计算优化的时间表中探索了基于消费者偏好的社交网络,以促进将其纳入能源管理。我们使用博弈论的社会关系为智能城市提出了基于消费者偏好的智能能源管理技术。在我们的技术中,社交社区是根据用电偏好来构建的。为了支持由消费者偏好引起的博弈中的动态决策,通过合作博弈理论在每个时间段内都会调整社区定价策略。仿真结果证明了所提出的智能能源管理技术的有效性和效率。

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