首页> 外文会议>Innovative Smart Grid Technologies (ISGT), 2012 IEEE PES >Simulation models for evaluation of network design and hierarchical transactive control mechanisms in Smart Grids
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Simulation models for evaluation of network design and hierarchical transactive control mechanisms in Smart Grids

机译:用于评估智能电网中的网络设计和分层主动控制机制的仿真模型

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Smart-grid technologies seek to enhance the electrical grid's efficiency by introducing bi-directional communication and dynamic adaptive control between energy suppliers and consumers. We develop a large-scale network simulation model for evaluating such a hierarchical transactive control system that is part of our work on the Pacific Northwest Smart Grid Demonstration Project. The transactive control system communicates local supply conditions using incentive signals and load adjustment responses using feedback signals in a distributed fashion in order to match the consumer-desired load to the utility-desired supply scenario. We study the system protocol and a dynamic control mechanism that is implied by the design under a reasonable collection of models that capture load variation, stochastic signal losses, consumer fatigue to demand response and certain `stickiness' criterion on the control signals that arise out of physical constraints. Our results indicate that the control mechanism can perform adequately in adjusting the aggregate supply-demand mismatch, and is robust to steady transactive signal losses.
机译:智能电网技术试图通过在能源供应商和消费者之间引入双向通信和动态自适应控制来提高电网效率。我们开发了一个大型网络仿真模型,用于评估这种分层的无源控制系统,这是我们在太平洋西北地区智能电网示范项目中开展的工作的一部分。被动控制系统使用激励信号传达本地供应条件,并使用反馈信号以分布式方式传达负载调整响应,以使用户期望的负载与公用事业期望的供应方案相匹配。我们在合理的模型集合(包括捕获负载变化,随机信号损失,消费者对需求响应的疲劳程度以及某些由控制引起的控制信号的“粘性”标准)下研究了系统隐含的协议以及动态控制机制。身体上的限制。我们的结果表明,该控制机制可以在调节总的供需不匹配方面充分发挥作用,并且对于稳定的传输信号损耗具有鲁棒性。

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