首页> 外文期刊>Journal of Cleaner Production >Optimal, dynamic and reliable demand-response via OpenADR-compliant multi-agent virtual nodes: Design, implementation & evaluation
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Optimal, dynamic and reliable demand-response via OpenADR-compliant multi-agent virtual nodes: Design, implementation & evaluation

机译:通过Openadr标准的多代理虚拟节点的最佳,动态和可靠的需求 - 响应:设计,实施和评估

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摘要

Extracting and exploiting the flexibility of electric demand has been shown to reduce the needs of network upgrades and generation capacity increases. Demand Response (DR) in considered as one of the few available solutions for accessing the untapped energy potential of small and medium customers. Over the past decade, rigorous research has produced significant results in optimally dispatching DR in an attempt to maximize flexibility extraction. However, the vast majority of works assumes a "happy path" scenario in which DR requests are always successfully completed. Hence, there is a large gap in the literature that fails to account for nondeterministic factors that manifest in practical deployments, e.g., the stochasticity of end-user behavior that can drastically influence the DR's outcomes. Investing on that notion, a novel, distributed, multi-agent system (MAS) that aggregates consumers and prosumers and handles automatically OpenADR-compliant DR requests is introduced, following virtual power plant (VPP) principles. Agents of the proposed MAS are able to service DR events originating from a higher level, e.g., Aggregators or Utilities, and optimally dispatch them to their assigned customers. The proposed framework ensures 100% DR success rate, compared to conventional methods, by not only optimally exploiting aggregated flexibility through a combination of clustering and optimisation engines, but also through a dynamic, bi-directional DR matchmaking process that can mitigate observed deviations both internally (intra), as well as, externally (inter) in real-time. Via experimentation, we demonstrate the framework's efficiency in ensuring technical DR fault-tolerance along with its ability to deliver savings of up to 3 orders of magnitude to Aggregators and the customers serving the DR requests.
机译:提取和利用电气需求的灵活性已被显示为降低网络升级的需求和发电能力增加。需求响应(DR)被认为是访问中小客户未开发的能源潜力的少数可用解决方案之一。在过去的十年中,严格的研究在最佳调度DR中产生了显着的结果,以便最大限度地提取柔韧性提取。但是,绝大多数作品都假设一个“快乐的道路”方案,其中DR请求始终成功完成。因此,文献中存在很大的差距,无法解释在实际部署中显现出的非明确因素,例如,最终用户行为的随机性,这些因素可以大大影响DR的结果。在虚拟电厂(VPP)原则之后,投资于聚集消费者和制度和处理的概念,这是一种聚集消费者和制度和处理和处理符合Openadr标准的DR请求的概念。拟议的MAS的代理能够在源自更高级别的博士事件,例如聚合器或公用事业,并最佳地将其发送到他们指定的客户。与传统方法相比,建议的框架确保了100%的成功率,而不仅通过聚类和优化引擎的组合进行了最佳地利用聚合灵活性,而且通过动态,双向DR匹配过程,可以在内部减轻观察到的偏差(内部),以及实时外部(互际)。通过实验,我们展示了框架的效率,即确保技术博士容错以及其能够为聚合器提供多达3个数量级的节省,以及服务DR请求的客户。

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