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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >nPlug: An Autonomous Peak Load Controller
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nPlug: An Autonomous Peak Load Controller

机译:nPlug:自主峰值负载控制器

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The Indian electricity sector, despite having the world's fifth largest installed capacity, suffers from a 12.9% peaking shortage. This shortage could be alleviated, if a large number of deferrable loads, particularly the high powered ones, could be moved from on-peak to off-peak times. However, conventional Demand Side Management (DSM) strategies may not be suitable for India as the local conditions usually favor inexpensive solutions with minimal dependence on the pre-existing infrastructure. In this work, we present a completely autonomous DSM controller called the nPlug. nPlug is positioned between the wall socket and deferrable load(s) such as water heaters, washing machines, and electric vehicles. nPlugs combine local sensing and analytics to infer peak periods as well as supply-demand imbalance conditions. They schedule attached appliances in a decentralized manner to alleviate peaks whenever possible without violating the requirements of consumers. nPlugs do not require any manual intervention by the end consumer nor any communication infrastructure nor any enhancements to the appliances or the power grids. Some of nPlug's capabilities are demonstrated using experiments on a combination of synthetic and real data collected from plug-level energy monitors. Our results indicate that nPlug can be an effective and inexpensive technology to address the peaking shortage. This technology could potentially be integrated into millions of future deferrable loads: appliances, electric vehicle (EV) chargers, heat pumps, water heaters, etc.
机译:尽管印度电力部门的装机容量排名世界第五,但其峰值缺电率仍高达12.9%。如果可以将大量可延迟的负载(尤其是高功率负载)从高峰时间转移到非高峰时间,则可以缓解这种短缺。但是,传统的需求方管理(DSM)策略可能不适用于印度,因为当地条件通常倾向于使用廉价的解决方案,而对现有基础结构的依赖性却很小。在这项工作中,我们提出了一种称为nPlug的完全自主的DSM控制器。 nPlug位于墙壁插座和可延迟负载之间,例如热水器,洗衣机和电动汽车。 nPlug将本地检测和分析功能相结合,以推断高峰期以及供需不平衡状况。他们以分散的方式安排连接的设备,以在不违反消费者要求的情况下尽可能地缓解高峰。 nPlug不需要最终用户进行任何手动干预,也不需要任何通信基础设施,也不需要对设备或电网进行任何增强。 nPlug的某些功能已通过对从插头级电能监控器收集的合成数据和实际数据进行组合的实验得到了证明。我们的结果表明,nPlug可以作为一种有效且廉价的技术来解决峰值短缺问题。这项技术可能会集成到数百万个未来可延期的负载中:电器,电动汽车(EV)充电器,热泵,热水器等。

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