基于智能体的住宅用电量/发电量实时估算模拟器设计

Antonio Sa, R. Lopes, J. Martins
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引用次数: 3

摘要

需求响应程序通过随时间改变其成本来影响最终用户的用电量。在这种情况下,为了更好地管理建筑物的能源需求,从而管理与电力相关的成本,用户需要根据建筑物边界上的电气设备的功能估算建筑物的能源需求和现场生产。本文提出了一个基于代理的电子模拟器,其主要目标是为消费者提供这些工具。所提出的模拟器使用混合的“自下而上”方法,同时使用统计和物理模型。所述软件能够以1分钟的时间分辨率估算24小时内的能源需求和现场发电量,并计算每种场景的能源价格。因此,对需求端的更多控制被赋予了最终用户,从而可以轻松地对一天中的电力成本变化做出反应。这些技术可以帮助用户最大限度地利用可再生能源,并降低电力成本。另一方面,它也有利于能源供应商,因为它更有可能减少高峰时段的需求。
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Design of an agent-based simulator for real-time estimation of power consumption/generation in residential buildings
Demand Response programs influence the end-user electricity usage by changing its cost along the time. In this scenario, to better manage the building's energy demand and consequently the electricity related costs, the user needs to estimate the energy demand and on-site production of the building in function of the electrical devices that are present on the building boundary. This paper presents an agent-based electrical simulator that has been built with the main objective of providing those tools to the consumer. The proposed simulator uses a hybrid "bottom-up" approach, with both statistical and physical models. The referred software is capable of estimating the energy demand and on-site generation with a 1-min time resolution for the period of 24h and calculates the energy price for each scenario. Therefore more control over the demand side is given to the end-user, allowing an easy response to changes in the electricity costs along the day. Such techniques could help the user to maximize the usage of renewable energy and to lower the electricity costs. On the other hand it is also beneficial for the energy provider since it is more likely to reduce the demand at peak hours.
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