Distributed control strategies for high-penetration commercial-building-scale thermal storage

A. Mammoli, C. B. Jones, H. Barsun, D. Dreisigmeyer, G. Goddard, O. Lavrova
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引用次数: 12

Abstract

For the commercial building sector, the fraction of peak electric load due to cooling sometimes approaches 50%. Meeting this load can create severe problems for electric utilities. Building-scale thermal storage can turn this problem into a resource, allowing both a reduction of the peak demand on the electricity infrastructure, and the ability to absorb intermittent power production from renewable energy resources such as wind and solar PV. In this study, the effects of two types of distributed control of thermal storage resources are considered with respect to their effectiveness in load leveling and renewables uptake. It is found that both real-time pricing and stochastic control strategies can reduce peak loads substantially, and can react to the availability of renewable energy at the transmission level.
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高渗透商业建筑规模蓄热的分布式控制策略
对于商业建筑部门,由于冷却的峰值电力负荷的比例有时接近50%。满足这样的负荷会给电力公司带来严重的问题。建筑规模的储热可以将这一问题转化为一种资源,既可以减少电力基础设施的高峰需求,又可以吸收风能和太阳能光伏等可再生能源产生的间歇性电力。在本研究中,考虑了两种类型的分布式蓄热资源控制在负荷均衡和可再生能源吸收方面的有效性。研究发现,实时定价和随机控制策略均能显著降低峰值负荷,并能响应输电层可再生能源的可用性。
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