Economic effects of trading watts and negawatts by agile customers in hierarchic energy markets

S. Tomic
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引用次数: 5

Abstract

In this paper we evaluate through simulations economic effects of active electrical energy trading for agile customers in hierarchic energy markets. The agile customers are those residential electricity customers who either have a capability to sell the so-called ”negawatts” (demand reduction), or who operate small renewable generators such as wind mills or solar panels and use storage (battery) to generate, store and trade energy. We assume that agile customers use some local energy management system, e.g. a software tool running on a residential gateway, to forecast their demand and generation and to access the local market for trading energy. Forecasting accuracy of these systems is of special interest: while lower forecasting accuracy leads to greater differences between forecasted and real consumption/generation, and hence to higher total cost of balancing energy that must be consumed from or be fed into the global grid, the higher accuracy leads to higher cost of the system. We study the impact of accuracy in an agent-based simulation environment in which we implemented a hierarchic grid and market architecture and performed experiments to discover intervals of accuracies and prices at which the agile customers achieve economic benefits.
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分级能源市场中灵活客户交易瓦特和负瓦特的经济效应
本文通过仿真对分层能源市场中敏捷用户主动电能交易的经济效果进行了评价。敏捷客户是那些有能力出售所谓的“负瓦”(需求减少)的住宅电力客户,或者使用小型可再生发电机(如风力发电机或太阳能电池板)并使用存储(电池)来产生,储存和交易能源的客户。我们假设敏捷客户使用一些本地能源管理系统,例如在住宅网关上运行的软件工具,来预测他们的需求和发电量,并进入本地市场进行能源交易。这些系统的预测准确性是特别值得关注的:虽然较低的预测准确性导致预测和实际消耗/发电之间的差异更大,因此平衡必须从全球电网消耗或馈送到全球电网的能源的总成本更高,但较高的准确性导致系统成本更高。我们在基于智能体的仿真环境中研究了准确性的影响,在该环境中,我们实现了分层网格和市场架构,并进行了实验,以发现敏捷客户实现经济效益的准确性和价格区间。
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