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Technology Invention and Diffusion in Residential Energy Consumption. A Stochastic Frontier Approach

机译:技术发明与住宅能源消费的扩散。随机前沿方法

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摘要

Traditional large appliances absorb a large share of residential electricity consumption and represent important targets of energy policy strategies aimed at achieving energy security. Despite being characterized by rather mature technologies, this group of appliances still offers large potential in terms of efficiency gains due to their pervasive diffusion. In this paper we analyse the electricity consumption of a set of four traditional u2018white goodsu2019 in a panel of ten EU countries observed over 21 years (1990-2010), with the aim of disentangling the amount of technical efficiency from the overall energy saving. The technical efficiency trend is modelled through a set of technology components representing both the invention and adoption process by means of specific patents weighted by production and bilateral import flows, which allows to overcome the rigid Stochastic Frontier framework in modelling the effect of technical change. Our results show that the derived energy demand and inefficiency trends are both related to changes in the amount of available technology embodied in energy efficient appliances. The effect is significant both in its domestic and international components and suggests an active role of innovation and trade policies for achieving efficiency targets which directly impact the amount of electricity consumed by households.
机译:传统的大型家用电器吸收了大量的住宅用电量,并代表了旨在实现能源安全的能源政策战略的重要目标。尽管这些设备具有相当成熟的技术,但由于它们的广泛普及,在提高效率方面仍具有巨大潜力。在本文中,我们分析了21个国家(1990年至2010年)观察到的10个欧盟国家/地区中一组四种传统的白色家电的用电量,目的是将技术效率与总能源消耗区分开来保存。技术效率趋势是通过代表生产和双边进口流量的特定专利,通过代表发明和采用过程的一组技术组件来建模的,这可以克服在建模技术变化效果时所采用的严格的随机前沿框架。我们的结果表明,得出的能源需求和低效趋势都与节能电器中体现的可用技术数量的变化有关。其影响在其国内和国际方面都非常重要,并表明创新和贸易政策对于实现直接影响家庭用电量的效率目标的积极作用。

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