Britain’s electricity grid is being redesigned so that millions of households and businesses don’t just consume power but actively generate, store, and sell it. The HiDEF consortium is tackling the technical, market, and social overhaul needed to make this work. Today, most people are passive users of centrally supplied electricity. As wind and solar farms grow, and as millions of rooftop solar panels, micro-wind turbines, and home fuel cells come online, the old model breaks down. The grid needs to balance supply and demand in real time, but decentralised sources are unpredictable. HiDEF will develop the systems to manage this: smart meters that let households shift their electricity use to cheaper, greener times; power electronics that let small generators help stabilise local voltage and even national frequency; and new market structures that reward active participation. If successful, this research could transform the UK’s energy infrastructure from a one-way pipe into a two-way, self-balancing network. Consumers would become “prosumers,” earning money from their solar panels or fuel cells. The grid would become more resilient, less reliant on fossil fuel backup, and better able to absorb the growing share of renewables from offshore wind and tidal power. The consortium builds on earlier HDPS work that established baseline models and the “cell” concept for local energy delivery.
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The HiDEF consortium will explore highly decentralised energy futures. At the core of this is a sustainable electricity supply system that makes optimum use of decentralised assets and in which energy consumers participate actively in appropriately structured decentralised markets. This major change from the present arrangement, where most consumers are passive users of externally supplied energy services, will require new attitudes to energy and new ways working. The technical, market and social aspects of this transformation will be addressed in detail by the multi-disciplinary consortium that has been formed to embrace power system engineers, experts in electricity markets and researchers aware of the social and perceptual challenges.The technical developments that underpin the changes outlined above are the development of new high efficiency micro-CHP units (including the latest high temperature solid oxide fuel cells), the development of ever cheaper PV and micro-wind systems and the role out of smart electricity meters that will facilitate the involvement of even domestic consumers in demand side management. As time varying renewable sources become increasing prevalent in electricity supply, both in the form of small decentralised generators, and in the form of major offshore wind farms, tidal and wave energy installations, the role of highly decentralised load management will become ever more important. In addition the power electronic interfaces of decentralised generators can be used to provide more than just power - with suitable control other important network services like local voltage control, and even system frequency control, can be contributed.The consortium builds on the important work undertaken by the Highly Distributed Power Systems (HDPS) project that established base line models for the new technologies, developed suitable scenarios, and developed the cell concept of delivery.
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