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Cost optimal self-consumption of PV prosumers with stationary batteries, heat pumps, thermal energy storage and electric vehicles across the world up to 2050

机译:具有固定电池,热泵,全世界热能储存和电动汽车的PV制度的成本最佳自我消耗达2050

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Globally, PV prosumers account for a significant share of the total installed solar PV capacity, which is a growing trend with ever-increasing retail electricity prices. Further propelled by performance improvements of solar PV and innovations that allow for greater consumer choice, with additional benefits such as cost reductions and availability of incentives. PV prosumers may be one of the most important enablers of the energy transition. PV prosumers are set to gain the most by maximising self-consumption, while avoiding large amounts of excess electricity being fed into the grid. Additionally, electricity and heat storage technologies, heat pumps and battery electric vehicles are complementary to achieve the highest possible self-consumption shares for residential PV prosumer systems, which can reach grid-parity within this decade in most regions of the world. This research finds the cost optimal mix of the various complementary technologies such as batteries, electric vehicles, heat pumps and thermal heat storage for PV prosumers across the world by exploring 4 different scenarios. Furthermore, the research presents the threshold for economical maximum battery capacity per installed PV capacity, along with self-consumption ratios, demand cover ratios and heat cover ratios for 145 different regions across the world. This is a first of its kind study to conduct a global analysis of PV prosumers with a range of options to meet their complete energy demand from a future perspective, up to 2050. Maximising self-consumption from solar PV generation to meet all energy needs will be the most economical option in the future, for households across most regions of the world.
机译:在全球范围内,PV ProSumers占总安装的太阳能光伏能力的大量份额,这是一种不断增长的趋势,零售电价不断增加。通过对太阳能光伏和创新的性能改进进一步推动了允许更大的消费者选择的创新,具有额外的好处,例如成本减少和激励措施的可用性。 PV ProSumers可能是能源转型最重要的推动者之一。通过最大化自耗来设定PV ProSumers最大限度地获得最大,同时避免大量的多余电量被送入电网。此外,电力和储热技术,热泵和电池电动汽车是互补的,以实现住宅光伏制度系统的最高可能的自耗股,这可以在世界上大多数地区的十年内达到网格平等。本研究通过探索4种不同的场景,找到了各种互补技术,例如世界各地的电池,电动车辆,热泵和热量储热量的热量储热量的成本最佳混合。此外,该研究介绍了每个安装的PV容量的经济最大电池容量的阈值,以及全球145个不同地区的自用含量比,需求覆盖率和热覆盖比率。这是一个第一个研究对PV的制度分析,通过一系列选项来满足从未来的观点来满足完全的能源需求,高达2050年。最大化来自太阳能光伏生成的自我消费,以满足所有能源需求成为未来最经济的选择,在世界上大多数地区的家庭。

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