半导体在能源领域的作用

C. Papa
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引用次数: 1

摘要

半导体技术、产品和解决方案长期以来一直在提高整个能源链的效率方面发挥着关键作用,这种作用的重要性将不断增加。未来最大的节能将来自半导体技术的采用,特别是在建筑中,预计到2030年,建筑的用电量将减少50%左右。在这一领域,节约将来自三个方面:更高效的电器(估计减少60%),智能照明和暖通空调(最多减少50%),以及由于能源监控内部系统(最多节省20%的潜力),消费者层面的能源消耗意识增强。此外,智能电网的出现将有助于节能和生态可持续性。随着智能电表和自动电表基础设施(AMI)的部署,通过改进的建模和控制,电网优化将大大减少基础设施的损失。最重要的是,它将使可再生能源作为传统碳基能源的替代品得以整合,从而有可能实现国际目标,如欧洲的欧盟20-20-20目标,这些目标可以大大有助于减少二氧化碳排放和遏制全球变暖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of semiconductors in the energy landscape
Semiconductor technologies, products and solutions have long played a key role in improving efficiency along the whole energy chain and the importance of this role will continually increase. The greatest future energy saving will come from the adoption of semiconductor technologies, especially in buildings, which are forecasted to consume around 50% less electricity in 2030. In this area, savings will come from three sources: more efficient appliances (with an estimated 60% reduction), intelligent lighting and HVAC (with up to 50% reduction), and increased energy-consumption consciousness at the consumer level, thanks to energy monitoring in-house systems (with up to 20% potential saving). Furthermore, the advent of the Smart Grid will contribute to energy saving and to eco-sustainability. Grid optimization, through the improved modeling and control that will be possible with the deployment of Smart Meters and Automatic Meter Infrastructures (AMI), will significantly reduce infrastructure losses. Above all, it will enable the integration of renewable sources as alternatives to traditional carbon-based sources, allowing the possibility of meeting international targets such as Europe's EU 20-20-20 target that can strongly contribute reductions in CO2 emissions and containment of global warming.
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