充分发挥直流潜力的第一步:提高家用设备的能源效率

P. van Willigenburg, J. Woudstra, Tim de Lange, H. Stokman
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引用次数: 2

摘要

交通、通讯、工作和生活的电气化在世界范围内继续发展。电视、电话、服务器是日常生活的重要组成部分。这些负载和大多数可持续的电源都有一个共同点:直流电。荷兰的研究和教育项目“直流-充分发挥其潜力之路”研究了从直流电网为这些电器供电的影响。能源效率的提高是预期的,其他好处是未知的,需要实际的考虑来与交流电网进行适当的比较。本文首先简要介绍了该计划及其最初阶段。这些阶段首先包括调试、选择和实施一个安全和用户友好的测试设备,以比较家用电器在交流和直流供电时的性能。其次,解释了直流测试设备与现有建模和仿真任务之间的关系。第三,从广义上讨论第一个结果。家用电器的能源效率已经提高了3%至5%。这就为国内直流系统的整体性能提出了问题。最后,论文提出了对计划和未来项目的指导方针进行细微修改的建议。这些变化包括为产品开发目的而进一步研究家用电器,从而减少了用于新的昂贵的高功率测试设备的手段。可能的收益是1)材料和部件的节省2)更简单和更便宜的外观3)稳定和安全的内部基础设施4)同时结合当地的可持续发电。这就是前方的道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First step to full DC-potential: Improving energy efficiency in household equipment
Electrification of transportation, communication, working and living continues worldwide. Televisions, telephones, servers are an important part of everyday life. These loads and most sustainable sources as well, have one thing in common: Direct Current. The Dutch research and educational programme `DC - road to its full potential' studies the impact of feeding these appliances from a DC grid. An improvement in energy efficiency is expected, other benefits are unknown and practical considerations are needed to come to a proper comparison with an AC grid. This paper starts with a brief introduction of the programme and its first stages. These stages encompass firstly the commissioning, selection and implementation of a safe and user friendly testing facility, to compare performance of domestic appliances when powered with AC and DC. Secondly, the relationship between the DC-testing facility and existing modeling and simulation assignments is explained. Thirdly, first results are discussed in a broad sense. An improved energy efficiency of 3% to 5% is already demonstrated for domestic appliances. That opens up questions for the performance of a domestic DC system as a whole. The paper then ends with proposed minor changes in the programme and guidelines for future projects. These changes encompass further studying of domestic appliances for product-development purposes, leaving less means for new and costly high-power testing facilities. Possible gains are 1) material and component savings 2) simpler and cheaper exteriors 3) stable and safe in-house infrastructure 4) whilst combined with local sustainable generation. That is the road ahead.
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