通过高功率电子设备实现-能源效率,可再生能源和智能电网

P. Steimer
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引用次数: 87

摘要

全球对电能的需求持续增长,是一次能源消费增长率的两倍。由于从初级燃料到最终用户的能源效率和可再生能源的整合是未来的关键挑战,因此必须明确过渡到更多的电力能源系统。向更多电能系统的过渡需要将今天的电力系统转变为更智能的未来电网。高功率电子技术是构建下一代更多电能系统的关键技术,以支持能源效率,可再生能源整合和智能电网的主要趋势。由于传统硅器件及其封装技术的实质性改进,达到更高的结温和电压水平,大功率电子器件将继续自我创新。具有实际应用效益的新型宽带隙材料将进入利基市场。多种新的多层次拓扑结构将从根本上改变大功率电子器件,以支持能源效率和标准电力设备的直接连接。能源效率是最重要的话题:需要在有效利用一次能源方面进行真正的改革。能源效率要求注重高效发电,包括强制使用废热、混合动力和纯电力运输以及提高工业过程效率。我们需要在全球法规的支持下,创造一种从初级能源到最终用户的节能文化。随着能源价值的增加,高效利用将变得有吸引力。向更多可再生能源的快速过渡是另一个重要话题。50小时的阳光照射地球所产生的能量相当于全球煤炭储量所储存的能量。因此,未来最重要的可再生能源,即太阳能和风能的主导地位实际上是毋庸置疑的。问题在于转型的速度。特别是太阳能,作为一种应用简单的技术,其发展速度将远远超过预期。它在过去几年的发展速度总是超出预期。十多年来,风能也是如此。同样,这一重要变革需要得到强有力的全球法规的支持,以在这一过渡阶段实现市场上的速度和竞争力。最后但并非最不重要的一点是:为了收获我们在交流电网上所做的所有投资,向智能电网的过渡是强制性的。这样的智能电网将基于两个关键要素:智能和大功率电子设备。智能将允许更好地利用现有资产,并将增加传统交流电网的稳定裕度。大功率电子设备将主要在输配电层面增加新的直流电网和交流无功源,作为现有交流电网的骨干和额外的稳定支柱。
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Enabled by high power electronics - Energy efficiency, renewables and smart grids
The global demand for electrical energy is growing continuously, at double the growth rate of primary energy consumption. A clear transition to more electric energy systems is mandatory as energy efficiency from primary fuel to the enduser and the integration of renewables are the future key challenges. This transition to more electrical energy systems requires the transformation of today's electric power system to a smarter future grid. High power electronics is the key technology to build the next generation of the more electrical energy systems to support the major trends in energy efficiency, renewables integration and smart grid. High power electronics will continue to innovate itself due to the substantial improvement of conventional silicon devices and their packaging technologies reaching higher junction temperature and voltage levels. New wide band-gap material with substantial application benefit will enter niche markets. Multiple new multi-level topologies will change high power electronics fundamentally to support energy efficiency and the direct connection of standard power equipment. Energy efficiency is the most important topic: A real step change in regards of efficient use of primary energy is needed. Energy efficiency requires focus on efficient electrical power generation including mandatory use of waste heat, hybrid and pure electrical transportation and increased industrial process efficiency. We need to create an energy-efficient culture - from primary energy to end user -supported by global regulations. As energy as such will increase in value, efficient use will get attractive. The fast transition to more renewables energy sources is the other important topic. The energy of fifty hours of sunshine hitting the earth is equivalent to the energy stored in coal reserves globally. Therefore the future dominant role of the most important renewables, i.e. solar and wind, is actually unquestionable. The question mark lies on the speed of the transition. Especially solar power, as simple technology in the application, will develop much faster than expected. Its speed in the last years has always exceeded expectations. The same is valid for wind power since more than a decade. Again this important change needs to be supported by strong global regulations to achieve speed and competitiveness in the market place in this transition phase. And last but not least: To harvest all the investments done in our AC grids, the transition to a smarter grid is mandatory. Such a smart grid will be based on two key ingredients: Intelligence and High power electronics. Intelligence will allow a better utilization of existing assets and will increase the stability margin of the conventional AC grid. High power electronics will mainly add new DC grids and AC Var sources at the transmission and distribution level, serving as backbones and additional stability pillars to existing AC grids.
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