Technology companies have been leading the way to a renewable energy transformation, by investing in renewable energy sources to reduce the carbon footprint of their datacenters. In addition to helping build new solar and wind farms, companies make power purchase agreements or purchase carbon offsets, rather than relying on renewable energy every hour of the day, every day of the week (24/7). Relying on renewable energy 24/7 is challenging due to the intermittent nature of wind and solar energy. Inherent variations in solar and wind energy production causes excess or lack of supply at different times. To cope with the fluctuations of renewable energy generation, multiple solutions must be applied. These include: capacity sizing with a mix of solar and wind power, energy storage options, and carbon aware workload scheduling. However, depending on the region and datacenter workload characteristics, the carbon-optimal solution varies. Existing work in this space does not give a holistic view of the trade-offs of each solution and often ignore the embodied carbon cost of the solutions. In this work, we provide a framework, Carbon Explorer, to analyze the multi-dimensional solution space by taking into account operational and embodided footprint of the solutions to help make datacenters operate on renewable energy 24/7. The solutions we analyze include capacity sizing with a mix of solar and wind power, battery storage, and carbon aware workload scheduling, which entails shifting the workloads from times when there is lack of renewable supply to times with abundant supply. Carbon Explorer will be open-sourced soon.
翻译:技术公司通过投资于可再生能源,以减少其数据中心的碳足迹,一直引导可再生能源转型。除了帮助建设新的太阳能和风能农场外,公司还签订电力采购协议或购买碳抵消,而不是每天每天每天(24/7)都依赖可再生能源。由于风能和太阳能的间歇性性质,目前全天候依赖可再生能源是具有挑战性的。太阳能和风能生产中的固有差异在不同时间造成过多或缺乏供应。为了应对可再生能源发电的波动,必须采用多种解决方案。其中包括:能力与太阳能和风能的组合、能源储存选项和碳意识工作量安排相结合。然而,根据区域和数据中心工作量特点,碳的最佳解决方案各不相同。由于目前这一空间的工作无法全面了解每种解决方案的利弊,而且往往忽视各种解决方案所包含的碳成本。在这项工作中,我们提供了一个框架,即碳探索者,通过考虑运行和嵌入的太阳能和风能选项的足迹来分析多维解决方案空间。我们从24/7的碳储量周期到分析可再生能源供应量的变换时间。