Climate change has become one of the biggest global problems increasingly compromising the Earth's habitability. Recent developments such as the extraordinary heat waves in California & Canada, and the devastating floods in Germany point to the role of climate change in the ever-increasing frequency of extreme weather. Numerical modelling of the weather and climate have seen tremendous improvements in the last five decades, yet stringent limitations remain to be overcome. Spatially and temporally localized forecasting is the need of the hour for effective adaptation measures towards minimizing the loss of life and property. Artificial Intelligence-based methods are demonstrating promising results in improving predictions, but are still limited by the availability of requisite hardware and software required to process the vast deluge of data at a scale of the planet Earth. Quantum computing is an emerging paradigm that has found potential applicability in several fields. In this opinion piece, we argue that new developments in Artificial Intelligence algorithms designed for quantum computers - also known as Quantum Artificial Intelligence (QAI) - may provide the key breakthroughs necessary to furthering the science of climate change. The resultant improvements in weather and climate forecasts are expected to cascade to numerous societal benefits.
翻译:最近的事态发展,如加利福尼亚和加拿大的异常热浪和德国的毁灭性洪水,表明气候变化在极端天气日益频繁的频率中所起的作用。过去五十年来,天气和气候的建模有了巨大的改进,但仍有严格的限制有待克服。空间和时间上局部的预测是需要时间采取有效的适应措施,以尽量减少生命和财产损失。人工情报方法在改进预测方面正在显示出有希望的结果,但是由于在地球规模上处理大量数据所需的硬件和软件的供应仍然有限。量子计算是一个新出现的模式,在几个领域都发现潜在适用性。在这个意见书中,我们认为,设计量子计算机的人工智能算法的新发展――也称为量子人工智能(QAI)――可能为推进气候变化科学提供必要的重大突破。天气和气候预报的结果预计将逐步达到无数的社会效益。