返回
Climate smart computing: A perspective
DOI:10.1016/j.pmcj.2025.102019.png)
摘要
En 中文
Climate change is a societal grand challenge and many nations have signed the Paris Agreement (2015) aiming for net-zero emissions. The computing community has an opportunity to contribute significantly to addressing climate change across all its dimensions, including understanding, resilience, mitigation, and adaptation. Traditional computing methods face major challenges. For example, machine learning is overwhelmed due to non-stationarity (e.g., climate change), data paucity (e.g., rare climate events), the high cost of ground truth collection, and the need to observe natural laws (e.g., conservation of mass). This paper shares a perspective on a range of climate-smart computing challenges and opportunities based on multi- decade scholarly activities and acknowledges the broader societal debate on climate solutions. Moreover, it envisions advancements in computing methods specifically designed to tackle the challenges posed by climate change. It calls for a broad array of computer science strategies and innovations to be developed to address the multifaceted challenges of climate change.
Keyword:
Climate resilient computing
Decarbonizing computing
Climate scale computing
Climate change
Net zero
期刊
IF:
3.5
论文数:
1.5K
被引数:
2.2K
机构
暂无机构信息
引用论文
Sensors Made of Natural Renewable Materials: Efficiency, Recyclability or Biodegradability-The Green Electronics由天然可再生材料制成的传感器: 效率,可回收性或可生物降解性-绿色电子产品
SENSORS
IF3.5
Flood Risk in Urban Areas: Modelling, Management and Adaptation to Climate Change. A Review城市地区的洪水风险: 建模、管理和适应气候变化。一个审查
hydrology
IF3.2
The mutational landscape of prostate cancer linked with pre-docetaxel LDH determines docetaxel treatment in mCRPC前列腺癌的突变谱与预多西他赛前LDH相关,决定了mCRPC中多西他苯治疗的选择

