
百億億次級運算
百億億次級運算意味著巨大的運算能力。想像一個每秒鐘能夠進行五千萬次運算的系統,這就是百億億次級運算的威力。Altair 處於百億億次變革的最前沿,正在探索高效能運算 (HPC) 的新層次。在這個新的百億億次時代,我們正在開發可在下一代系統上擴展執行的工具,並支援機器學習、深度學習和多物理場等領域日益複雜的 HPC 需求。
HPC - 其效能取決於執行運算的軟體
強大的運算硬體需要搭配強大的軟體工具,就百億億次級運算技術而言,高效管理工作負載比以往任何時候都更重要。Altair® PBS Professional® 透過自動化作業調度、管理、監控和報告進行全面安排。
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探索百億億次級運算
我們已與 Argonne 國家實驗室建立合作關係,為 HPE 設計的 Aurora 系統提供百億億次級運算研究提供支援。而這只是開始。隨著百億億次時代的到來,我們正在開創可擴展的工具,使它們準備好在下一代系統上執行,並支持在人工智能 (AI)、機器學習、深度學習和多物理場領域中日益複雜的 HPC 需求。超級電腦對未來非常重要,做為美國能源部百億億次級運算專案 (ECP) 工業委員會的成員,我們將幫助美國打造百億億次級運算生態系統。我們很榮幸能夠協作並協助更好地模擬出精準醫療、增材製造、生質燃料等領域背後的流程。

優化百億億次級運算
百億億次級運算需要超強的速度和規模,以處理數以十億次計的運算。它需要極高的彈性和持續的故障復原能力。執行百億億次級運算系統需要大量電力,因此電源管理和良好的使用者體驗至關重要。我們已經為百億億次級運算及更遠的未來考慮了所有的這些問題,包括:
- Altair® Accelerator™ Plus 可以實現 6 到 10 倍的更大輸送量
- PMIx 實現快速啟動大規模 MPI 作業
- 雙活 PBS Professional 伺服器
- 可持續性供應™
- 混合式雲功能、ARM64、GPU 和 SSD
- 具有雙許可證模式並具廣泛外掛程式框架的 PBS Professional
- Altair® Control™,用於監控、分析和模擬
- 聚焦安全性

執行大量運算負載
Altair® PBS Professional® 可以執行大量運算負載,每個集群可包含 50,000 個節點,每個佇列可容納 10,000,000 個作業,還支持同時有 1,000 個活動使用者。它的執行速度很快,端到端輸送量是每小時 10,000,000 個作業,而對於一個超過 4,000 節點的作業,其端到端執行時間是 10 秒。世界上許多最大的運算系統都使用 PBS Professional 來支援高效的工作負載管理,目前的百億億次系統將對從製造業到個人化醫療等行業的未來產生廣泛影響,讓使用者能夠保持在創新的最前沿。 加入我們,走在 HPC 的前端。
特色資源

Tracking Virus Variants with AI – Argonne National Laboratory Researchers Win Gordon Bell Special Prize
The COVID-19 pandemic has impacted the entire planet, and researchers continue to investigate its catalyst: the SARS-CoV-2 virus and its variants. Discovering variants of concern (VOCs) quickly can save lives by giving scientists time to develop effective vaccines and treatments — but existing variant-tracking methods can be slow. A team of researchers at Argonne National Laboratory, along with university and industry collaborators, tackled the problem of tracking virus variants by using artificial intelligence (AI). The powerful Polaris supercomputer at the Argonne Leadership Computing Facility (ALCF), which is enabling science in the runup to the Aurora exascale system, enabled the research with help from Cerebras' AI-hardware accelerator and NVIDIA's GPU-accelerated Selene system. Polaris is equipped with GPUs and with workload orchestration by Altair® PBS Professional®. The project team won the ACM's prestigious 2022 Gordon Bell Special Prize for High Performance Computing-Based COVID-19 Research. The results the Argonne researchers and their collaborators have achieved paves the way for faster, more detailed insight into the virus mutation process, enabling scientists to act on emergent variants and develop ammunition to reduce severity and slow the spread, ultimately saving lives.

Simulating Supernovas in 3D - University Researchers Advance Space Science with Argonne HPC Resources
Everything in our world and beyond is made from a common set of materials — elements — that combine to become the diverse collection of matter all around us. When a star dies, going supernova in a spectacular explosion, it releases massive quantities of these elements. But how and why stars go supernova remains a mystery, and researchers from Princeton University and the University of California, Berkeley are using supercomputers at the Argonne Leadership Computing Facility (ALCF), including the powerful Polaris supercomputer, to enable 3D supernova simulation. Polaris is boosted by GPUs and equipped with workload orchestration by Altair® PBS Professional®, which automates job scheduling, management, monitoring, and reporting. Efficient workload management is critical for large, complex workloads like these. Enabled by powerful HPC, the researchers have created "the largest collection of sophisticated 3D supernova simulations ever performed."

Outstanding Scalability at NIAR - Advanced crash analysis solution proves twice as fast as leading competitor
To support its goal of accelerating the development cycle, early in 2020 NIAR commissioned a study to assess the scalability of Altair Radioss™, Altair’s structural analysis solver for highly non-linear problems under dynamic loadings. Regular support from an Altair engineer ensured swift familiarization with Radioss. The study was performed on Oracle Cloud Infrastructure (OCI). OCI with its bare metal HPC shapes that use low latency RDMA interconnect provided highly scalable infrastructure-as-a-service (IAAS) for Radioss.
