![]() ![]() ![]() A PowerScale server can add up to 256 nodes in a cluster to an HPC environment, allowing HPC systems to scale in minutes. PowerScale storage solutions provide modular upgrades for HPC systems and can manage data and scale storage to almost any size, while satisfying performance and business requirements. PowerScale solutions can include important software add-ons including pixstor™ and the BeeGFS® filesystem. The validated Dell PowerScale storage solution combines the latest server technology with NAS resources, the OneFS operating system, and management software to create a state-of-the-art storage solution. Efficiency - Lower the cost of planning, deploying HPC storage, and managing data center hardware from anywhere, at any time with the power of Dell OpenManage.Reliability - Reduce configuration and interoperability issues while improving quality with storage that’s highly available, with no single point of failure.Simplicity - Simplify monitoring and management without specialized training or expertise required.Dell’s validated storage solution provides these advantages The Dell HPC Validated HPC storage solution uses the Dell PowerScale platform for system design. HPC systems can use parallel, concurrent, clustered, and distributed computing resources to process data from HPC workloads.ĭell validated storage solutions meet HPC storage needsĭell Validated Designs for HPC Storage solutions are delivered with hardware, software, and support from Dell Technologies. The nature of the data: High throughput or burst data needs different storage resources than I/O intensive or scalable data. The design of storage resources is critical in allowing HPC systems to reach top efficiency and throughput performance levels. The type, size, and speed: HPC workloads generate and consume large amounts of structured and unstructured data, depending on the type of workload (e.g., simulations, modeling, imaging, or video editing). Each storage type operates at different speeds, fills different needs, and performs in a different manner: Based on their configuration, storage servers can add petabytes of new storage in the form of HDDs, SSDs, NVMe, and network attached storage (NAS). HPC storage resources are scaled by adding and removing specialized servers in clusters. ![]() It is important that data storage resources can scale seamlessly across all locations, and ideally, present data as though it were sourced locally. HPC systems can run on-premises, in the cloud, or in hybrid mode. Organizations need to find the right mixture of the storage types that are configured into pluggable solutions, which can balance capacity, performance, and cost requirements.ĭata storage needs can vary greatly depending on the type of workload, the volume of data, and the complexity involved in processing the data. Organizations need a way to quickly make difficult decisions involved in choosing memory types, locations, and configurations in planning an upgrade for their HPC systems. Many organizations have outdated HPC system designs that impact the ability to easily configure and manage HPC storage. The exponential growth of new workloads using HPC/AI systems puts extraordinary pressure on data storage systems for innovative solutions that can scale as data files grow and are easy to manage and update. Data storage resources are a critical part of HPC and AI systems. These workloads create vast amounts of data which must be computed and stored. HPC and AI workloads are used by organizations including academia, scientific research, and in industries including telecommunication, healthcare and life sciences, manufacturing, financial services, electronic design automation (EDA), media and entertainment, retail, government as well as oil and gas. High performance computing (HPC) and artificial intelligence (AI) are increasingly used across industries and are reshaping the future. How Dell HPC storage meets these design needs ![]()
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