고성능 컴퓨팅 시장 규모, 점유율, 업계 분석 보고서 : 구성요소별, 전개별, 최종 용도별, 지역별 전망 및 예측(2025-2032년)
Global High Performance Computing Market Size, Share & Industry Analysis Report By Component, By Deployment, By End Use, By Regional Outlook and Forecast, 2025 - 2032
상품코드 : 1936229
리서치사 : KBV Research
발행일 : 2026년 01월
페이지 정보 : 영문 600 Pages
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한글목차

세계 고성능 컴퓨팅 시장 규모는 2025년 595억 7,000만 달러로 추정되며, 2032년까지 949억 1,000만 달러에 달할 것으로 예상됩니다. 예측 기간(2025-2032년) 동안 CAGR 6.9%로 확대될 것으로 예상됩니다.

주요 하이라이트:

고성능 컴퓨팅은 정부 주도의 과학기술 역량에서 발전하여 산업, 현대 연구, 국가 경쟁력을 뒷받침하는 기반 기술로 성장했습니다. 제약, 자동차, 제조, 에너지 등의 산업은 모델링, 시뮬레이션, 데이터 집약적 분석에서 고성능 컴퓨팅에 크게 의존하고 있습니다. 상용 프로세서와 네트워크 기술의 발전으로 클러스터 시스템이 대중화되면서 산업계와 학계에서의 고성능 컴퓨팅 도입이 확대되었습니다. 고성능 컴퓨팅은 클라우드 기반 서비스, 온프레미스 시스템, 전용 가속기를 아우르는 통합 생태계로 발전하고 있으며, 정부의 디지털 전략 및 AI 전략과 일치하고 있습니다.

고성능 컴퓨팅 시장은 인공지능과의 융합, 접근성과 효율성에 대한 관심 증가, 엑사스케일 컴퓨팅의 확산에 힘입어 성장하고 있습니다. GPU 가속 및 가속기 중심의 설계를 통해 AI 워크로드와 시뮬레이션을 통합적으로 지원할 수 있으며, 공공 자금으로 지원되는 엑사스케일 이니셔티브는 에너지 효율성, 성능, 확장성에 초점을 맞추고 있습니다. 클라우드 기반 및 하이브리드 고성능 모델은 도입 장벽을 낮추고 유연한 확장을 가능하게 하며, 소프트웨어와 하드웨어를 실제 워크로드에 맞게 조정하는 공동 설계 전략으로 보완됩니다. 고성능 컴퓨팅 시장은 IBM, HPE, AMD, AMD, NVIDIA, 후지쯔, 레노버, 인텔 등의 업체들이 주도하는 치열한 경쟁 상황이며, 소프트웨어 생태계, 아키텍처 혁신, 강력한 정부 및 연구기관과의 협력으로 차별화 요인이 추진되고 있습니다.

KBV Cardinal matrix의 분석에 따르면, 마이크로소프트와 아마존웹서비스(AWS)가 고성능 컴퓨팅 시장의 선두주자입니다. 시스코 시스템즈, IBM, 델 테크놀러지스 등의 기업들은 고성능 컴퓨팅 시장의 주요 혁신가들 중 일부입니다. 2024년 10월, 마이크로소프트는 AI 슈퍼컴퓨팅에 최적화된 최신 Azure 가상 머신 'ND H200 v5 시리즈'를 발표했습니다. NVIDIA H200 Tensor Core GPU가 탑재된 이 가상 머신은 AI 워크로드의 성능, 확장성, 효율성을 향상시키고, 클라우드에서 고급 AI 모델을 위한 딥러닝, 대규모 트레이닝, 추론을 지원합니다.

목차

제1장 시장 범위와 조사 방법

제2장 시장 요람

제3장 시장 개요

제4장 시장 동향 : 고성능 컴퓨팅 시장

제5장 경쟁 : 고성능 컴퓨팅 시장

제6장 시장 통합 : 고성능 컴퓨팅 시장

제7장 주요 고객 기준 : 고성능 컴퓨팅 시장

제8장 밸류체인 분석 : 고성능 컴퓨팅 시장

제9장 경쟁 분석 : 세계

제10장 제품수명주기 : 고성능 컴퓨팅 시장

제11장 세계의 고성능 컴퓨팅 시장 : 구성요소별

제12장 세계의 고성능 컴퓨팅 시장 : 전개별

제13장 세계의 고성능 컴퓨팅 시장 : 최종 용도별

제14장 세계의 고성능 컴퓨팅 시장 : 지역별

제15장 기업 개요

제16장 성공 필수요소 : 고성능 컴퓨팅 시장

KSM
영문 목차

영문목차

The Global High Performance Computing Market size is estimated at $59.57 billion in 2025 and is expected to reach $94.91 billion by 2032, rising at a market growth of 6.9% CAGR during the forecast period (2025-2032).

Key Highlights:

High performance computing has developed from a government-led scientific capability into a foundational technology supporting industry, modern research, and national competitiveness. Industries like pharmaceuticals, automotive, manufacturing, and energy largely rely on high performance computing for modelling, simulation, and data-intensive analysis. Advances in commercial processors and networking facilitated clustered systems, thereby expanding high-performance adoption into industry and academia. High performance computing has become an integrated ecosystem that covers cloud-based services, on-premises systems, and specialized accelerators, aligned with government digital and AI strategies.

The high performance computing market is driven by convergence with artificial intelligence, growing focus on accessibility and efficiency, and the uptake of exascale computing. GPU-accelerated and accelerator-centric designs allow unified support for AI workloads and simulation, while publicly funded exascale initiatives focus on energy efficiency, performance, and scalability. Cloud-based and hybrid high performance models are lowering adoption barriers and allowing flexible scaling, complemented by co-design strategies that align software and hardware with real-world workloads. The high-performance computing market seems to be highly competitive, led by providers like IBM, HPE, AMD, NVIDIA, Fujitsu, Lenovo, and Intel, with differentiation driven by software ecosystems, architectural innovation, and strong government and research partnerships.

The major strategies followed by the market participants are Product Launches as the key developmental strategy to keep pace with the changing demands of end users. For instance, In November, 2024, Advanced Micro Devices, Inc. unveiled the Instinct MI300X accelerator, designed for AI and HPC workloads, competing with NVIDIA's GPUs. Featuring advanced memory and processing capabilities, it enhances performance for data centers and supercomputing applications. This launch strengthens AMD's position in the AI-driven semiconductor market, challenging industry leaders like NVIDIA. Additionally, In 2024, November, Hewlett Packard Enterprise Company unveiled new supercomputing solutions designed for AI and high-performance computing (HPC). These innovations enhance processing power, scalability, and efficiency for complex workloads. With advanced capabilities, HPE seeks to support AI-driven research, scientific computing, and enterprise applications, strengthening its position in the AI and HPC markets.

Based on the Analysis presented in the KBV Cardinal matrix; Microsoft Corporation and Amazon Web Services, Inc. are the forerunners in the High-Performance Computing Market. Companies such as Cisco Systems, Inc., IBM Corporation, and Dell Technologies, Inc. are some of the key innovators in High Performance Computing Market. In October, 2024, Microsoft Corporation unveiled the ND H200 v5 series, its latest Azure Virtual Machines optimized for AI supercomputing. Featuring NVIDIA H200 Tensor Core GPUs, these VMs enhance AI workloads with improved performance, scalability, and efficiency, supporting deep learning, large-scale training, and inference for advanced AI models in the cloud.

COVID 19 Impact Analysis

The COVID-19 pandemic hurt the High-Performance Computing (HPC) market because it messed up supply chains and made it take longer to make and deliver important hardware parts. Lockdowns and slowdowns in manufacturing caused deployments to be pushed back and project timelines to be lengthened. Many companies put off or cut back on their HPC investments because of uncertainty in the economy. This was especially true in the manufacturing, automotive, and energy sectors. Due to campus closures and a lack of funding, research institutions and universities had limited access to HPC systems on their own campuses. Delays in collaborative research projects slowed down their use. Problems with the workforce and challenges with remote work made installation and system optimization even harder. In general, these things held back the growth of the HPC market during the pandemic. Thus, the COVID-19 pandemic had a Negative impact on the market.

Market Share Analysis

Deployment Outlook

Based on Deployment, the High-Performance Computing Market is segmented into On-premises, and Cloud. The Cloud segment acquired 41% revenue share in the market in 2024. The Cloud segment of the High-Performance Computing Market involves the use of third-party cloud providers to deliver scalable, on-demand HPC resources over the internet. This deployment model allows organizations to access advanced computational power without the need for large capital expenditures on physical infrastructure.

Component Outlook

Based on Component, the High Performance Computing Market is segmented into Servers, Storage, Software, Services, Cloud, Networking Devices, and Other Component. The Storage segment attained 17% revenue share in the market in 2024. The Storage component encompasses high-speed storage solutions essential for handling the enormous volumes of data generated by HPC applications. This includes solid-state drives, parallel file systems, and storage arrays designed to support fast read/write speeds and low-latency access. Investment in storage focuses on data security, redundancy, and scalability to accommodate growing computational workloads.

Regional Outlook

Region-wise, the High-Performance Computing Market is analyzed across North America, Europe, Asia Pacific, and LAMEA. The North America segment recorded 40% revenue share in the market in 2024. The high-performance computing market is anticipated to grow at a significant rate in North America and Europe. The market is majorly driven by the United States' extensive supercomputing infrastructure, widespread adoption of AI-enabled HPC solutions, and strong federal funding for defense, scientific research, energy, and advanced manufacturing across various industries. The region further benefits from its robust ecosystem of research institutions, technology providers, and cloud service leadership, which together support growth in analytics, simulation, and hybrid HPC deployments. Moreover, Europe high performance computing market is also experiencing expansion propelled by coordinated investments through initiatives such as EuroHPC Joint Undertaking, and strong HPC use in industrial engineering, academic research, and climate science. Further, growth in Europe is supported by collaborative public-private programs and regulatory focus on green computing and data privacy.

In the Asia Pacific and LAMEA region, the high-performance computing market is predicted to capture prominent growth. This is because of heavy government investment, enterprise adoption for AI, digital infrastructure buildouts, and research workloads. This region largely captures great demand for high performance computing and demonstrates a robust growth rate as countries emphasize sovereign computer power and rapid digital transformation. Additionally, the LAMEA high performance computing market is expected to witness substantial expansion during the forecast period. This expansion is supported by increased investment in digitalization, energy sector analytics, educational research HPC clusters, and smart city initiatives by the government. Also, the region's growth is backed by rising awareness of HPC's value and expanding cloud-based and hybrid HPC accessibility across developing nations.

Recent Strategies Deployed in the Market

List of Key Companies Profiled

Global High Performance Computing Market Report Segmentation

By Component

By Deployment

By End Use

By Geography

Table of Contents

Chapter 1. Market Scope & Methodology

Chapter 2. Market at a Glance

Chapter 3. Market Overview

Chapter 4. Market Trends - High Performance Computing Market

Chapter 5. State of Competition - High Performance Computing Market

Chapter 6. Market Consolidation - High Performance Computing Market

Chapter 7. Key Customer Criteria - High Performance Computing Market

Chapter 8. Value Chain Analysis of High Performance Computing Market

Chapter 9. Competition Analysis - Global

Chapter 10. Product Life Cycle - High Performance Computing Market

Chapter 11. Global High Performance Computing Market by Component

Chapter 12. Global High Performance Computing Market by Deployment

Chapter 13. Global High Performance Computing Market by End Use

Chapter 14. Global High Performance Computing Market by Region

Chapter 15. Company Profiles

Chapter 16. Winning Imperatives of High Performance Computing Market

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