市场调查报告书
商品编码
1453938
到 2030 年的可扩展软体定义网路市场预测 - 按产品、解决方案、企业类型、最终用户和地理位置进行的全球分析Scalable Software Defined Networking Market Forecasts to 2030 - Global Analysis By Product, Solution, Enterprise Type, End User and by Geography |
根据 Stratistics MRC 的数据,2023 年全球可扩展软体定义网路市场规模为 281.9 亿美元,预计到 2030 年将达到 1841.3 亿美元,预测期内复合CAGR为 30.75%。 SDN(可扩展软体定义网路)是一种革命性的网路管理方法,可提高大规模网路基础架构的适应性、效率和灵活性。与传统网路架构相比,SDN 将控制平面与底层硬体分离,使集中式可程式控制器能够即时控製网路资源。此外,管理员可以自动化和协调工作,根据需要分配资源,并在整个网路中统一应用策略,这使得网路基础设施更具回应性和可扩展性。
根据国际电脑科学与资讯科技协会(IACSIT) 的说法,在快速发展的电脑科学领域中,可扩展软体定义网路(SDN) 的整合对于满足网路可扩展性、效率和适应性日益增长的需求变得越来越关键和资讯科技。
资料平面和控制平面的划分
控制平面和资料平面的分离是网路架构的根本性变化,也是可扩展的软体定义网路(SDN)背后的驱动力。这些平面与传统网路中的网路设备紧密整合,降低了其适应性。 SDN 将它们分开,从而使集中控製成为可能,从而促进了可扩展性。 SDN 透过集中控製网路行为使高效扩展成为可能。此外,这消除了新增或删除网路设备时繁琐的手动配置的需要。
实施初期费用
儘管 SDN 具有明显的长期效益,但其初始实施成本可能构成重大障碍。企业可能需要支付 SDN 控制器的安装费用、购买适当的硬体费用以及新系统的员工培训费用。此外,初始支出可能会很困难,特别是对于资源紧张的新创公司或小型企业而言,这可能会阻碍可扩展 SDN 的采用。
提高网路的敏捷性
可扩展的软体定义网路 (SDN) 提供无与伦比的网路敏捷性,使企业能够快速回应不断变化的业务需求。 SDN使得透过可程式介面快速修改网路配置成为可能,更容易整合新的服务和应用。这种灵活性有助于企业适应不断变化的市场条件,并在需求不断变化的行业中保持竞争优势。此外,SDN 的灵活性有助于采用创造性的网路策略,鼓励网路架构的持续增强和麵向未来。
安全风险和漏洞
集中式控制平面带来的更大的攻击面和安全缺陷是可扩展软体定义网路(SDN)的主要风险之一。潜在的危险包括未经授权闯入控制平面、对SDN控制器发动恶意攻击以及利用可程式介面中的漏洞。安全漏洞可能会导致 SDN 中断、资料外洩或未经授权的网路策略操纵。此外,为了确保网路基础设施的可用性、完整性和机密性,随着SDN采用的增加,必须解决这些安全问题。
COVID-19 大流行对许多不同行业造成了重大干扰,并对全球市场产生了重大影响。经济的不确定性和收缩是由封锁、供应链中断和消费者行为的改变所造成的。某些经济领域,如科技和电子商务,成长速度快于其他领域;这些行业包括旅游、住宿和传统零售。这场大流行使弹性和适应性变得更加重要,从而导致了对商业模式的重新评估并加速了众多行业的数位转型。
营运支援系统和业务支援系统(OSS/BSS)部分预计在预测期内将是最大的
在市场上,营运支援系统和业务支援系统(OSS/BSS)领域拥有最大的市场份额。在电信领域,OSS 和 BSS 是监督和促进网路营运和业务流程的基本要素。 OSS/BSS 中的 SDN 集中化和自动化透过处理网路配置、计费和服务保证等关键任务来提高电信网路的整体效能和灵活性。 OSS/BSS 中的 SDN 可实现更有效率的网路管理、动态资源分配和增强的客户体验。此外,透过将SDN技术整合到OSS/BSS中,电信业者可以优化营运、削减成本并更快地对不断变化的市场需求做出反应。
预计云端服务供应商细分市场在预测期内的复合CAGR最高
可扩展软体定义网路 (SDN) 市场CAGR最高的是云端服务供应商领域。随着云端运算继续统治现代 IT 场景,云端服务供应商越来越依赖 SDN 来提高其基础设施的灵活性、可扩展性和效率。借助 SDN,这些供应商可以优化网路效能、动态分配和管理资源,并快速适应不断变化的用户需求。此外,由于SDN技术的集成,云端服务供应商现在可以提供更个人化和响应更快的服务,以满足最终用户和企业不断变化的需求。
预计北美地区将在可扩展软体定义网路(SDN)领域占据最大的市场份额。该领域一直处于技术发展的最前沿,并且业界广泛采用 SDN 解决方案。北美在该市场的主导地位可归因于重要的技术公司、研究机构和成熟的 IT 基础设施的存在。此外,该地区的企业对 SDN 基础设施进行了大量投资,希望提高网路的效率、灵活性和安全性。
亚太地区 (APAC) 是可扩展软体定义网路 (SDN) 市场中CAGR最高的地区。亚太地区经济快速扩张、数位转型以及各产业对尖端技术的使用不断增加。为了满足该地区不断增长的网路需求,由于该地区人口众多且 IT 基础设施不断增长,因此对可扩展的 SDN 解决方案的需求量很大。此外,包括中国和印度在内的亚太新兴经济体在网路基础设施现代化方面的大量投资也推动了SDN技术的采用。
2023 年 11 月,惠普企业 (HPE) 宣布扩大与 Nvidia (NVDA) 的合作,以扩大其在产生人工智慧 (AI) 领域的影响力。该公司表示,该协议将有助于创建所谓的下一系列人工智慧原生和混合云端产品。该公司表示,这些产品将结合慧与的混合云端、超级运算和人工智慧/机器学习软体,使组织能够成为人工智慧驱动的企业。
2023 年 7 月,戴尔科技集团宣布签署最终协议,收购 Moogsoft。Moogsoft 是一家人工智慧驱动的智慧监控解决方案供应商,支援 DevOps 和 ITOps。这项交易将进一步增强戴尔的 AIOps 能力,作为其将人工智慧功能嵌入其产品组合的长期方法的一部分,并作为其多云设计策略的关键组成部分。
2023 年 6 月,IBM 宣布与 Vista Equity Partners 达成最终协议,以 46 亿美元收购财务和营运 IT 管理与最佳化 (FinOps) 软体领域的领导者 Apptio Inc.。收购 Apptio 将加速 IBM IT 自动化能力的进步,并使企业领导者能够透过技术投资提供更高的业务价值。
According to Stratistics MRC, the Global Scalable Software Defined Networking Market is accounted for $28.19 billion in 2023 and is expected to reach $184.13 billion by 2030 growing at a CAGR of 30.75% during the forecast period. SDN, or scalable software-defined networking, is a revolutionary method of network administration that improves large-scale network infrastructures adaptability, efficiency, and flexibility. SDN, in contrast to conventional network architectures, separates the control plane from the underlying hardware, enabling centralized programmable controllers to control network resources on-the-fly. Moreover, administrators can automate and coordinate work, assign resources as needed, and apply policies uniformly throughout the network thanks to this division, which makes the network infrastructure more responsive and scalable.
According to the International Association of Computer Science and Information Technology (IACSIT), the integration of Scalable Software Defined Networking (SDN) has become increasingly pivotal in addressing the growing demands for network scalability, efficiency, and adaptability in the rapidly evolving landscape of computer science and information technology.
Division of data and control planes
The separation of control and data planes, which is a fundamental change in network architecture, is the driving force behind scalable software-defined networking, or SDN. These planes are closely integrated into network devices in conventional networks, which reduce their adaptability. Scalability is encouraged by the centralized control made possible by SDN's separation of them. SDN makes efficient scaling possible by centrally controlling network behavior. Furthermore, this eliminates the need for laborious manual configurations when adding or removing network devices.
Initial expenses of implementation
The initial implementation costs of SDN can pose a significant obstacle, despite its apparent long-term benefits. Businesses might have to pay for the installation of SDN controllers, the purchase of appropriate hardware, and employee training for the new system. Additionally, the initial outlay may be difficult, especially for startups or smaller businesses with tighter resources, which could impede the uptake of scalable SDN.
Improved agility of the network
Scalable Software-Defined Networking (SDN) provides unparalleled network agility, enabling enterprises to react quickly to changing business requirements. SDN makes it possible to quickly modify network configurations through programmable interfaces, which makes it easier to integrate new services and applications. This flexibility helps businesses adapt to changing market conditions and stay ahead of the competition in sectors where demands are constantly changing. Moreover, the flexibility of SDN facilitates the adoption of creative networking tactics, encouraging ongoing enhancement and future-proofing of the network architecture.
Security risks and vulnerabilities
The greater attack surface and security flaws brought about by the centralized control plane are among the main risks to scalable Software Defined Networking (SDN). Potential dangers include breaking into the control plane without authorization, launching malicious assaults on SDN controllers, and taking advantage of holes in the programmable interfaces. SDN disruptions, data leaks, or unauthorized network policy manipulation could result from security breaches. Furthermore, in order to guarantee the availability, integrity, and confidentiality of the network infrastructure, it is imperative that these security issues are addressed as SDN adoption increases.
The COVID-19 pandemic has caused significant disruptions in a number of different sectors and has had a significant impact on global markets. Uncertainties and contractions in the economy have resulted from lockdowns, disruptions in the supply chain, and changes in consumer behaviour. Certain sectors of the economy, like technology and e-commerce, grew more quickly than others; these sectors included travel, lodging, and traditional retail. The pandemic made resilience and adaptability even more crucial, which led to a reassessment of business models and an acceleration of the digital transformation across numerous industries.
The Operation Support System and Business Support System (OSS/BSS) segment is expected to be the largest during the forecast period
In the market, the Operation Support System and Business Support System (OSS/BSS) segment has the largest market share. In the telecommunications sector, OSS and BSS are essential elements that oversee and facilitate network operations and business procedures. SDN centralization and automation in OSS/BSS improve the overall performance and nimbleness of telecom networks by handling critical tasks like network provisioning, billing, and service assurance. SDN in OSS/BSS enables more efficient network management, dynamic resource allocation, and an enhanced customer experience. Moreover, telecom operators can optimize their operations, cut costs, and react faster to shifting market demands by integrating SDN technologies into OSS/BSS.
The Cloud Service Providers segment is expected to have the highest CAGR during the forecast period
The Scalable Software Defined Networking (SDN) market's highest CAGR is seen in the Cloud Service Providers segment. Cloud service providers are depending more and more on SDN to improve the flexibility, scalability, and efficiency of their infrastructure as cloud computing continues to rule the modern IT scene. These providers can optimize network performance, allocate and manage resources dynamically, and quickly adjust to changing user demands thanks to SDN. Additionally, cloud service providers can now provide more personalized and responsive services to meet the changing needs of end users and businesses, thanks to the integration of SDN technologies.
The North American region is anticipated to hold the largest market share in the Scalable Software Defined Networking (SDN) sector. This area has been at the forefront of technological development and has seen a large industry adoption of SDN solutions. The dominance of North America in this market can be attributed to the existence of significant technology companies, research institutions, and an established IT infrastructure. Furthermore, the region has seen significant investments in SDN infrastructure from businesses looking to improve the efficiency, flexibility, and security of their networks.
The Asia-Pacific (APAC) region has the highest CAGR in the market for scalable software-defined networking, or SDN. Rapid economic expansion, digital transformation, and a rise in the use of cutting-edge technologies across a range of industries have all been observed in APAC. In order to meet the region's increasing networking needs, scalable SDN solutions are in high demand due to the region's large population and growing IT infrastructure. Moreover, the adoption of SDN technologies has been fueled by significant investments made by emerging economies in Asia-Pacific, including China and India, in modernizing their network infrastructure.
Key players in the market
Some of the key players in Scalable Software Defined Networking market include Dell Technologies Inc., Hewlett Packard Enterprise Company, IBM Corporation, Juniper Networks, Inc., NEC Corporation, Arista Networks Inc., Intel Corporation, Pluribus Networks Inc., Cisco Systems, Inc., Huawei Technologies Co., Ltd., Nokia Corporation and Cumulus Networks, Inc.
In November 2023, Hewlett Packard Enterprise (HPE) announced it's extending collaboration with Nvidia (NVDA) to boost its reach into generative artificial intelligence (AI). The company said the agreement will help create what it called the next series of AI-native and hybrid cloud offerings. The products will combine HPE's hybrid cloud, supercomputing, and AI/machine learning software to enable organizations to become AI-powered businesses, the company said.
In July 2023, Dell Technologies announced that it has signed a definitive agreement to acquire Moogsoft, an AI-driven provider of intelligent monitoring solutions that support DevOps and ITOps. This transaction will further enhance Dell's AIOps capabilities, as part of its longstanding approach of embedding AI functionality within its product portfolio and as a critical component of its multicloud by design strategy.
In June 2023, IBM announced that it has entered into a definitive agreement with Vista Equity Partners to purchase Apptio Inc., a leader in financial and operational IT management and optimization (FinOps) software, for $4.6 billion. The acquisition of Apptio will accelerate the advancement of IBM's IT automation capabilities and enable enterprise leaders to deliver enhanced business value across technology investments.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.