Serverless Security Market by Service Model, Security Type, Deployment Mode, Organization Size, Vertical and Region - Global Forecast to 2026
DUBLIN, Sept. 14, 2021 /PRNewswire/ -- The "Global Serverless Security Market by Service Model (BaaS and FaaS), Security Type (Data, Network, Perimeter, and Application), Deployment Mode (Public and Private), Organization Size (SMEs and Large enterprises), Vertical, and Region - Forecast to 2026" report has been added to ResearchAndMarkets.com's offering.
The publisher forecasts the global Serverless security market size to grow from USD 1.4 billion in 2021 to USD 5.1 billion by 2026, at a Compound Annual Growth Rate (CAGR) of 29.9% during 2021-2026.
Serverless architectures are prone to several security risks such as event injection, broken authentication, insecure deployment settings, over-privileged function permission and roles, insufficient logging and monitoring, improper exception handling, and vulnerability management. These act as major drivers for the Serverless security market.
Among security type, network security segment to grow at the highest CAGR during the forecast period
Network security is the technique of securing networks from advanced threats on the serverless architecture. Sophisticated threats are negatively impacting the serverless computing platform by evading network defenses and targeting vulnerabilities in the system. With the growth in cloud adoption, the chances of misconfigurations have increased significantly. Serverless security helps monitor serverless applications to prevent unauthorized access and misuse of networking resources. The key trends that contribute to the serverless network security market growth are the growing usage of cloud computing services and serverless architectures. Hence is expected to grow at the highest CAGR.
Large enterprises segment to hold a larger market size during the forecast period
The adoption of serverless security among large enterprises is high due to the ever-increasing demand for cloud automation and serverless models, and the trend is expected to continue during the forecast period. Large enterprises are heavily investing in advanced technology to increase the company's overall productivity and efficiency. With the ever-increasing amount of data, large enterprises need to invest in IT and security infrastructure. The shift of large enterprises to DevOps and microservices architectures has become more eminent. Hence, large enterprises are implementing serverless security to mitigate serverless security risks such as event injection, broken authentication, insecure app secret storage, and improper exception handling.
Asia Pacific (APAC) to grow at the highest CAGR during the forecast period
APAC experiences considerable security spending owing to the ever-growing threat landscape of the region. APAC is expected to provide significant growth opportunities during the forecast period. The untapped potential markets, high penetration of advanced technologies, growth in applicaton development in various industries, and economic developments and government regulations are expected to drive the serverless security market during the forecast period. An increasing number of organizations in APAC are migrating their legacy data center processes to a serverless environment. This causes problems such as insecure configuration, function permissions, and event data injection, thereby driving the need for serverless security. Increasing advancements in mobility and cloud adoption and growing mandatory compliances with government regulations to resolve data security issues have forced enterprises to adopt serverless security solutions.
Key Topics Covered:
1 Introduction
2 Research Methodology
3 Executive Summary
4 Premium Insights 4.1 Attractive Market Opportunities in the Serverless Security Market 4.2 Market, by Service Model 4.3 Market, by Security Type 4.4 Market, by Deployment Mode 4.5 Market, by Organization Size 4.6 Serverless Security Market, by Vertical 4.7 Market Investment Scenario
5 Market Overview and Industry Trends 5.1 Introduction 5.2 Market Dynamics 5.2.1 Drivers 5.2.1.1 Increase in the Misconfiguration to Boost the Growth of Serverless Security 5.2.1.2 Compliance Concerns in Traditional Cloud Computing 5.2.1.3 Future of Microservices Lies in Serverless and Function-As-A-Service 5.2.1.4 Lack of Security Tools and Processes 5.2.2 Restraints 5.2.2.1 Lack of Awareness Toward Serverless Resources, Serverless Architecture, Serverless Security and Strategy 5.2.2.2 Distrust and Weak Collaboration Among Enterprises and Serverless Security Service Providers 5.2.3 Opportunities 5.2.3.1 Migration to Serverless Technology to Give an Opportunity for Serverless Security 5.2.3.2 New Marketplaces for Serverless Functions 5.2.3.3 Usage of Edge Computing with Serverless Technology 5.2.4 Challenges 5.2.4.1 Cost-Efficiency for Long-Running Computation 5.2.4.2 Challenges in Proving Compliance 5.3 Impact of COVID-19 on Market Dynamics 5.4 Serverless Security Ecosystem 5.5 Technology Analysis 5.5.1 Artificial Intelligence and Machine Learning 5.5.2 Cloud Computing 5.6 Value Chain Analysis 5.7 Revenue Shift: Trends/Disruptions Impacting Buyers 5.9 Pricing Analysis 5.10 Porter's Five Forces Analysis
6 Serverless Security Market, by Service Model 6.1 Introduction 6.1.1 Market Drivers, by Service Model 6.1.2 COVID-19 Impact on the Market, by Service Model 6.2 Function-As-A-Service 6.3 Backend-As-As-Service
7 Serverless Security Market, by Security Type 7.1 Introduction 7.1.1 Market Drivers, by Security Type 7.1.2 COVID-19 Impact on the Market, by Security Type 7.2 Data Security 7.3 Application Security 7.4 Network Security 7.5 Perimeter Security 7.6 Other Security Types
8 Serverless Security Market, by Organization Size 8.1 Introduction 8.1.1 Market Drivers, by Organization Size 8.1.2 COVID-19 Impact on the Market, by Organization Size 8.2 Small and Medium-Sized Enterprises 8.3 Large Enterprises
9 Serverless Security Market, by Deployment Model 9.1 Introduction 9.1.1 Market Drivers, by Deployment Model 9.1.2 COVID-19 Impact on the Market, by Deployment Model 9.2 Public Cloud 9.3 Private Cloud
10 Serverless Security Market, by Vertical 10.1 Introduction 10.1.1 Market Drivers, by Vertical 10.1.2 COVID-19 Impact on the Market, by Vertical 10.2 Banking, Financial Services, and Insurance 10.3 Telecom 10.4 Retail and Ecommerce 10.5 Healthcare 10.6 Information Technology and Information Technology-Enabled Services 10.7 Energy and Utility 10.8 Media and Entertainment 10.9 Other Verticals
11 Serverless Security Market, by Region
12 Competitive Landscape 12.1 Introduction 12.2 Market Evaluation Framework 12.3 Key Market Developments 12.3.1 Product Launches 12.3.2 Deals 12.4 Revenue Analysis of Leading Players 12.5 Market Share Analysis of the Top Market Players 12.6 Historical Revenue Analysis 12.7 Ranking of Key Players in the Serverless Security Market, 2021 12.8 Company Evaluation Matrix 12.8.1 Company Evaluation Matrix Definitions and Methodology 12.8.2 Stars 12.8.3 Pervasive Players 12.8.4 Emerging Leaders 12.8.5 Participants 12.9 Strength of Product Portfolio 12.10 Business Strategy Excellence 12.11 Company Product Footprint Analysis 12.12 Startup/Sme Evaluation Quadrant 12.12.1 Progressive Companies 12.12.2 Responsive Companies 12.12.3 Dynamic Companies 12.12.4 Starting Blocks 12.13 Right to Win
13 Company Profiles 13.1 Introduction 13.1.1 Amazon Web Services 13.1.2 Palo Alto Networks 13.1.3 Microsoft 13.1.4 Google 13.1.5 Imperva 13.1.6 Aqua Security 13.1.7 Signal Sciences 13.1.8 Rackspace 13.1.9 Micro Focus 13.1.10 Serverless 13.2 Other Players 13.2.1 Ibm 13.2.2 Sophos 13.2.3 Cisco 13.2.4 Fortinet 13.2.5 Oracle 13.2.6 Check Point 13.2.7 Cloudflare 13.2.8 Sysdig 13.3 Startup/Sme Profiles 13.3.1 Deepfence 13.3.2 Stackery 13.3.3 Stackpath 13.3.4 Lumigo 13.3.5 Thundra 13.3.6 Snyk 13.3.7 Alcide
14 Adjacent Markets
15 Appendix
For more information about this report visit https://www.researchandmarkets.com/r/aseju4
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