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Global Anti-submarine Warfare Systems Market Size By Type of ASW Systems, By Technology Type, By End-User, By Geographic Scope And Forecast


Published on: 2024-08-08 | No of Pages : 320 | Industry : latest updates trending Report

Publisher : MIR | Format : PDF&Excel

Global Anti-submarine Warfare Systems Market Size By Type of ASW Systems, By Technology Type, By End-User, By Geographic Scope And Forecast

Anti-submarine Warfare Systems Market Size And Forecast

Anti-submarine Warfare Systems Market size was valued at USD 17.12 Billion in 2023 and is projected to reach USD 24.12 Billion by 2030, growing at a CAGR of 5.02% during the forecast period 2024-2030.

 

Global Anti-submarine Warfare Systems Market Drivers

Numerous elements impact the Anti-submarine Warfare (ASW) Systems Market, propelling its expansion and advancement. Here are a few significant market drivers

  • Increasing Risks to Submarines The need for sophisticated ASW systems to counter possible threats is driven by the growing number of conventional and nuclear submarines in diverse regions.
  • Fleet Modernization in the Navy Global ongoing naval modernization initiatives support the use of cutting-edge ASW systems to improve naval forces’ anti-submarine prowess.
  • Growing Tensions in Geopolitics In order to safeguard marine interests and uphold strategic superiority, strong ASW capabilities are required due to growing geopolitical tensions and territorial disputes in some areas.
  • Progress in Sonar Technology Adoption of ASW systems is fueled by ongoing improvements in sonar technology, including as active and passive sonar systems, which improve the systems’ capacity for tracking and detection.
  • Emphasis on Preparing for Underwater Warfare Investments in ASW systems are encouraged by the understanding of the strategic significance of undersea warfare readiness in order to protect maritime trade routes and naval assets.
  • An increase in the number of submarines The increasing number of submarines owned by both state and non-state entities requires the creation and implementation of sophisticated ASW systems in order to preserve maritime security.
  • Creation of Unmanned Systems By offering continual observation and reconnaissance capabilities, the integration of autonomous underwater vehicles (AUVs) and unmanned underwater vehicles (UUVs) in ASW missions improves the efficacy of ASW systems.
  • Cooperative Defense Projects Joint development and acquisition of ASW systems is fueled by cooperative defense activities across defense alliances and allies, strengthening collective maritime security.
  • Combining Multiple Sensor Systems The integration of many sensors, such as sonar, radar, and electronic warfare sensors, is advantageous for ASW systems since it allows for a comprehensive and multi-layered defense against submarine threats.
  • Pay attention to maritime domain awareness In order to identify, track, and keep an eye on submarine activities in real time, ASW systems are being adopted with a focus on improving maritime domain awareness (MDA).
  • Advancements in Technology for ASW Platforms ASW systems are more efficient and adaptable thanks to ongoing technical advancements such surface ships, improved torpedoes, and ASW aircraft.

Global Anti-submarine Warfare Systems Market Restraints

There are a number of obstacles and limitations facing the anti-submarine warfare (ASW) systems market that could limit its expansion. Here are a few significant market constraints

  • High expenses for development and upkeep Defense programs with limited funding may face difficulties due to the high development, acquisition, and maintenance costs associated with ASW systems due to their intricacy and sophistication.
  • Restricted Funds for Defense The acquisition and upgrade of ASW systems may be restricted by restrictions on defense spending in some nations or areas, which would have an impact on the market’s overall growth.
  • Technology Difficulties Technological problems for ASW systems may arise from the rapid developments in submarine technology, necessitating ongoing innovation to stay up with changing threats.
  • Problems with Existing Platform Integration There may be difficulties integrating new ASW systems with current sensor suites, communication networks, and naval platforms. These difficulties could cause delays and extra expenses.
  • Exposure to Electronic Counterattacks ASW systems may be susceptible to electronic warfare (EW) threats, such as spoofing and jamming, which could hinder their ability to identify and neutralize submarines.
  • Environmental Elements ASW systems’ performance can be impacted by environmental factors, such as unfavorable weather and sea conditions, which can limit how well they can detect and track submarines.
  • Restricted Resistance to Torpedoes Because modern torpedoes are made to elude conventional anti-submarine defenses, the effectiveness of ASW systems in combating them may be restricted.
  • Range of Operations and Endurance Certain ASW platforms, including helicopters and unmanned underwater vehicles (UUVs), have limited endurance and operational range, which might limit their efficacy in covering large marine areas.
  • Export Control and Regulatory Approvals Strict regulatory clearances and export control policies for ASW technology could affect sales, international partnerships, and the size of the worldwide market.
  • Difficulties in Human Resources Inadequate staffing and a lack of seasoned ASW operators could make it difficult to use and maintain ASW equipment efficiently.
  • The intricacy of underwater warfare The development of flawless ASW systems that can handle all scenarios might be difficult because to the inherent intricacy of underwater warfare and the changing nature of submarine threats.

Global Anti-submarine Warfare Systems Market Segmentation Analysis

The Global Anti-submarine Warfare Systems Market is Segmented on the basis of Type of ASW Systems, Technology Type, End-User, and Geography.

Anti-submarine Warfare Systems Market, By Type of ASW Systems

  • Sonar Systems Active and passive sonar systems used for detecting, tracking, and identifying submarines through sound waves.
  • Torpedoes Anti-submarine torpedoes designed to engage and neutralize submarines underwater.
  • Anti-submarine Warfare Aircraft Fixed-wing aircraft and helicopters equipped with ASW sensors, sonar, and torpedoes for submarine detection and engagement.
  • Unmanned Underwater Vehicles (UUVs) and Autonomous Underwater Vehicles (AUVs) Underwater drones designed for ASW operations, providing persistent surveillance, detection, and reconnaissance capabilities.
  • Anti-submarine Warfare Ships Naval vessels equipped with dedicated ASW sensors, sonar suites, and anti-submarine weapons for surface and subsurface engagements.
  • Anti-submarine Warfare Helicopters Rotary-wing aircraft designed for ASW missions, capable of deploying sonar systems and torpedoes for submarine detection and attack.

Anti-submarine Warfare Systems Market, By Technology Type

  • Active Sonar Systems ASW systems that emit sound waves and analyze the returning echoes to detect and locate submarines actively.
  • Passive Sonar Systems ASW systems that listen for natural sounds, such as submarine engine noise, without emitting active signals.
  • Torpedo Countermeasures Technologies designed to detect and counter incoming torpedoes, providing defensive measures for naval platforms.
  • Anti-submarine Warfare Sensors Advanced sensors, including sonar arrays, magnetic anomaly detectors (MAD), and acoustic sensors, used for submarine detection and tracking.

Anti-submarine Warfare Systems Market, By End-User

  • Naval Forces ASW systems deployed by naval forces, including navies and coast guards, for maritime security and defense.
  • Aerospace and Defense Contractors Companies involved in the design, development, and manufacturing of ASW systems for defense applications.

Anti-submarine Warfare Systems Market, By Geography

  • North America The market dynamics influenced by factors such as defense budgets, naval capabilities, and geopolitical considerations in the United States and Canada.
  • Europe Regional variations based on defense collaboration, naval modernization, and geopolitical dynamics across European countries.
  • Asia-PacificGrowing demand for ASW systems in countries like China, India, Japan, and Southeast Asian nations influenced by maritime security concerns.
  • Latin America Market trends influenced by factors such as naval capabilities, regional tensions, and defense investments in Latin American countries.
  • Middle East and Africa The market in this region shaped by factors such as regional conflicts, maritime security challenges, and defense procurement initiatives.

Key Players

The major players in the Anti-submarine Warfare Systems Market are

  • Lockheed Martin Corporation
  • Raytheon Technologies Corporation (RTX)
  • Northrop Grumman Corporation
  • Saab AB
  • Thales Group
  • BAE Systems PLC
  • L3Harris Technologies Inc.
  • General Dynamics Corporation
  • Kongsberg Defence & Aerospace (Kongsberg Gruppen ASA)
  • Elbit Systems Ltd.
  • Leonardo S.p.A.
  • Naval Group (Formerly DCNS)
  • USTC (University of Science and Technology of China)

Report Scope

REPORT ATTRIBUTESDETAILS
STUDY PERIOD

2020-2030

BASE YEAR

2023

FORECAST PERIOD

2024-2030

HISTORICAL PERIOD

2020-2022

UNIT

Value (USD Billion)

KEY COMPANIES PROFILED

Lockheed Martin Corporation, Raytheon Technologies Corporation (RTX), K26Northrop Grumman Corporation, Saab AB, Thales Group

SEGMENTS COVERED

By Type of ASW Systems, By Technology Type, By End-User, and By Geography.

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