市场调查报告书
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1465999
全球飞弹防御系统市场:依产品、技术、射程、威胁类型、交战阶段、速度、领域、预测(2024-2030)Missile Defense System Market by Product, Technology, Range, Threat Type, Engagement Phase, Speed, Domain - Global Forecast 2024-2030 |
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预计2023年全球飞弹防御系统市场规模为291.7亿美元,2024年达318.8亿美元,2030年达558.2亿美元,复合年增长率为9.71%。
飞弹防御系统市场包括用于探测、追踪、拦截和摧毁来袭飞弹的先进技术的开发、生产和整合。飞弹防御系统涵盖广泛的应用,从战略威慑到战术性战场行动,并为各种最终用户提供服务,包括国家军队、国际防御组织、私人安全承包商和负责国防安全保障的政府机构。随着新威胁范围的扩大以及武器对抗精确性需求的增加,对先进飞弹防御能力的需求也增加。此外,军费开支和世界各国开支的增加正在扩大市场。与在轨道任何部分拦截核威胁的飞弹防御系统相关的问题,以及高成本限制了市场。
主要市场统计 | |
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基准年[2023] | 291.7亿美元 |
预计年份 [2024] | 318.8亿美元 |
预测年份 [2030] | 558.2亿美元 |
复合年增长率(%) | 9.71% |
加强先进推进系统、高超音速飞弹、定向能量武器(DEW)和网路中心战等下一代技术的创新和研究,以改善飞弹防御架构内平台之间的通讯和资料共用,从而创造市场扩张的前景。此外,随着天基拦截平台扩大覆盖范围以利用潜在的市场扩张机会,利用卫星技术增强飞弹发射预警系统至关重要。
产品:更多地采用指向和追踪系统,以在动态战斗环境中实现高精度
辨识系统对于区分敌对目标与非威胁和诱饵至关重要,特别是随着隐形能力和多弹头飞弹(多弹头飞弹)等先进技术的出现。瞄准和追踪系统能够精确瞄准敌方飞弹,并为拦截飞弹提供即时导引,确保有效拦截。对这些系统的需求源于动态战斗环境中对高精度的需求,在这种环境中,瞬间决策可以挽救生命。监视和采集系统可侦测和追踪传入的威胁并提供早期预警。随着越来越多的国家发展弹道飞弹能力,对这些系统的需求也增加。目标摧毁系统透过在威胁到达预定目标之前拦截和消除它们来减少附带损害并挽救生命。弹道飞弹的快速扩散和高超音速武器的出现凸显了目标摧毁系统的重要性。
技术:对指挥和控制系统提供及时、准确的资讯以进行有效决策的需求不断增加
指挥和控制系统是飞弹防御系统的重要组成部分,因为它们确保收集、处理和通讯促进有效决策所需的资讯。该系统包括感测器、通讯网路和资料处理单元等各种组件。这项技术的需求源于其在高压情况下实现快速且准确响应的能力。作战管理系统有助于为管理国防相关行动提供整合且有效率的平台。火控和雷达追踪技术极大地有助于侦测、识别和追踪来袭威胁,包括弹道飞弹和其他机载目标。对抗系统对于旨在透过部署诱饵或干扰制导系统来保护军事资产免受传入威胁的飞弹防御技术至关重要。对策的需求主要源于透过扰乱敌方飞弹或在其到达目标之前使其失效来提高生存能力的能力。这些对策利用各种技术来降低敌方感测器的可侦测性和有效性,包括干扰、欺骗甚至破坏。针对敌方武器的对抗措施涵盖多个领域,包括主动防护系统(APS)、定向能量武器(DEW)和网路作战。指挥和控制系统专注于为有效决策提供及时、准确的信息,而对策系统则透过消除传入的威胁来保护资产。
射程:增加远距飞弹防御系统的开发与投资
远距飞弹防御系统旨在拦截洲际弹道飞弹(ICBM)和其他射程超过3000公里的高空威胁。这些系统为持有先进飞弹技术的潜在对手提供战略防御。中程飞弹防御系统针对 1,000 至 3,000 公里范围内的威胁。这些系统提供区域和广域保护,抵御弹道飞弹和其他空中威胁。短程飞弹防御系统重点防御射程小于1000公里的威胁。这些系统通常是移动的,包括点防御和战场防空和飞弹防御。一般来说,远距飞弹用于战略防御,中程飞弹用于战场防御,近程飞弹用于战术性防御。远距飞弹可以保护国家免受洲际弹道飞弹构成的最严重威胁,但在拦截短程飞弹方面可能无效。中程系统提供强大的区域保护,但在应对低空威胁的覆盖范围上仍存在差距。短程系统透过提供本地化防御能力来消除这些差距,这些能力可以消除靠近领土的直接威胁。
威胁类型:扩大飞弹防御系统的使用以减少核子攻击的威胁
传统型飞弹威胁的特征是非核弹头,通常是高爆炸弹或碎片有效载荷。这些导弹可以是短程、中程或远距的,这取决于它们到达目标所需飞行的距离。为了应对常规飞弹威胁,基于需求的首要任务是建立分层防御系统,能够在飞行轨迹的各个阶段拦截和摧毁来袭飞弹。核弹威胁携带核弹头,撞击后可造成大规模破坏。洲际弹道飞弹(ICBM)因其携带核能载荷的长射程和高速再入飞行器而构成重大威胁。应对核子飞弹威胁需要高度复杂的预警系统和先进的拦截技术,以便在威胁到达目标之前将其消除。传统的飞弹防御着重于提供通用的解决方案,可以应付不同类型、不同射程的非核弹。然而,核弹防御优先考虑先进技术来检测和压制携带毁灭性有效载荷的远距洲际弹道飞弹。
交战阶段:发展具有助推交战阶段的资料解决方案,以有效应对飞弹威胁
助推阶段从飞弹发射时开始,一直持续到到达顶点。在此期间,导弹的火箭发动机仍在运行,使得导弹高度可见且容易被拦截。当飞弹的助推发动机烧毁并建立其弹道时,中段阶段开始。在此阶段,弹头在太空中滑行,很容易被拦截。当飞弹在击中目标之前重新进入地球大气层时,最后阶段开始。在此期间,拦截飞弹试图在撞击前和重返大气层期间摧毁撞击的弹头。助推阶段拦截在理论上是有利的,但也面临反应时间短和靠近敌方领土等挑战。因此,很少系统只关注这一阶段,提供结合所有交战阶段的分层防御。中段系统主要依赖陆基或海基雷达和卫星感测器来追踪来袭飞弹。末段拦截飞弹面临交战窗口显着缩短、闭合率高和弹头机动性等挑战。然而,它仍然是全面导弹防御战略的重要组成部分。
速度:资料技术的快速进步增强了对高超音速系统的拦截
高超音速飞弹是一种尖端武器,其移动速度超过 5 马赫。这种高速移动炮弹因其速度、敏捷性和低空弹道而具有无与伦比的穿透先进防空系统的能力。因此,它引起了一些寻求加强国家安全基础设施的国家的浓厚兴趣。亚音速飞弹的速度低于1马赫,比超音速和高超音速飞弹慢。这些飞弹在现代战争场景中仍然具有重要意义,因为它们具有成本效益和更隐密的操作等优势。超音速飞弹是指移动速度在 1 马赫到 5 马赫之间的飞弹。与亚音速飞弹相比,其高速外形提高了穿透敌方防空系统的能力,同时比高超音速飞弹更具成本效益。高超音速飞弹因其能够绕过传统防御系统而成为发展最快的领域。此外,亚音速和超音速系统根据特定任务的要求继续保持价值。
领域:在空域增加使用飞弹防御系统,能够更好地应对空中威胁。
空基飞弹防御系统主要专注于拦截短程和远距空中威胁,例如飞机、无人机和来袭飞弹。该领域的主要子类别包括地面防空系统和空中平台。陆基飞弹防御系统在保护军事基地和城市中心等战略地点免受地面攻击方面发挥重要作用。该领域的子类别包括弹道飞弹防御和巡航飞弹防御。海军飞弹防御系统确保关键的海上通讯线路的安全,并保护海军资产免受水面和水下威胁。主要子类别包括舰载飞弹防御和潜射弹道飞弹。天基飞弹防御系统旨在增强预警能力并能够在飞弹助推阶段对其进行拦截。值得注意的子类别包括卫星预警系统和天基拦截飞弹。
区域洞察
由于美国大力投资旨在国防安全保障的研发倡议,美洲对飞弹防御系统市场做出了重大贡献。美国部署了各种高性能係统,包括陆基中段防御(GMD)系统等陆基系统和Aegis舰弹道弹道防御系统(宙斯盾BMD)等海军平台。在拉丁美洲,巴西等国家已开始投资飞弹防御技术,以增强军事能力。欧洲面临各种威胁,包括俄罗斯等传统国家对手以及叙利亚和利比亚等捲入区域衝突的新兴非国家行为体。欧洲主要国家投资了强大的飞弹防御系统,以保护其领土和人民免受这些潜在对手的侵害。在地缘政治衝突持续的中东地区,对先进飞弹防御能力的需求大幅增加。由于中国、北韩、印度和巴基斯坦之间的衝突以及亚太主要大国之间的军备竞赛等地缘政治紧张局势不断升级,亚太地区对飞弹防御系统的需求正在迅速增加。日本、韩国、澳洲和印度等主要国家正在大力投资以获得尖端飞弹防御能力,以确保区域稳定并保护其领土免受潜在活动的影响。
FPNV定位矩阵
FPNV定位矩阵对于评估飞弹防御系统市场至关重要。我们检视与业务策略和产品满意度相关的关键指标,以对供应商进行全面评估。这种深入的分析使用户能够根据自己的要求做出明智的决策。根据评估,供应商被分为四个成功程度不同的像限:前沿(F)、探路者(P)、利基(N)和重要(V)。
市场占有率分析
市场占有率分析是一种综合工具,可以对飞弹防御系统市场中供应商的现状进行深入而深入的研究。全面比较和分析供应商在整体收益、基本客群和其他关键指标方面的贡献,以便更好地了解公司的绩效及其在争夺市场占有率时面临的挑战。此外,该分析还提供了对该行业竞争特征的宝贵见解,包括在研究基准年观察到的累积、分散主导地位和合併特征等因素。详细程度的提高使供应商能够做出更明智的决策并制定有效的策略,从而在市场上获得竞争优势。
1. 市场渗透率:提供有关主要企业所服务的市场的全面资讯。
2. 市场开拓:我们深入研究利润丰厚的新兴市场,并分析其在成熟细分市场的渗透率。
3. 市场多元化:提供有关新产品发布、开拓地区、最新发展和投资的详细资讯。
4. 竞争评估和情报:对主要企业的市场占有率、策略、产品、认证、监管状况、专利状况和製造能力进行全面评估。
5. 产品开发与创新:提供对未来技术、研发活动和突破性产品开发的见解。
1.导弹防御系统市场的市场规模和预测是多少?
2.在飞弹防御系统市场的预测期内,有哪些产品、细分市场、应用程式和领域需要考虑投资?
3.导弹防御系统市场的技术趋势和法规结构是什么?
4.导弹防御系统市场主要厂商的市场占有率是多少?
5. 进入飞弹防御系统市场的适当形式和战略手段是什么?
[191 Pages Report] The Missile Defense System Market size was estimated at USD 29.17 billion in 2023 and expected to reach USD 31.88 billion in 2024, at a CAGR 9.71% to reach USD 55.82 billion by 2030.
The missile defense system market encompasses developing, producing, and integrating advanced technologies for detecting, tracking, intercepting, and destroying incoming missiles. The missile defense system encompasses applications ranging from strategic deterrence to tactical battlefield operations, serving various end-users such as national military forces, international defense organizations, private security contractors, and government agencies responsible for homeland security. The growing range of emerging threats and the increased necessity for the accuracy of weapons countermeasures have intensified the need for advanced missile defense capabilities. In addition, growing military expenditure and spending by nations worldwide is expanding the market. Problems associated with missile defense systems to intercept nuclear threats on any part of trajectory and the high cost associated with research and development (R&D) activities required to develop state-of-the-art technologies capable of countering security threats limit the market.
KEY MARKET STATISTICS | |
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Base Year [2023] | USD 29.17 billion |
Estimated Year [2024] | USD 31.88 billion |
Forecast Year [2030] | USD 55.82 billion |
CAGR (%) | 9.71% |
Increasing innovation and research in next-generation technologies such as advanced propulsion systems, hypersonic missiles, directed energy weapons (DEWs), and network-centric warfare for improved communication and data sharing among platforms within missile defense architectures are creating prospects for expansion of market. Moreover, leveraging satellite technology for enhanced early-warning systems against missile launches is crucial, along with space-based interceptor platforms expanding coverage area to develop potential opportunities for market expansion.
Product: Growing adoption of pointing and tracking systems for high accuracy in a dynamic battle environment
Discrimination systems are essential for discerning hostile targets from non-threats or decoys, particularly with the advent of advanced technologies such as stealth capabilities and multiple independently targetable reentry vehicles (MIRVs). Pointing and tracking systems enable precise targeting of enemy missiles and ensure effective interception by providing real-time guidance to interceptors. The necessity for these systems stems from the need for high accuracy in a dynamic battle environment where split-second decisions can save lives. Surveillance and acquisition systems detect, track, and issue early warnings against incoming threats. The need for these systems has grown due to the increasing number of countries developing ballistic missile capabilities. Target destruction systems intercept and neutralize incoming threats before reaching their intended targets, thereby reducing collateral damage and saving lives. The importance of target destruction systems is emphasized by the rapid proliferation of ballistic missiles and the emergence of hypersonic weapons.
Technology: Increasing demand for command & control systems for timely and accurate information for effective decision-making
The command & control system is an integral part of a missile defense system, as it ensures that necessary information is collected, processed, and disseminated to facilitate effective decision-making. It encompasses various components such as sensors, communication networks, and data processing units. The need for this technology arises from its ability to enable rapid and accurate response in high-pressure situations. Combat management systems help in providing an integrated and efficient platform to manage defense-related operations. Fire control and radar tracking technologies contribute significantly to detecting, identifying, and tracking incoming threats including ballistic missiles or other airborne targets. A countermeasure system is essential to missile defense technology designed to protect military assets from incoming threats by deploying decoys or jamming guidance systems. The need for countermeasures arises primarily from their capacity to increase survivability by confusing enemy missiles or rendering them ineffective before they reach their targets. These countermeasures utilize various techniques to reduce the detectability or effectiveness of enemy sensors, such as jamming, deception, and even destruction. Countermeasures against enemy weapons span various domains, such as active protection systems (APS), directed energy weapons (DEW), and cyber operations. Command & control systems focus on providing timely and accurate information for effective decision-making, while countermeasure systems concentrate on protecting assets by neutralizing incoming threats.
Range: Increasing development and investments in long-range missile defense systems
Long-range missile defense systems are designed to intercept intercontinental ballistic missiles (ICBMs) and other high-altitude threats with ranges exceeding 3,000 kilometers. These systems provide strategic protection against potential adversaries possessing advanced missile technologies. Medium-range missile defense systems target threats within 1,000 to 3,000 kilometers. These systems offer regional and extended area protection against ballistic missiles and other airborne threats. Short-range missile defense systems focus on protecting against threats with ranges below 1,000 kilometers. These systems are typically mobile, including point and battlefield air and missile defenses. Generally, long-range missiles are used for strategic defense, medium-range for theater defense, and short-range for tactical defense. Long-range missile defense systems serve to protect nations against the most significant threats posed by ICBMs; however, they may not be effective in intercepting shorter-range missiles. Medium-range systems provide robust regional protection but can still leave gaps in coverage against low-altitude threats. Short-range systems address these gaps by offering localized defense capabilities that can neutralize imminent threats close to their territories.
Threat Type: Rising use of missile defenses systems to reduce the threat of nuclear attacks
Conventional missile threats are characterized by non-nuclear warheads, typically high explosive or fragmentation payloads. These missiles can be short-range, medium-range, or long-range, depending on the distance they travel to reach their target. The need-based preference for addressing conventional missile threats is a multi-layered defense system that can intercept and destroy incoming missiles at various stages of their flight trajectory. Nuclear missile threats carry nuclear warheads capable of causing massive destruction upon impact. Intercontinental ballistic missiles (ICBMs) pose a significant threat due to their long ranges and high-speed re-entry vehicles carrying nuclear payloads. Addressing nuclear missile threats requires highly sophisticated early warning systems and advanced interceptor technologies capable of neutralizing the threat before it reaches its target. Conventional missile defenses focus on providing versatile solutions that can engage various types of non-nuclear missiles with differing ranges. However, nuclear missile defenses prioritize advanced technology to detect and neutralize long-range ICBMs carrying devastating payloads.
Engagement Phase: Development of MDS solutions with boost engagement phase for effectively countering missile threats
The boost phase starts when a missile is launched and lasts until it reaches its apex. During this period, the rocket engines of the missile are still active, making it highly visible and vulnerable to interception. The midcourse phase begins when the booster engines of the missile have burned out, and the trajectory has been established. In this phase, the warhead coasts through space and is vulnerable to interception. The terminal phase commences as a missile re-enters the Earth's atmosphere before hitting its target. During this period, interceptors attempt to destroy incoming warheads just before impact and during atmospheric re-entry. Boost-phase interception is theoretically advantageous and poses challenges such as short response times and proximity to enemy territory. Therefore, few systems focus exclusively on this phase, and they provide multiple-layered protection, combining all engagement phases. Midcourse systems primarily rely on ground or sea-based radar and satellite sensors to track incoming missiles. Terminal phase interceptors face challenges such as a significantly shorter engagement window, high closing velocities, and warhead maneuverability. However, they remain an essential component of a comprehensive missile defense strategy.
Speed: Rapid advancements in technology of MDS leading toward increased interception of hypersonic systems
Hypersonic missiles are a cutting-edge class of weapons designed to travel at speeds surpassing Mach 5. These high-speed maneuverable projectiles exhibit unparalleled capabilities to penetrate advanced air defense systems due to their speed, agility, and low-altitude trajectory. As a result, they have garnered significant interest from several countries that aim to strengthen their national security infrastructure. Subsonic missiles have speeds below Mach 1, making them slower than supersonic and hypersonic counterparts. These missiles remain relevant in modern warfare scenarios as they offer advantages such as cost-effectiveness and stealthier operations. Supersonic missiles are those that travel at speeds between Mach 1 and Mach 5. Their high-speed profile offers improved penetration capabilities against enemy air defense systems compared to subsonic missiles while being more cost-effective than hypersonic alternatives. The hypersonic missiles represent the fastest-growing segment due to their ability to bypass conventional defenses. Moreover, subsonic and supersonic systems continue to hold value based on mission-specific requirements.
Domain: Increasing use of missile defense system on air domain to excel at countering aerial threats
Air-based missile defense systems primarily focus on intercepting short- and long-range aerial threats such as aircraft, drones, and incoming missiles. Key subcategories within this domain include ground-based air defense systems and airborne platforms. Land-based missile defense systems play a crucial role in protecting strategic locations such as military bases and urban centers against ground-to-ground attacks. Subcategories in this domain include ballistic missile defenses and cruise missile defenses. Naval missile defense systems secure vital sea lines of communication and protect naval assets against threats above and below the water surface. Key subcategories include ship-based missile defenses and submarine-launched ballistic missiles. Space-based missile defense systems aim to enhance early warning capabilities and enable intercepting missiles during their boost phase. Notable subcategories include satellite-based early warning systems and space-based interceptors.
Regional Insights
In the Americas, the United States significantly contributes to the missile defense system market owing to its significant investments in research and development initiatives aimed at improving homeland security. The U.S. has deployed various sophisticated land-based systems, such as the ground-based midcourse defense (GMD) system and naval platforms, including the Aegis ballistic missile defense system (Aegis BMD). In Latin America, countries such as Brazil have started focusing on enhancing their military capabilities with investments in missile defense technology. Europe faced diverse threats, including traditional state adversaries such as Russia and emerging non-state actors involved in regional conflicts, including Syria and Libya. Major European countries have invested in robust missile defense systems to protect their territories and populations against these potential hostiles. Due to ongoing geopolitical conflicts, the Middle East is witnessing a significant increase in need for advanced missile defense capabilities. The APAC region witnesses rapid increase in need for missile defense systems due to increasing geopolitical tensions involving China, North Korea, the India-Pakistan conflict, and an ongoing arms race among major powers in the Asia-Pacific. Key players such as Japan, South Korea, Australia, and India are investing significantly in acquiring state-of-the-art missile defense capabilities to ensure regional stability and protect their territories against potential activities.
FPNV Positioning Matrix
The FPNV Positioning Matrix is pivotal in evaluating the Missile Defense System Market. It offers a comprehensive assessment of vendors, examining key metrics related to Business Strategy and Product Satisfaction. This in-depth analysis empowers users to make well-informed decisions aligned with their requirements. Based on the evaluation, the vendors are then categorized into four distinct quadrants representing varying levels of success: Forefront (F), Pathfinder (P), Niche (N), or Vital (V).
Market Share Analysis
The Market Share Analysis is a comprehensive tool that provides an insightful and in-depth examination of the current state of vendors in the Missile Defense System Market. By meticulously comparing and analyzing vendor contributions in terms of overall revenue, customer base, and other key metrics, we can offer companies a greater understanding of their performance and the challenges they face when competing for market share. Additionally, this analysis provides valuable insights into the competitive nature of the sector, including factors such as accumulation, fragmentation dominance, and amalgamation traits observed over the base year period studied. With this expanded level of detail, vendors can make more informed decisions and devise effective strategies to gain a competitive edge in the market.
Key Company Profiles
The report delves into recent significant developments in the Missile Defense System Market, highlighting leading vendors and their innovative profiles. These include Airbus SE, ASELSAN Elektronik Sanayi ve Ticaret Anonim Sirketi'ne, BAE Systems PLC, Bechtel Corporation, Booz Allen Hamilton Holding Corporation, CACI International Inc., Defence R&D Organisation, General Dynamic Corporation, Hanwha Corporation, Huntington Ingalls Industries, Inc., Israel Aerospace Industries Ltd., KBR, Inc., Kongsberg Gruppen ASA, L3Harris Technologies, Inc., Leidos Holdings, Inc., Leonardo S.p.A., Lockheed Martin Corporation, Mitsubishi Heavy Industries, Ltd., Northrop Grumman Corporation, Rafael Advanced Defense Systems Ltd., Rheinmetall AG, Roketsan A.S., RTX Corporation, Saab AB, Safran Group, Science Applications International Corporation, Tactical Missiles Corporation, Thales Group, and The Boeing Company.
Market Segmentation & Coverage
1. Market Penetration: It presents comprehensive information on the market provided by key players.
2. Market Development: It delves deep into lucrative emerging markets and analyzes the penetration across mature market segments.
3. Market Diversification: It provides detailed information on new product launches, untapped geographic regions, recent developments, and investments.
4. Competitive Assessment & Intelligence: It conducts an exhaustive assessment of market shares, strategies, products, certifications, regulatory approvals, patent landscape, and manufacturing capabilities of the leading players.
5. Product Development & Innovation: It offers intelligent insights on future technologies, R&D activities, and breakthrough product developments.
1. What is the market size and forecast of the Missile Defense System Market?
2. Which products, segments, applications, and areas should one consider investing in over the forecast period in the Missile Defense System Market?
3. What are the technology trends and regulatory frameworks in the Missile Defense System Market?
4. What is the market share of the leading vendors in the Missile Defense System Market?
5. Which modes and strategic moves are suitable for entering the Missile Defense System Market?