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全球多火箭系统市场(2024-2034)Global Multi Launch Rocket Systems Market 2024-2034 |
到 2024 年,全球多火箭系统市场预计将达到 437 亿美元,在预测期内(2024-2034 年)复合年增长率 (CAGR) 为 2.49%,到 2034 年还将继续增长。至559 亿美元。
多管火箭系统(MLRS)是一种先进的武器平台,能够在一次齐射中发射多枚火箭,在短时间内提供压倒性的火力。该系统已从简单的非制导火箭发射器发展成为高精度的精确打击武器。核心概念保持不变:用大量弹头使目标区域饱和,以最大限度地发挥潜在的破坏作用。多管火箭系统通常安装在装甲车上,以提供机动性和乘员保护。它可以快速部署,并提供灵活性和适应性来应对不断变化的威胁。多枚火箭弹可以同时或连续发射,从而实现有效的区域封锁和压倒敌方防空系统。
技术进步透过多项关键创新大幅改变了多管火箭的能力。精密导引系统彻底改变了多管火箭平台,融合了GPS辅助惯性导航、雷射导引和终端导引套件等先进技术。这些增强功能将多管火箭从区域武器平台转变为精确打击资产,最大限度地提高效能,同时最大限度地减少附带损害。多管火箭系统的作战射程已透过增程火箭显着扩大,从而可以在更远的距离上攻击目标,并降低友军面临的风险。改良的弹头技术,包括爆炸破片弹头、温压弹头和反战车弹头,提高了多管火箭的杀伤力,并为各种任务目标提供量身定制的解决方案。先进火控系统进一步增强目标捕获、追踪和交战能力,并整合感测器、电脑和通讯网路以优化武器操作。此外,多管火箭系统有助于无缝资料共享、即时目标更新和增强态势感知,并且越来越多地整合到更广泛的指挥和控制(CS)网路中。
有几个因素有助于多管火箭系统的持续发展和采用。火箭和火炮威胁的扩散增加了对火箭和火炮对抗(C-RAM)系统等有效对抗措施的需求。由于其快速射击能力,多管火箭系统可以瓦解敌方火箭和火炮攻击,并为此类威□□胁提供坚实的防御。对精确打击能力的日益重视促使了导引多管火箭炮的发展。这些系统为更昂贵的战术弹道飞弹提供了一种经济有效的替代方案,可以精确瞄准并最大限度地减少附带损害。这使得多管火箭成为重视精度和效率的现代军事行动的一个有吸引力的选择。
多管火箭系统对于区域拒止任务也仍然有用,可防止敌军进入特定区域或在特定区域作战。这种能力对于保护关键基础设施和透过限制敌人的行动和活动来支援地面部队至关重要。拒绝敌对势力占领领土的能力增加了军队的战略和战术灵活性。成本效益也是采用多管火箭系统的重要因素。与其他武器系统相比,多管火箭的单目标成本相对较低,这使其成为许多国家有吸引力的选择。这种可承受性允许在不影响财政资源的情况下采购和部署系统,从而确保持续的军事能力。全球对多管火箭系统的需求也创造了一个利润丰厚的出口市场。随着製造商努力满足各种国际客户的需求,这种需求推动了技术进步和生产。出口市场不仅促进生产国的经济,也鼓励多管火箭技术的创新与改进。
MLRS 系统的采用和开发因地区而异。北美和欧洲有成熟的多管火箭项目,专注于精确打击和远程能力。这些地区的国家正在投资升级和新系统,以保持其技术优势,确保其军队保持在现代战争的最前线。在亚太地区,地缘政治紧张局势的加剧引发了人们对多管火箭系统的兴趣。该地区许多国家已经采购或开发了多管火箭系统,以增强其军事能力,并使其能够有效应对潜在威胁。对军事实力的重视使多管火箭系统成为亚太地区国防战略的重要组成部分。在中东,反火箭和火炮能力以及对精确打击选项的需求推动了对多管火箭系统的需求。该地区的安全课题和持续的衝突需要强大而可靠的多管火箭系统来防御各种威胁。重点是获取能够提供快速响应和精确定位的系统。俄罗斯和独联体国家拥有悠久的多管火箭炮发展历史,并在战斗中部署了先进的系统。正在进行的现代化努力旨在提高这些系统的准确性和杀伤力,以便它们在现代战斗场景中保持有效。俄罗斯在多管火箭炮方面拥有丰富的经验,在该领域处于领先地位,并不断提高其能力。
美国陆军已授予Lockeed Martin公司一份价值 4.51 亿美元(4.19 亿欧元)的合同,为该公司配备额外的 M270 多管火箭系统 (MLRS)。Lockeed Martin公司于2024年5月8日宣布,该计画旨在扩大国内发射器并向全球合作伙伴更新。该协议是在 2019 年签署的初步协议和随后旨在进行资本重组以支持 2050 年任务准备状态的协议之后达成的。
鑑于最近俄罗斯和乌克兰之间的地缘政治衝突,德国被指向乌克兰提供了其他重型武器。根据德国国防部的公告,此次提供了三架飞机:MARS-II MLRS和Panzerhaubitze 2000。三门 MARS II 多管火箭和十门 PZH-2000 自走炮从德国联邦国防军仓库运往乌克兰。
The global Multi Launch Rocket Systems market is estimated at USD 43.70 billion in 2024, projected to grow to USD 55.90 billion by 2034 at a Compound Annual Growth Rate (CAGR) of 2.49% over the forecast period 2024-2034.
Multi-Launch Rocket Systems (MLRS) are sophisticated weapon platforms capable of delivering multiple rockets in a single salvo, providing overwhelming firepower in a short duration. These systems have evolved from simple unguided rocket launchers to highly accurate, precision-strike weapons. The core concept remains the same: to saturate a target area with a large number of warheads, maximizing the chances of inflicting damage. MLRS systems are typically mounted on armored vehicles, providing mobility and protection for the crew. They can be deployed rapidly to respond to evolving threats, offering flexibility and adaptability. The ability to fire multiple rockets simultaneously or in rapid succession allows for effective area denial and suppression of enemy air defenses.
Technological advancements have dramatically transformed MLRS capabilities, driven by several key innovations. Precision guidance systems have revolutionized MLRS platforms, incorporating advanced technologies such as GPS-aided inertial navigation, laser guidance, and terminal guidance kits. These enhancements have shifted MLRS from area-weapon platforms to precision-strike assets, minimizing collateral damage while maximizing effectiveness. The operational envelope of MLRS systems has been significantly expanded by extended-range rockets, allowing for engagement of targets at greater distances and reducing the risk to friendly forces. Improved warhead technologies, including blast fragmentation, thermobaric, and anti-tank warheads, have increased the lethality of MLRS rockets, providing tailored solutions for various mission objectives. Advanced fire control systems have further enhanced capabilities in target acquisition, tracking, and engagement, integrating sensors, computers, and communication networks to optimize weapon employment. Additionally, MLRS systems are increasingly integrated into broader command and control networks, facilitating seamless data sharing, real-time targeting updates, and enhanced situational awareness.
Several factors contribute to the ongoing development and adoption of MLRS systems. The proliferation of rocket and artillery threats has driven the demand for effective countermeasures, such as Counter-Rocket and Artillery (C-RAM) systems. MLRS systems, with their rapid-fire capabilities, can be employed to disrupt enemy rocket and artillery attacks, providing a robust defense against such threats. The increasing emphasis on precision strike capabilities has led to the development of guided MLRS rockets. These systems offer a cost-effective alternative to more expensive tactical ballistic missiles, enabling precise targeting and minimizing collateral damage. This makes guided MLRS rockets an attractive option for modern military operations that prioritize accuracy and efficiency.
MLRS systems also remain effective for area denial missions, preventing enemy forces from accessing or operating in specific areas. This capability is crucial for protecting critical infrastructure and supporting ground troops by restricting enemy movement and activities. The ability to deny areas to adversaries enhances the strategic and tactical flexibility of armed forces. Cost-effectiveness is another significant factor in the adoption of MLRS systems. Compared to other weapon systems, MLRS offers a relatively low cost per target, making them an attractive option for many countries. This affordability allows for the procurement and deployment of these systems without compromising financial resources, ensuring sustained military capability. The global demand for MLRS systems has also created a lucrative export market. This demand drives technological advancements and production, as manufacturers strive to meet the needs of various international clients. The export market not only boosts the economies of producing nations but also fosters innovation and improvements in MLRS technology.
The adoption and development of MLRS systems vary across different regions. In North America and Europe, these regions have mature MLRS programs with a focus on precision strike and extended-range capabilities. Countries in these areas are investing in upgrades and new systems to maintain technological superiority, ensuring their military forces remain at the forefront of modern warfare. In the Asia-Pacific region, growing geopolitical tensions have spurred increased interest in MLRS systems. Many countries in this region are acquiring or developing these systems to enhance their military capabilities and ensure they can respond effectively to potential threats. The emphasis on strengthening military power has made MLRS systems a key component of defense strategies in the Asia-Pacific. In the Middle East, the demand for MLRS systems is driven by the need for counter-rocket and artillery capabilities, as well as precision strike options. The region's security challenges and ongoing conflicts necessitate robust and reliable MLRS systems to defend against various threats. The focus is on acquiring systems that offer both rapid response and accurate targeting. Russia and CIS countries possess a long history of MLRS development and have fielded advanced systems. Ongoing modernization efforts aim to improve the accuracy and lethality of these systems, ensuring they remain effective in modern combat scenarios. Russia's extensive experience with MLRS has made it a leader in this field, continually advancing its capabilities.
The US Army has awarded Lockheed Martin a USD 451 million (EUR 419 million) contract to recapitalize additional M270 Multiple Launch Rocket Systems (MLRS). This initiative aims to expand the domestic fleet of launchers and provide upgrades for global partners, Lockheed Martin announced on 8 May 2024. This award follows an initial agreement issued in 2019 and subsequent contracts aimed at recapitalization to support mission readiness through to 2050.
Germany was noted to have supplied another batch of heavy munitions to Ukraine in the light of the recent geo-political conflicts between Russia and Ukraine. The German Ministry of defense stated that this time the supplied weapons were MARS-II MLRS annd three more Panzerhaubitze 2000s. The delivery of three MARS II MLRS and 10 PZH-2000 self-propelled guns were made from Bundeswehr storages to Ukraine.
Multi Launch Rocket Systems Market Report Definition
Multi Launch Rocket Systems Market Segmentation
By Region
By Type
By Range
Multi Launch Rocket Systems Market Analysis for next 10 Years
The 10-year Multi Launch Rocket Systems Market analysis would give a detailed overview of Multi Launch Rocket Systems Market growth, changing dynamics, technology adoption overviews and the overall market attractiveness is covered in this chapter.
Market Technologies of Multi Launch Rocket Systems Market
This segment covers the top 10 technologies that is expected to impact this market and the possible implications these technologies would have on the overall market.
Global Multi Launch Rocket Systems Market Forecast
The 10-year Multi Launch Rocket Systems Market forecast of this market is covered in detailed across the segments which are mentioned above.
Regional Multi Launch Rocket Systems Market Trends & Forecast
The regional Multi Launch Rocket Systems Market trends, drivers, restraints and Challenges of this market, the Political, Economic, Social and Technology aspects are covered in this segment. The market forecast and scenario analysis across regions are also covered in detailed in this segment. The last part of the regional analysis includes profiling of the key companies, supplier landscape and company benchmarking. The current market size is estimated based on the normal scenario.
North America
Drivers, Restraints and Challenges
PEST
Market Forecast & Scenario Analysis
Key Companies
Supplier Tier Landscape
Company Benchmarking
Europe
Middle East
APAC
South America
Country Analysis of Multi Launch Rocket Systems Market
This chapter deals with the key defense programs in this market, it also covers the latest news and patents which have been filed in this market. Country level 10 year market forecast and scenario analysis are also covered in this chapter.
US
Defense Programs
Latest News
Patents
Current levels of technology maturation in this market
Market Forecast & Scenario Analysis
Canada
Italy
France
Germany
Netherlands
Belgium
Spain
Sweden
Greece
Australia
South Africa
India
China
Russia
South Korea
Japan
Malaysia
Singapore
Brazil
Opportunity Matrix for Multi Launch Rocket Systems Market
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Expert Opinions on Multi Launch Rocket Systems Market Report
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Conclusions
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