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全球电子战市场(2024-2034)Global Electronic Warfare Market 2024-2034 |
估计到2024年,全球电子战市场将达到 330.5 亿美元,在预测期内(2024-2034年)年复合成长率为 4.75%,到2034年将达到 525.7 亿美元。
电子战(EW)是指策略性地利用电磁频谱来扰乱、欺骗和瘫痪敌方电子系统,同时保护己方电子系统。它包括电子攻击(EA)、电子防护(EP)、电子支援(ES)等多种技术。全球电子战市场是现代军事行动的重要组成部分,透过提高武装部队在竞争激烈和拥挤的电磁环境中的作战能力来提高武装部队的效率。
随着现代战争日益复杂的复杂,电子战能力的重要性也日益增加。随着各国努力获得相对于潜在对手的技术优势,对先进电子战系统的需求正迅速增加。全球电子战市场包括广泛的产品和服务,包括干扰器、雷达预警接收器、定向能武器和讯号情报(SIGINT)系统。该市场的特点是技术快速进步、国防开支不断增加以及世界军事武库不断现代化。
技术进步显着影响全球电子战(EW)市场的能力和范围,而一些关键技术影响推动这些解决方案的发展和采用。人工智慧(AI)和机器学习(ML)透过实现更复杂的资料分析和决策过程,彻底改变电子战。随着时间的推移,这些技术透过快速分析大量电磁频谱资料、识别和应对威胁、适应不断变化的环境以及从过去的遭遇中学习,不断提高其有效性。人工智慧可以透过显着改进讯号检测和分类、自动威胁识别和优化干扰技术来提供显着的战术优势。网路作战与电子战的融合,即网路电磁活动(CEMA),是另一个不断成长的趋势。 CEMA 将网路和电磁能力结合起来,透过对敌方网路、通讯系统和电子设备进行更协调和有效的攻击,形成协同作用,增强破坏和削弱敌方系统的能力。
高功率微波(HPM)装置和氮化镓(GaN)半导体等电子元件的创新也提高了电子战系统的性能和效率。 HPM 装置可产生强大的电磁脉衝,使电子设备失效,而 GaN 半导体则提供卓越的功率密度和热效率,实现更紧凑、更有效的电子战解决方案。更小、更轻、更携带的电子战系统的发展日益扩大其部署选择。小型化使得电子战能力能够整合到更广泛的平台中,包括无人机(UAV)、地面车辆和单兵装备,提高电子战行动的灵活性和多功能性。频谱管理技术的进步对于实现频谱主导地位非常重要。动态频谱分配、认知无线电和先进的讯号处理技术可以有效利用电磁频谱,使部队能够在竞争环境中更有效地运作。
几个关键驱动因素推动全球电子战(EW)市场的成长,这反映出电子战能力在现代军事行动中日益重要。增加国防预算是重要的驱动因素之一,特别是美国、中国和俄罗斯等军事大国。这些国家大力投资先进电子战系统的开发和采购,以增强其军事能力。国防开支的持续增加强调了电子战在国防战略中的优先地位。
世界各地进行的军事现代化计画也推动了对电子战系统的需求。各国升级现有平台并整合先进的电子战能力,以应对新出现的威胁并保持技术优势。这些现代化努力对于让军队配备最新技术以应对动态作战环境中的高阶威胁非常重要。
地缘政治紧张局势和地区衝突进一步增加了加强电子战能力的必要性。各国都致力于提升电子战能力,以保护自身利益、遏制侵略并确保在潜在衝突情况下的作战优势。不断升级的地缘政治紧张局势凸显了对能够在竞争激烈且拥挤的电磁环境中有效运作的强大电子战系统的需求。
对手日益使用雷达、通讯网路和无人系统等先进电子系统,也是电子战市场的主要驱动因素。这些先进的电子系统构成了重大威胁,而电子战系统对于有效侦测、摧毁和消除这些威胁非常重要。应对此类高阶威胁的能力对于维持军队的作战效能非常重要。电子、讯号处理和通讯技术的快速进步推动更有效、更通用的电子战系统的开发。持续的技术创新日益扩大电子战的能力和应用并推动市场成长。这些技术进步不仅提高了电子战系统的性能,而且扩大了其应用范围,使其在现代战争中不可或缺。
受区域衝突、安全威胁和现代化计画的推动,中东和非洲是电子战系统的新兴市场。以色列、沙乌地阿拉伯和阿拉伯联合大公国等国家投资先进的电子战技术,以加强其防御能力并应对不断变化的威胁。该地区对打击恐怖分子和叛乱组织的不对称威胁的关注也推动了对电子战解决方案的需求。拉丁美洲是一个规模虽小但不断成长的电子战系统市场,该地区各国越来越注重军队现代化和加强电子战能力。儘管与其他地区相比,拉丁美洲的国防支出相对较少,但巴西和哥伦比亚等国家投资电子战系统,以提高其防御能力并应对区域安全挑战。
加拿大陆军与许多北约国家和盟国一起升级陆军的电子战能力。加拿大陆军电子战现代化(CFLEWM)计画已经启动,预计将实现加拿大陆军使用的电子战(EW)系统和电子支援措施的现代化。这些能力支援旅级及以下的地面部队。根据所获得的政府文件,预计它还将支援加拿大皇家空军和加拿大皇家海军的部队。 CFLEWM 预计将花费加拿大政府 1.9 亿美元至 3.79 亿美元。业界对加拿大公共服务和采购机构于2019年 2月向潜在供应商提交的意向书做出了回应。2020年 5月,向业界发送了资讯请求(RFI)。 CFLEWM将于2021/2022年进入定义阶段,并于2024/2025年进入实施阶段,该部预计将签订合约。 CFLEWM 预计将在2026年至2027年间具备初步运作能力,并于2031年具备全面运作能力。
Indra 宣布与西班牙国防部(MoD)签订了一份价值3500 万欧元(3980 万美元)的合同,为西班牙陆军的波音CH-47F Chinook运输直升机配备先进的电子战(EW)设备。该公司表示,该直升机将配备 Indra 的 ALR-400FD 雷达警报器、InWarner 感测器和 InShield 定向红外线对抗(DIRCM)系统。 ALR-400 是一个固定翼和旋转翼平台,包括多个天线组件、雷达接收器和电子战处理器。根据Indra介绍,ALR-400能够透过同步脉衝雷达和连续波雷达侦测来侦测和识别敌方平台。 Chinook 也将配备该公司的 InShield DIRCM。它是一种基于雷射的系统,目的是保护固定翼和旋转翼平台免受红外线导引空对空和地对空飞弹的攻击。 InShield 由机载飞弹预警感测器触发,然后透过将高功率雷射光束瞄准热导引系统来攻击并抵消来袭的弹头。
本报告分析了全球电子战市场,并探讨了整体市场规模的前景,依地区和国家划分的详细趋势,关键技术概述以及市场机会。
The global Electronic Warfare market is estimated at USD 33.05 billion in 2024, projected to grow to USD 52.57 billion by 2034 at a Compound Annual Growth Rate (CAGR) of 4.75% over the forecast period 2024-2034.
Introduction to the Global Electronic Warfare Market
Electronic Warfare (EW) refers to the strategic use of the electromagnetic spectrum to disrupt, deceive, or neutralize enemy electronic systems while protecting one's own. It encompasses various techniques, including electronic attack (EA), electronic protection (EP), and electronic support (ES). The global EW market is a crucial component of modern military operations, as it enhances the effectiveness of armed forces by improving their ability to operate in contested and congested electromagnetic environments.
The growing complexity and sophistication of modern warfare have heightened the importance of EW capabilities. As nations strive to gain a technological edge over potential adversaries, the demand for advanced EW systems has surged. The global EW market includes a wide range of products and services, such as jamming devices, radar warning receivers, directed energy weapons, and signal intelligence (SIGINT) systems. This market is characterized by rapid technological advancements, increased defense spending, and the ongoing modernization of military forces worldwide.
Technology Impact in the Global Electronic Warfare Market
Technological advancements are profoundly shaping the capabilities and scope of the global electronic warfare (EW) market, with several key technological impacts driving the evolution and adoption of these solutions. Artificial Intelligence (AI) and Machine Learning (ML) are revolutionizing EW by enabling more sophisticated data analysis and decision-making processes. These technologies rapidly analyze vast amounts of electromagnetic spectrum data to identify and counteract threats, adapt to changing environments, and learn from previous encounters, thus enhancing their effectiveness over time. AI can significantly improve signal detection and classification, automate threat recognition, and optimize jamming techniques, providing a substantial tactical advantage. The integration of cyber operations with EW, known as Cyber-Electromagnetic Activities (CEMA), is another growing trend. CEMA combines cyber and electromagnetic capabilities to create a synergistic effect, enhancing the ability to disrupt and degrade enemy systems through more coordinated and effective attacks on adversary networks, communication systems, and electronic devices.
Innovations in electronic components, such as high-power microwave (HPM) devices and Gallium Nitride (GaN) semiconductors, are also enhancing the performance and efficiency of EW systems. HPM devices can generate powerful electromagnetic pulses to disable electronic equipment, while GaN semiconductors offer superior power density and thermal efficiency, enabling more compact and effective EW solutions. The development of smaller, lighter, and more portable EW systems is expanding their deployment options. Miniaturization allows for the integration of EW capabilities into a wider range of platforms, including unmanned aerial vehicles (UAVs), ground vehicles, and individual soldier equipment, thereby enhancing the flexibility and versatility of EW operations. Advances in spectrum management technologies are critical for achieving spectrum dominance. Dynamic spectrum allocation, cognitive radio, and advanced signal processing techniques enable more efficient use of the electromagnetic spectrum, allowing forces to operate more effectively in contested environments.
Key Drivers in the Global Electronic Warfare Market
Several key drivers are propelling the growth of the global electronic warfare (EW) market, reflecting the increasing importance of EW capabilities in modern military operations. One significant driver is the rising defense budgets, particularly in major military powers like the United States, China, and Russia. These countries are investing heavily in the development and procurement of advanced EW systems to enhance their military capabilities. The continuous increase in defense spending underscores the prioritization of EW in national defense strategies.
Ongoing military modernization programs worldwide are also boosting the demand for EW systems. Nations are upgrading their existing platforms and integrating advanced EW capabilities to counter emerging threats and maintain technological superiority. These modernization efforts are critical as they ensure that military forces remain equipped with the latest technology to handle sophisticated threats in dynamic operational environments.
Geopolitical tensions and regional conflicts are further driving the need for enhanced EW capabilities. Nations are focusing on improving their EW capabilities to protect their interests, deter aggression, and ensure operational superiority in potential conflict scenarios. The escalating geopolitical tensions underscore the necessity for robust EW systems that can operate effectively in contested and congested electromagnetic environments.
The increasing use of sophisticated electronic systems by adversaries, including radar, communication networks, and unmanned systems, is another key driver for the EW market. These advanced electronic systems pose significant threats, and EW systems are essential for detecting, disrupting, and neutralizing these threats effectively. The capability to counteract such advanced threats is crucial for maintaining the operational effectiveness of military forces.
Rapid technological advancements in electronics, signal processing, and communication technologies are enabling the development of more effective and versatile EW systems. Continuous innovation is expanding the capabilities and applications of EW, driving market growth. These technological advancements are not only enhancing the performance of EW systems but also broadening their scope of application, making them indispensable in modern warfare.
Regional Trends in the Global Electronic Warfare Market
The Middle East and Africa are emerging markets for EW systems, driven by regional conflicts, security threats, and modernization programs. Countries such as Israel, Saudi Arabia, and the UAE are investing in advanced EW technologies to enhance their defense capabilities and address evolving threats. The region's focus on countering asymmetric threats, such as those posed by terrorist organizations and insurgent groups, is also driving the demand for EW solutions. Latin America, although a smaller market for EW systems, is growing as countries in the region increasingly focus on modernizing their armed forces and enhancing EW capabilities. Defense spending in Latin America is relatively modest compared to other regions, but countries like Brazil and Colombia are investing in EW systems to improve their defense capabilities and address regional security challenges.
Key Electronic Warfare Programs
The Canadian Army has joined a number of NATO and ally nations in upgrading its land troops' electronic warfare capabilities. The Canadian Forces Land Electronic Warfare Modernisation (CFLEWM) program began. It is expected to modernise the Electronic Warfare (EW) systems and electronic support measures used by the Canadian Army. These capabilities will support brigade and lower-level land troops. According to government documents obtained, they are also expected to support Royal Canadian Air Force and Royal Canadian Navy units. The CFLEWM is expected to cost between $190 million and $379 million to the Canadian government. Industry responded to a letter of interest submitted by Canada's Public Services and Procurement agency to potential suppliers in February 2019. In May 2020, a Request for Information (RFI) was sent out to industry. The CFLEWM is expected to enter a definition phase in 2021/2022 and an implementation phase in 2024/2025 when the department expects the contract award to be made. The CFLEWM is planned to have an initial operating capability between 2026 and 2027, with full operational capability by 2031.
Indra announced that it has signed a deal for EUR35 million (USD39.8 million) with the Spanish Ministry of Defense (MoD) to incorporate its latest electronic warfare (EW) equipment onto the Spanish Army's Boeing CH-47F Chinook transport helicopters. The helicopters will be equipped with Indra's ALR-400FD radar alerter, InWarner sensor, and InShield directional infrared countermeasures (DIRCM) system, according to the company. The ALR-400 is a fixed-wing and rotary-wing platform that includes several antenna assemblies, radar receivers, and an EW processor. The ALR-400, according to Indra, can detect and identify hostile platforms by detecting pulsed and continuous wave radars simultaneously. The Chinooks will also be equipped with the company's InShield DIRCM, a laser-based system designed to defend fixed-wing or rotary-wing platforms from infrared-guided air-to-air and surface-to-air missiles. InShield is triggered by an onboard missile warning sensor, which subsequently engages and neutralises approaching projectiles by aiming its high-power laser beam into the thermal guiding system.
Electronic Warfare Market Report Definition
Electronic Warfare Market Segmentation
By Type
By Region
Electronic Warfare Market Analysis for next 10 Years
The 10-year electronic warfare market analysis would give a detailed overview of electronic warfare market growth, changing dynamics, technology adoption overviews and the overall market attractiveness is covered in this chapter.
Market Technologies of Electronic Warfare 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 Electronic Warfare Market Forecast
The 10-year electronic warfare market forecast of this market is covered in detailed across the segments which are mentioned above.
Regional Electronic Warfare Market Trends & Forecast
The regional electronic warfare 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 Electronic Warfare 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 Electronic Warfare Market
The opportunity matrix helps the readers understand the high opportunity segments in this market.
Expert Opinions on Electronic Warfare Market Report
Hear from our experts their opinion of the possible analysis for this market.
Conclusions
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