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市場調查報告書
商品編碼
1528163
全球監控雷達市場(2024-2034)Global Surveillance Radar Market 2024-2034 |
2024年全球監控雷達市場規模預計為78.1億美元,預計到2034年將成長至183億美元,年均成長率(CAGR)為8.89%。
監視雷達系統是空中交通管制和軍事行動的關鍵組成部分,為偵測和追蹤飛機和其他物體提供重要資料。這些系統的工作原理是發射無線電波並分析從周圍物體返回的迴聲。監視雷達主要分為兩類:一次監視雷達(PSR)和二次監視雷達(SSR)。由於PSR僅使用反射無線電波來檢測目標,因此它可以有效地識別不合作的目標,例如沒有應答器的飛機。相較之下,SSR 依靠飛機上的應答器來回應雷達訊號,並提供高度和識別碼等附加資訊。這種雙重方法提高了民用和軍用空域的態勢感知和作戰效率。監視雷達技術的進步顯著提高了這些系統的準確性、可靠性和範圍,使其對現代航空和國防行動非常重要。
由於電子、訊號處理和資料整合的進步,技術對監視雷達系統的影響顯著變化。一項關鍵的進步是使用數位訊號處理(DSP)透過改善雜訊和雜波過濾來提高目標檢測和追蹤能力。這項改進使雷達能夠更有效地區分真正的目標和來自地形和天氣的不相關反射。相控陣天線是另一個重大技術進步。這些天線無需機械移動即可實現快速波束控制,實現快速目標位置校正。相控陣技術提高了雷達同時追蹤多個目標的能力,提高了複雜環境中的搜索範圍。自動目標識別(ATR)系統也徹底改變了監視雷達。透過利用機器學習演算法分析雷達資料,ATR 系統可以自動識別目標並對其進行分類。這減少了空中交通管制員和軍事操作員的工作量,並能夠更快、更準確地做出決策。 與其他系統的整合變得越來越普遍,監視雷達與衛星影像和地面感測器連結。這種多感測器方法提供了作戰環境的全面視圖,增強了民用航空和軍事行動的態勢感知能力。最後,資料視覺化的進步顯著改善了操作員解釋雷達資料的方式。增強的 GUI 和視覺化技術提供即時追蹤資訊、歷史資料和預測分析,以促進更好的營運規劃和回應。
有幾個主要因素推動監視雷達系統的開發和部署。安全和保障非常重要,因為準確追蹤飛機和其他物體對於防止碰撞和確保空域安全非常重要。監視雷達系統透過提供維護安全所需的信息,在空中交通管制和軍事行動中發揮重要作用。全球空中交通的增加也增加了對先進監視系統的需求。隨著越來越多的飛機進入天空,有效管理擁擠的空域變得越來越重要,這增加了對可靠、高精度雷達系統來處理日益增加的交通量的需求。
技術進步也是重要的推手。雷達技術的不斷創新,包括訊號處理、天線設計和資料整合的增強,導致了更複雜的監視系統的採用。這些進步確保雷達系統始終有效且能夠滿足當前的需求和挑戰。監管要求進一步影響監視雷達系統的部署。國際民航組織(ICAO)等組織制定的國際航空法規和標準強制使用雷達進行空中交通管制。遵守這些法規是推動雷達系統投資的關鍵因素。軍事現代化也是一個重要因素。世界各地的軍隊更新其監視能力,以提高態勢感知和作戰效率。這種現代化包括更新現有雷達系統和整合新技術以應對不斷變化的防禦挑戰。
監視雷達技術的狀況因地區而異,並受到地區防禦需求、空中交通需求和技術能力的影響。北美,尤其是美國,高度重視民用和軍用先進雷達系統。美國聯邦航空管理局(FAA)大力投資,採用最新的一次監視雷達(PSR)和二次監視雷達(SSR)技術更新其空中交通管制系統,以提高安全性和效率。此外,美國軍方也優先發展用於防空和態勢感知的雷達,實施致力於將雷達與其他感測器系統整合的計畫。在歐洲,人們齊心協力更新監視雷達功能,以滿足嚴格的安全法規並管理日益成長的空中交通。歐盟(EU)的歐洲單一天空計畫目的是提高空中交通管理的效率,並導致對先進雷達系統的投資。歐洲國防軍也致力於聯合雷達計畫,以增強區域安全和成員國之間的互通性。由於空中交通的增加和軍事現代化,亞太地區的監視雷達技術迅速發展。中國和印度等國家正大力投資開發自己的雷達,以滿足民航和國防需求。支線航空旅行的擴張推動了對改進雷達系統的需求,以確保日益擁擠的空域的安全和效率。在中東,該地區的戰略地緣政治格局和不斷增加的空中交通推動對監視雷達系統的需求不斷成長。該地區各國投資先進雷達技術,以加強國家安全並改善空中交通管理。軍事和民用航空部門之間也進行了重要合作,開發了綜合雷達系統以滿足國防和商業需求。
Silentium 已獲得一份為陸軍提供被動雷達設備的合約。澳洲陸軍已根據國防部簽訂的價值 740 萬美元的合約要求使用 Silentium Defense 的 MAVERICK M 系列被動雷達系統,用於能力開發和評估活動。 Silentium 的 MAVERICK M 系列是首款高性能、低功耗、士兵攜帶式隱蔽雷達系統,用於空中、陸地和海上監視。不被發現的能力不僅賦予澳洲陸軍及其合作夥伴非常重要的主權能力,而且在空中、陸地和海上擁有無與倫比的優勢。
比利時和荷蘭艦隊將配備 SCANTER 6000 X 波段雷達。比利時海軍與機器人聯盟在海軍集團和 ECA 集團的協調下,已選擇 Terma 的 SCANTER 6000 雷達用於比利時和荷蘭的 MCMV 更新計畫。因此,一月中旬,隸屬於海軍集團和 Piriou 的法國造船廠 Kership 委託 Terma 為 MCM 戰艦交付 12 座 SCANTER 6000 海軍雷達。首批交付將於2022年進行,後續交付預計將持續八年。英國皇家海軍的新型26型全球戰鬥艦和T31護衛艦將配備SCANTER 6000海軍監視雷達。該雷達目前用於法國海軍的大多數大型艦艇,包括戴高樂號航空母艦和丹麥海軍的艾弗、惠特費爾特級護衛艦。
The Global Surveillance Radar is estimated at USD 7.81 billion in 2024, projected to grow to USD 18.30 billion by 2034 at a Compound Annual Growth Rate (CAGR) of 8.89% over the forecast period 2024-2034
Surveillance radar systems are critical components in air traffic control and military operations, providing essential data for the detection and tracking of aircraft and other objects. These systems operate by emitting radio waves and analyzing the echoes returned from objects in their vicinity. Surveillance radar can be categorized into two main types: Primary Surveillance Radar (PSR) and Secondary Surveillance Radar (SSR). PSR detects targets based solely on the reflected radio waves, making it effective for identifying non-cooperative targets, such as aircraft without transponders. In contrast, SSR relies on transponders onboard aircraft, which respond to radar signals with additional information, including altitude and identification codes. This dual approach enhances situational awareness and operational efficiency in both civil and military airspace. The evolution of surveillance radar technology has significantly improved the accuracy, reliability, and range of these systems, making them indispensable for modern aviation and defense operations.
The impact of technology on surveillance radar systems has been transformative, driven by advancements in electronics, signal processing, and data integration. One significant development is the use of Digital Signal Processing (DSP), which enhances target detection and tracking capabilities by allowing for better filtering of noise and clutter. This improvement enables radars to more effectively distinguish between genuine targets and irrelevant reflections from terrain or weather conditions. Phased array antennas represent another major technological advancement. These antennas allow for rapid beam steering without the need for mechanical movement, resulting in quicker updates on target positions. Phased array technology enhances a radar's ability to track multiple targets simultaneously and provides improved coverage in complex environments. Automatic Target Recognition (ATR) systems have also revolutionized surveillance radars. By leveraging machine learning algorithms to analyze radar data, ATR systems can automatically identify and classify targets. This reduces the workload on air traffic controllers and military operators, enabling faster and more accurate decision-making. Integration with other systems has become increasingly common, with surveillance radars being linked to satellite imagery and ground-based sensors. This multi-sensor approach offers a comprehensive view of the operational environment, enhancing situational awareness for both civil aviation and military operations. Lastly, advancements in data visualization have greatly improved how operators interpret radar data. Enhanced graphical user interfaces and visualization techniques provide real-time tracking information, historical data, and predictive analytics, facilitating better operational planning and response.
Several key factors are driving the development and deployment of surveillance radar systems. Safety and security are paramount, as accurate tracking of aircraft and other objects is essential to prevent collisions and ensure secure airspace. Surveillance radar systems play a crucial role in air traffic management and military operations by providing the necessary information to maintain safety and security. The increasing volume of global air traffic also drives the need for advanced surveillance systems. As more aircraft enter the skies, managing crowded airspace efficiently becomes increasingly important, heightening the demand for reliable and precise radar systems to handle this growing traffic.
Technological advancements are another significant driver. Continuous innovation in radar technology, including enhancements in signal processing, antenna design, and data integration, leads to the adoption of more sophisticated surveillance systems. These advancements ensure that radar systems remain effective and up-to-date with current needs and challenges. Regulatory requirements further influence the deployment of surveillance radar systems. International aviation regulations and standards, set by organizations such as the International Civil Aviation Organization (ICAO), mandate the use of radar for air traffic control. Compliance with these regulations is a key factor driving investment in radar systems. Military modernization is also a crucial factor. Armed forces around the world are upgrading their surveillance capabilities to enhance situational awareness and operational effectiveness. This modernization involves both upgrading existing radar systems and integrating new technologies to address evolving defense challenges.
The landscape of surveillance radar technology varies significantly across different regions, shaped by local defense needs, air traffic demands, and technological capabilities. In North America, especially in the United States, there is a strong emphasis on advanced radar systems for both civil and military applications. The Federal Aviation Administration (FAA) heavily invests in upgrading air traffic control systems, incorporating modern Primary Surveillance Radar (PSR) and Secondary Surveillance Radar (SSR) technologies to enhance safety and efficiency. Additionally, the U.S. military prioritizes radar advancements for air defense and situational awareness, with programs dedicated to integrating radar with other sensor systems. In Europe, there is a concerted effort to upgrade surveillance radar capabilities to meet stringent safety regulations and manage increasing air traffic. The European Union's Single European Sky initiative aims to improve air traffic management efficiency, leading to investments in advanced radar systems. European defense forces are also engaged in collaborative radar projects to enhance regional security and interoperability among member states. The Asia-Pacific region is witnessing rapid growth in surveillance radar technology due to increasing air traffic and military modernization. Countries like China and India are investing heavily in indigenous radar development, addressing both civil aviation and defense needs. The expansion of regional air travel drives the demand for enhanced radar systems to ensure safety and efficiency in increasingly crowded airspaces. In the Middle East, the growing demand for surveillance radar systems is driven by the region's strategic geopolitical landscape and rising air traffic. Countries in the region are investing in advanced radar technologies to strengthen national security and improve air traffic management. There is also notable collaboration between military and civil aviation sectors, with integrated radar systems being developed to meet both defense and commercial requirements.
Silentium is awarded a contract to provide Army with passive radar equipment. The Australian Army has requested Silentium Defence's MAVERICK M-series passive radar system under a (AU) $7.4 million contract from the Department of Defence for use in capabilities development and evaluation activities. The first high-performance, low-power, soldier-portable, covert radar system for air defence, land, and sea surveillance is Silentium's MAVERICK M-series. The ability to see without being seen gives the ADF and its partners a crucial sovereign capability as well as an unbeatable edge in the air, land, and maritime domains.
Belgian and Dutch fleets will be equipped with SCANTER 6000 X-band radar. The Belgium Naval & Robotics consortium, coordinated by Naval Group and ECA Group, has chosen Terma's SCANTER 6000 radar for the replacement MCMV programme for Belgium and the Netherlands. In this context, the French shipyard Kership, a partnership between Naval Group and Piriou, hired Terma in mid-January to deliver 12 pieces of the SCANTER 6000 naval radar for the MCM warships. The first unit will be delivered by Terma in 2022, and subsequent deliveries will continue for an additional eight years. The new Type-26 Global Combat Ships and T31 Frigates of the Royal Navy are receiving the SCANTER 6000 naval surveillance radar. The radar is now in use aboard the majority of the French Navy's large warships, including the aircraft carrier Charles De Gaulle and the Iver Huitfeldt class frigates of the Danish Navy.
Surveillance Radar Market Report Definition
Surveillance Radar Market Segmentation
By Application
By Platform
By Region
Surveillance Radar Market Analysis for next 10 Years
The 10-year surveillance radar market analysis would give a detailed overview of surveillance radar market growth, changing dynamics, technology adoption overviews and the overall market attractiveness is covered in this chapter.
Market Technologies of Surveillance Radar 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 Surveillance Radar Market Forecast
The 10-year Surveillance Radar Market forecast of this market is covered in detailed across the segments which are mentioned above.
Regional Surveillance Radar Market Trends & Forecast
The regional surveillance radar 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 Surveillance Radar 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 Surveillance Radar Market
The opportunity matrix helps the readers understand the high opportunity segments in this market.
Expert Opinions on Surveillance Radar Market Report
Hear from our experts their opinion of the possible analysis for this market.
Conclusions
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