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市場調查報告書
商品編碼
1250793
到 2028 年的慣性系統市場預測——按組件、平台、技術(MEMS、機械陀螺儀、光纖陀螺儀、環形激光陀螺儀、其他技術)、應用和地區進行的全球分析Inertial Systems Market Forecasts to 2028 - Global Analysis By Component, Platform, Technology (Micro Electro Mechanical Systems, Mechanical Gyro, Fibre Optics Gyro, Ring Laser Gyro and Other Technologies), Application and By Geography |
根據 Stratistics MRC 的數據,2022 年全球慣性系統市場規模將達到 126.8 億美元,預測期內以 7.5% 的複合年增長率增長,到 2028 年將達到 195.8 億美元,預計將達到美元。
陸基慣性系統是一種獨立的慣性導航方法,它使用加速度計和陀螺儀讀數來跟蹤物體相對於定義的起點、速度和方向的位置和方向。 該系統由全球導航衛星系統 (GNSS) 接收器、慣性測量單元或其他運動傳感傳感器組成。 這些組件協同工作以確定對象的確切數據。 此外,INS 包含一個計算單元,用於分析和跟蹤來自慣性傳感器的測量數據。
對導航精度的要求越來越高
在當今的戰爭條件下,軍事裝備對精確位置信息(包括高度和方位)的需求至關重要。 這些參數是有效的目標規劃和執行所必需的。 慣性導航系統使用加速度計和陀螺儀等傳感器來提供有關移動物體的位置、姿態和速度的信息。 慣性導航系統越來越多地用於國防工業,因為它們可以提供精確的位置信息。 由於全球武裝力量的增加和對導航精度的需求,慣性導航系統的市場正在增長。
與 INS 相關的高成本
慣性導航系統由許多部分組成,廣泛應用於艦船、導彈、軍用和專用直升機、戰鬥機、潛艇、短程、中程和遠程導彈等國防應用。. 因此,INS 在臨界環境條件下使用,需要定期維護。 採購、運行和維護成本高,需要定期維護。
導航技術進步
這個市場是由導航技術的進步、航空航天業的發展以及固體和小零件的可用性推動的。 此外,MEMS(微機電系統)的技術突破和衛星導航的使用是促進市場擴張的另外兩個原因。 利用 MEMS,製造商正在為輕型、緊湊型和低成本導航系統開發更具成本效益和效率的解決方案。
錯誤傳播
穩定平台慣性導航系統依賴於多個關節處的多個機械部件。 這些接頭必須沒有摩擦,以防止任何類型的測量不准確。 這些系統的性能受到隨時間推移和系統磨損時發生的摩擦誤差的限制。 噪音、漂移和摩擦會導致計算機錯誤。 例如,MEMS 慣性傳感器的機械部件極少,重量僅為幾微克。 由於重量輕,這些部件可能不會對哪怕是最輕微的姿態變化做出反應。 結果,由於隨時間傳播的摩擦和漂移而導致測量不准確。
受疫情影響,商業活動暫時停止。 流程中斷將限制系統組件的可用性,並減少對無人駕駛車輛進行商業活動(例如油箱檢查、管道檢查、風力渦輪機檢查和現場測繪)的需求。 此外,世界各地的關鍵生產設施將在封鎖期間關閉。 這將影響慣性導航系統組件的開發,從而阻礙市場增長。 冠狀病毒對世界的負面影響已經顯而易見,並且很可能在 2020 年對市場產生重大影響。
預計 MEMS(微機電系統)細分市場在預測期內將成為最大的細分市場
由於在導航系統中集成了更多 MEMS 傳感器,MEMS(微機電系統)部分預計將實現有利增長。 這樣做主要是為了提高準確性並最大程度地減輕系統的整體重量。 MEMS傳感器具有低成本、高性能、高可靠性和重量輕等優點。 由於 MEMS 傳感器越來越多地集成到導航系統中,微機電系統技術正以最快的速度發展。
預計航空航天和國防領域在預測期內的複合年增長率最高
由於對增強國家安全的創新軍事解決方案的需求不斷增長,預計航空航天和國防行業在預測期內將以最快的複合年增長率增長。 這種需求期望先進導彈與下一代慣性導航系統的快速發展,以提高戰場性能。 由於導彈和無人機的發展,航空航天和國防應用對 INS 的需求不斷增加。
預計在預測期內,北美將佔據最大的市場份額。 北美市場份額最大,其中美國貢獻最大。 由於越來越重視石油勘探活動,海事部門對該地區的慣性系統有著壓倒性的需求。 石油鑽井平台勘探需要高性能陀螺儀、IMU 和加速度計來提供獨立的傳感器系統和高精度的平台穩定解決方案。
預計亞太地區在預測期內的複合年增長率最高。 這一增長與印度和中國等新興國家不斷增加的國防投資有關。 中國和印度正在增加國防開支並採購用於軍事用途的現代遙控車輛。 這種增長是印度和中國等新興經濟體增加國防投資的結果。
2020 年 9 月,Northrop Grumman宣布已完成其嵌入式全球定位系統 (GPS)/慣性導航系統現代化 (EGI-M) 計劃的關鍵設計審查 (CDR) 裡程碑。底部。
2020 年 8 月,VectorNav Technologies, LLC 宣布推出一款新型小型慣性測量單元和 GNSS/慣性導航系統產品:VectorNav Tactical Embedded。
2020年4月,Honeywell宣布獲得美國空軍一份為期四年、價值9910萬美元的合同,用於升級美國空軍的嵌入式全球定位系統/慣性導航系統。
2019年5月,Northrop Grumman發布了繼承該公司MK-39 Mod 3、4系列慣性導航系統產品的下一代海上慣性導航系統SeaFIND(Sea Fiber Optic Inertial Navigation with Data Distribution)。
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According to Stratistics MRC, the Global Inertial Systems Market is accounted for $12.68 billion in 2022 and is expected to reach $19.58 billion by 2028 growing at a CAGR of 7.5% during the forecast period. An inertial system on land is a self-contained inertial navigation approach that uses accelerometer and gyroscope readings to track an object's position and orientation relative to a defined starting point, velocity, and orientation. This system consists of a global navigation satellite system (GNSS) receiver, an inertial measurement unit, or other motion-sensing sensors. These components work together to determine the exact data of an object. Furthermore, the INS includes a computing unit that analyses and tracks the measured data from inertial sensors.
Increased requirement for navigational accuracy
The necessity for exact position information, including altitude and orientation of military equipment, is critical in today's state of warfare. These parameters are required for effective target planning and implementation. Inertial navigation systems use sensors such as accelerometers and gyroscopes to provide information about the position, orientation, and speed of a moving body. Because inertial navigation systems can offer exact location information, they are increasingly being used in the defence industry. As a result of the rising weaponry of the military throughout the world and the increased necessity for navigational accuracy, the market for inertial navigation systems has grown.
High cost associated with INS
An inertial navigation system is made up of numerous components and is widely utilised in defence applications such as ships, guided munitions, military, special purpose helicopters, fighter aircraft, submarines, and short, medium, and long-range missiles. As a result, the usage of INS in critical environment conditions necessitates regular maintenance. The cost of procurement, operation, and maintenance is significant with regular maintenance.
Technological advancements in navigation
This market is driven by technological advancements in navigation, the growing aerospace industry, and the availability of solid and small components. Furthermore, rising technological breakthroughs in MEMS (micro-electro-mechanical systems) and the use of satellite navigation are two other reasons that are contributing to the market's expansion. Because of the utilisation of MEMs, manufacturers have developed more cost-effective and efficient solutions, resulting in light, compact, and low-cost navigation systems.
Error propagation
The operation of stable platform inertial navigation systems is dependent on several mechanical components at multiple joints. These joints must be frictionless to prevent any type of measurement inaccuracy. The performance of these systems is limited by friction error, which develops over time and system wear and tear. Noise, drifts, and friction can contribute to some computer errors. MEMS inertial sensors, for example, have minimum mechanical parts that weigh only a few micrograms. Because of their small weight, these components may fail to respond to slight changes in orientation. As a result, measurement inaccuracy is generated by friction and drifts that spread over time.
The pandemic outbreak has resulted in a temporary ban on commercial activity. The disruption in the process leads to limited availability of system components and a decrease in demand for unmanned vehicles for commercial operation such as testing of oil tanks, pipeline inspection, windmill inspection, and field mapping. Furthermore, during the lockdown, vital production units around the world are shut down. This has an impact on the development of inertial navigation system components, which consequently impedes the market's growth. The coronavirus's negative global consequences are already visible, and they will have a significant impact on the market in 2020.
The Micro Electro Mechanical Systems (MEMS) segment is expected to be the largest during the forecast period
The Micro Electro Mechanical Systems (MEMS) segment is estimated to have a lucrative growth, Because of the greater integration of MEMS sensors in the navigation system. This is primarily done to increase accuracy and minimise total system weight. MEMS sensors provide advantages such as low cost, high performance, high reliability, and light weight. Microelectromechanical system technology is advancing at the quickest rate due to the increasing integration of MEMS sensors into navigation systems.
The aerospace and defense segment is expected to have the highest CAGR during the forecast period
The aerospace and defense segment is anticipated to witness the fastest CAGR growth during the forecast period, because of the growing demand for innovative military solutions to boost the nation's safety and security. This demand will result in quick advancements in advanced missiles with the next generation of inertial navigation systems to improve performance on the Warfield. As a result of the increasing development of missiles and UAVs, the demand for INS for aerospace and defence applications is increasing.
North America is projected to hold the largest market share during the forecast period. North America had the largest market share, with the United States contributing the most significantly. Because of the growing emphasis on oil exploration activities, the maritime sector is the dominant need for inertial systems in the region. Oil rig exploration requires high-performance gyroscopes, IMUs, and accelerometers to provide a self-contained sensor system and extremely accurate platform stabilisation solutions.
Asia Pacific is projected to have the highest CAGR over the forecast period. The increase is linked to rising defence investments from emerging economies such as India, China, and others. China and India have expanded their defence spending and procurement of modern remotely operated vehicles for military applications. This growth is the result of growing defence investment by developing economies such as India and China.
Some of the key players profiled in the Inertial Systems Market include Epson Europe Electronics GmbH, TDK Corporation, Bosch Sensortec GmbH, Analog Devices, Inc., STMicroelectronics, Kearfott Corporation, Honeywell International, Inc., VectorNav Technologies LLC, Northrop Grumman Corporation, Silicon Sensing Systems Limited, Honeywell International, Inc., Collins Aerospace, Meggitt Plc, IXBLUE and KVH Industries, Inc.
In September 2020, Northrop Grumman Corporation announced that it had completed the critical design review (CDR) milestone for the embedded global positioning system (GPS) / Inertial Navigation System -Modernization, or EGI-M, program.
In August 2020, VectorNav Technologies, LLC introduced a novel miniature inertial measurement unit and GNSS/inertial navigation system products: The VectorNav Tactical Embedded.
In April 2020, Honeywell International Inc. announced that it had awarded a four-year contract worth USD 99.1 million from the U.S. Air Force to update the service branch's embedded global positioning system/inertial navigation system.
In May 2019, Northrop Grumman Corporation has released SeaFIND (Sea Fiber Optic Inertial Navigation with Data Distribution), a next generation maritime inertial navigation system succeeding the company's MK-39 Mod 3 and 4 series Inertial Navigation System product line.
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