• John Watson

Global AESA Radar Market Size to grow by US$ 18.30 Bn in 2030.

Global Active Electronically Scanned Array (AESA) Radar Market Size is expected to be worth USD 7.40 billion in 2021 and is estimated to reach up to USD 18.30 billion by 2030, at a compound annual growth rate (CAGR) of 5.15% from 2022 to 2030.

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A phased array antenna with computer control is known as an AESA. Without moving the antenna physically, a radio beam can be electronically directed in a new direction. The Passive Electrically Scanned Array (PESA) has been replaced by the more complex and modern AESA. Ships and airplanes can emit strong radar signals while yet staying stealthy thanks to APAR radar systems' ability to disperse signal emissions across a larger range of frequencies, which makes them harder to detect over background noise. The SM-2 Block IIIA missile and the Evolved Sea Sparrow Missile (ESSM) are both supported by APAR's missile guiding capability. The majority of the radar systems in contemporary combat aircraft utilize APAR. Therefore, the defense industry dominates the APAR market.

Due to the COVID-19 pandemic, the worldwide aerospace and defense (A&D) manufacturing industry has been experiencing unprecedented upheaval. The defense industry is anticipated to remain steady and expand, nonetheless, as the majority of nations have not cut their defense spending and are still committed to maintaining their military prowess. Some of the most obvious consequences of the pandemic's influence on the defense industry are supply-side interruptions. Businesses in nations that have been severely hit by COVID-19 or those reliant on supply chains that are based in affected countries have been the pandemic's first casualties. Thus, some of the defense programs may experience temporary cost increases and delays as a result of the wider supply chain disruption.

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The majority of modern fighter aircraft are outfitted with AESA systems, which has led to an increase in the employment of AESA radars. Some of the most popular fighter jet models now on the market, including the F-22, F-35, Dassault Rafale, Eurofighter Typhoon, and Boeing F/A-18E/F, all include these radars. One of the largest AESA radar manufacturers in the world, Northrop Grumman, was given a request in February 2020 to upgrade 72 US Air Force F-16s with its APG-83 Scalable Agile Beam Radar to satisfy a joint emergent operational requirement for homeland defense put forth by the US Northern Command. As a result, it is anticipated that there will be an increase in the deliveries of aircraft equipped with AESA radars.

The active phased array radar system enables ships and airplanes to emit potent radar signals while yet staying stealthy since it can disperse signal emissions across a larger frequency range, making them difficult to detect over background noise. The ESSM and SM-2 Block IIIA missiles are supported by the active phased array radar's missile guidance capability. Active phased array radar is the predominant type of radar employed in modern combat aircraft. As a result, the defense industry is a primary driver of the AESA radar market.

The Asia Pacific is expected to highest growth during the projection period. The demand for advanced threat detection systems is rising in the Asia-Pacific as a result of the region's developing cross-border problems and geopolitical tensions in nations like China-India and India-Pakistan. The Indian Defense Ministry and Mahindra Telephonics signed a contract in June 2021 to buy eleven airport surveillance radars for the Indian Coast Guard and Indian Navy.

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March 2021- A contract for the purchase of radar systems for USD 175 million was signed by the defense ministers of Slovakia and Israel. According to the agreements, Israel will provide the Slovak Air Force with seventeen highly advanced radar systems built by Israel Aerospace Industries (IAI).

April 2021- A modification contract worth USD 243.2 million was signed by Raytheon Technologies Corporation and the Missile Defense Agency for the delivery of the AN/TPY-2 radar, which was created to detect ballistic missiles and direct the Terminal High Altitude Area Defense system.

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