The missile guidance market is showing significant growth by 2018 to 2026 – an honest columnist

The missile guidance radar market is characterized by governments around the world that want to strengthen their existing national security systems, more pilots of missile systems, and innovation and implementation of new technologies in radars for radars for missiles.

A significant number of missile demonstrations have been observed in the recent past. For example, the Norwegian Ministry of Defense has demonstrated an anti-ship missile system that indicates the completion of the development and test phase of the missile. Another successful flight test of the Evolved Seasparrow Missile (ESSM) Block 2 was reported by the NATRO Seasparrow project. India has plans to test its Brahmos missiles that depend on active or passing missile guidance radar for its terminal guidance.

Furthermore, countries around the world are expanding their rocket production capacity, which in turn strengthens the growth of the missile guidance radar market. The French Minister of Armed Forces and the Iranian Minister of Defense have announced their plans to launch production lines of Mica air-to-air missile and long-range air-to-air missile.

Growing innovations and their implementation in the missile guidance market are expected to significantly influence future market progress. Recently, the US Navy has upgraded the ESSM with the improved missile guidance radar system that significantly reduces vulnerability and generates a "fire and oblivion" capability for aircraft and ships.

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Missile Guidance Radar: introduction

Missile conduction radar system uses the principle of search radars to target the intersection regardless of whether the target is performing an avoidance action. The guidance function on a missile uses the information received from the target to locate it and to move in the guided direction. The missiles have six degrees of freedom, which makes them easier to change direction. A missile guidance radar uses radar signals emitted from the launch plane or station and locks the target by tracking the energy it reflects. Missile Guidance systems have two control modules, namely height control system and flight path control.

The altitude control system helps the rocket to maintain its height on the guided flight path by steering, yawing and rolling the rocket. The fight path control system ensures that the rocket moves in the direction of the target. A typical guiding subsystem consists of a receiver, stabilization unit, computer, servomotors. The receiver receives the conduction signal from the target and leads it to the computer where the stabilization unit splits the signal into the desired inputs. Next, the signals are inserted into the servo motors which make corrective adjustments to the missile control surfaces.

Missile Guidance Radar: Dynamics

The radar guides are used by all defense systems around the world. Developed countries are looking for better access possibilities to upgrade their existing defense systems, increasing the demand for radar systems for missile guidance. Not only this, the missile guidance radar is in use at NASA and other space agencies where such systems are needed to investigate matters in space. The increasing number of studies related to the expectation of life on other planets has fueled the demand for missile guidance radars.

The rocket diversion radar market appears to be opportunistic because the associated technology is constantly being updated. The new trend in the market is competitive in the field of technology and improved target areas of radar systems. This shows promising market for technology and is expected to grow significantly. The market is limited only to defense and space applications due to restrictions on the general public. Yet another reluctance for the market is that it is mainly concentrated in a select number of countries, which limits growth to other geographic regions.

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Rocket guidance Radar: segmentation

Based on Type, the Global Missile Guidance Radar can be segmented into:

  • Based on the ground
  • navy
  • In the air
  • Space based

Based on the start mode, the Global Missile Guidance Radar can be segmented into:

  • Surface-to-surface missiles (SSM)
  • Surface-to-Air missiles (SAM)
  • Air-to-Air missiles (AAM)
  • Air-to-surface missiles (ASM)

Based on Planning, the Global Missile Guidance Radar can be segmented into:

Based on the range, the Global Missile Guidance Radar can be segmented into:

  • Short distance missiles
  • Medium rockets
  • Intermediate missiles
  • Intercontinental missiles

Based on applications and end-users, the Global Missile Guidance Radar can be segmented into:

Missile Guidance Radar: Regional Outlook

The missile guidance radar market is prominent in regions such as the US, China, India, Russia, Western Europe, Japan, Korea and Israel. The most advanced market is the US and China, where missile tests are regularly carried out as a result of the eternal demand for the missile guidance radar. India and Israel are also emerging as young market regions with development in their defense systems. The Brazilian military is also planning to expand its defense capabilities and has invested huge sums in missile intelligence. In the case of space agencies, the US, Russia, Europe, China, India and Russia have a tendency to increase market demand for radar systems for missile guidance.

Missile Guidance Radar: important players

Examples of some of the market participants identified throughout the missile radar value-chain are:

  • Lockheed Martin Corporation
  • Bharat Electronics Limited
  • Northrop Grumman Corporation.
  • Raytheon Company
  • Saab A
  • Thales Group
  • BAE Systems
  • Israel Aerospace Industries Ltd.
  • Finmeccanica S. p. A.
  • Airbus Group

The report contains a thorough analysis of:

  • Market segments
  • Market Dynamics
  • Historical actual market size, 2013 – 2017
  • Market size and forecast 2018 to 2026
  • Supply and demand value chain
  • Current trends / problems / challenges on the market
  • Competition and companies involved
  • Technology
  • Value chain

Includes regional analysis for Market

  • North America (USA, Canada)
  • Latin America (Mexico, Brazil)
  • Western Europe (Germany, Italy, France, U.K, Spain)
  • Eastern Europe (Poland, Russia)
  • Southeast Asia and the Pacific (India, ASEAN, Australia and New Zealand)
  • China
  • Japan
  • Middle East and Africa (GCC countries, South Africa, North Africa)

Highlights of the report:

  • Changing industry dynamics
  • In-depth market segmentation
  • Historical, current and projected industry size recent industrial trends
  • Key Competition landscape
  • Strategies of key players and product offers
  • Potential and niche segments / regions with promising growth
  • A neutral perspective on market performance

NOTE – All factual statements, opinions or analyzes in reports are those of the respective analysts. They do not necessarily correspond to formal views or positions of Persistence Market Research.

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