Hiển thị các bài đăng có nhãn Russian Air Force. Hiển thị tất cả bài đăng
Hiển thị các bài đăng có nhãn Russian Air Force. Hiển thị tất cả bài đăng

Thứ Sáu, 5 tháng 7, 2013

Russian Air Force to Get Su-30SM Fighter Jets in Bulk


Sukhoi Su-30SM multirole fighter jets will be delivered to the Russian Air Force as fully equipped squadrons, rather than “piecemeal,” deputy commander Colonel Sergei Kobylash said Thursday.

The Su-30SM is the latest development of the twin-seat Su-30 jet fighter family, a derivative of the long-serving single-seat Sukhoi Su-27, one of the air force's most important warplanes.

The new aircraft has better radar and communications capabilities, an improved friend-or-foe system, a new ejection seat and new weapons. It also has thrust-vectoring engine nozzles, providing super-maneuverability at low airspeeds.

The first contract between the Defense Ministry and Irkut Corporation for 30 Su-30SMs was signed in March last year. The Russian Air Force received the first two Su-30SM aircraft in November. In mid-December, a new contract was signed for an additional 30 jets by 2016.


RIA Novosti

Thứ Bảy, 22 tháng 6, 2013

Russia Speeds Up Anti-Missile Radar Deployment


June 22, 2013: Russia has sped up deployments of its new Voronezh early-warning radar and will now have seven of them operational by 2018. That’s a few years ahead of schedule. These new radars will replace the Daryal radars and the even older models that Daryal was replacing but are still in service. The older early-warning radars were usually in areas that were part of the Soviet Union but are not in present day Russia.

Thus, earlier this year Russia decided to shut down its Daryal type long range missile detection radar in Azerbaijan after the Azerbaijanis demanded that a new lease increase annual rent from $7 million to $300 million. Russia refused to pay and will shut down the Azerbaijan radar and dismantle it. The ten year lease ended on December 24, 2012. This radar went operational in 1983, and was supposed to be one of seven. But the end of the Cold War halted that project and only one other Daryal radar was built (on the north coast of Russia). That one detected missiles coming in over the North Pole from North America. The radar in Azerbaijan covered all of the Middle East and India.

Its role will be assumed by the more modern Voronezh radar design that recently went into service on the Black Sea coast. Russia had offered to upgrade the Azerbaijan radar and pay more rent but not $293 million more a year. In addition, Russia has always paid Azerbaijan $5 million a year for electricity and $10 million a year for other services. About 500 Azerbaijanis were employed at the radar station, in addition to 1,100 Russians.

A year ago Russia activated its fourth Voronezh early warning radar in Irkutsk, Siberia. This was the first of three to be built in eastern Russia. The other two will be in action by 2017. The Voronezh radars in Western Russia cost between $85 million and $128 million each, while those in eastern Russia (VP models) cost over 50 percent more because they cover a wider area. The Voronezh radar can detect incoming missiles up to 6,000 kilometers away, as can the Daryals. Three Voronezh M/DM radars were installed in Western Russia between 2005 and 2011. One is in Kaliningrad on the Baltic Sea. Another is on the east coast of the Black Sea (Armavir), while the third is at the eastern end of the Baltic Sea outside St Petersburg.

All this recent radar building activity was caused by the collapse of the Soviet Union in 1991, and the destruction of the Russian ballistic missile early warning system. This came about because each of the fourteen new nations, carved out of the Soviet Union, got to keep whatever government property was within the new borders. That meant many of the radar stations that formed the Soviet ICBM early warning system were now owned by foreign countries. A combination of disputes over money, and aging electronics, eventually put many of those early warning radars out of action. The two in Ukraine went off line three years ago. Russia was hoping to keep the Azerbaijan radar going but that was not to be.

The rising price of oil over the last decade provided Russia with the cash to rebuild its ballistic missile early warning radar system. The first one, outside St Petersburg, was built in 18 months (versus over ten years for the ones it replaced). The new design uses much less electricity, has a smaller staff, and is more reliable. Russia has adopted a lot of Western technology, and work practices, since the collapse of the Soviet Union and it all showed in this radar station. The St. Petersburg facility replaced one that was in Latvia and was dismantled in 2003, after going off line in 1998. The one new radar in Armavir (on the Black Sea coast) was built to replace defunct Soviet era radars in Azerbaijan and Ukraine.

The new early warning system is providing detection for missiles coming from all directions. Russian leaders proclaim NATO to still be the major threat but some of the radars face China, just in case.

Strategy Page

Thứ Hai, 3 tháng 6, 2013

MiG To Continue Development Based On Skat UCAV


Russia has given the MiG Corporation permission to develop an Unmanned Combat Aerial Vehicle (UCAV) based on the Skat prototype it had previously demonstrated.

The Skat is designed to attack both mobile and stationary targets on land and sea, especially the suppression of air defense systems in high-threat areas. It can operate autonomously or in conjunction with other manned systems.

The Skat shares a similar low observable, blended, all-wing design that other contemporaries such as the American X-47B. Preliminary specifications suggested the Skat had a:
  • Maximum takeoff weight of 10000 kg
  • Payload of 2000 kg
  • Range of 4000 km
  • Speed of 800 km/hr
  • Ceiling of 12000 m
 The Skat supports internal weapons carriage.

The MiG Corporation is also looking to sign a contract for the delivery of MiG-35 fighter aircraft, possibly as early as this month in June 2013. They are to be equipped with the Zhuk-AE Active Electronically Scanned Array (AESA) radar.

MiG is still busy fulfilling the delivery of MiG-29K/KUB fighters to India's Navy. So far, it has delivered 20 MiG-29K out of a total order for 45 MiG-29K. The Russian Navy recently placed an order for 24 MiG-29K/KUB.

India is busy upgrading its fleet of legacy MiG-29 fighters aircraft with the assistance of the MiG Corporation. The first upgraded MiG-29 were delivered to India and the rest are to be upgraded locally in India.

Once upgraded, the MiG-29UPG will be able to perform both air-to-air and air-to-ground missions, unlike the original MiG-29, which was mostly used to intercept enemy aircraft.


http://en.ria.ru/military_news/20130531/181443413/MiG-Signs-Attack-Drone-RD-Contract.html

Thứ Hai, 6 tháng 5, 2013

US X-47B passes catapult-to-flight, arresting gear landing tests

(GDVN) - The U.S. Navy's new video released shows X-47B Reconnaissance Unmanned aircraft (for carriers) has been successfully tested with terrestrial catapult system and landing with brake cables - simulated situation corresponds to the landing on aircraft carrier.


The Northrop Grumman X-47B is a demonstration unmanned combat air vehicle (UCAV) developed by the American defense technology company Northrop Grumman.

The X-47 project began as part of DARPA's J-UCAS program, and is now part of the United States Navy's UCAS-D (Unmanned Combat Air System Demonstration) program, which aims to create a carrier-based unmanned aircraft. It is intended that the Unmanned Carrier Launched Airborne Surveillance and Strike System (UCLASS) will enter service in 2019.

The X-47B first flew in 2011, and as of 2013, it is undergoing flight testing, having successfully completed a series of land- and carrier-based demonstrations.




Thứ Sáu, 26 tháng 4, 2013

New T-50 fighter let to enter service in 2016 – Putin

Russia’s fifth-generation T-50 fighter jet will enter service with the country’s armed forces in 2016, and not 2015 as was previously announced, President Vladimir Putin said on Thursday.

“The T-50 fifth generation jet should go into serial production and enter service in 2016,” Putin said at a live Q&A session with the Russian public.

The Defense Ministry had earlier said the jet would be ready in 2015.

Russia will start state flight tests of the T-50 in 2014, United Aircraft Corporation's President Mikhail Pogosyan said on Tuesday.


The T-50, also known as PAK-FA (future tactical fighter aircraft), first flew in January 2010 and was presented to the public at the Moscow Air Show in 2011.

The T-50, which will be the core of Russia's future fighter fleet, is a fifth-generation multirole fighter aircraft featuring elements of "stealth" technology," super-maneuverability, super-cruise capability (supersonic flight without use of afterburner), and an advanced avionics suite including an X-band active phased-array radar.

India will also buy a fighter aircraft based on the T-50, known as the FGFA (fifth-generation fighter aircraft).

United Aircraft Corporation is the state holding company uniting Russia's aircraft building industry including Sukhoi, a military and civil aircraft manufacturer.

IndRus.in

Thứ Sáu, 19 tháng 4, 2013

Sukhoi Su-37: Document and Video

(Giaoduc.net.vn) At the present, Sukhoi Su-37 has been produced only 2 units and it is still considered as the experimental aircraft.


This kind of multi-role fighter can combat-operate in all-weather conditions and the latest version of the line-based fighter aircraft Su-27, which was developed in 1977 by the Department of experimental design of Sukhoi in Moscow and was put into use in the Russian army and more than 20 other countries around the world.

New maneuverability feature of Su-37 is the two-dimensional propulsion had good speed both directions, allowing aircraft recovered after spinning and shutdown at almost every altitude, and it is also equipped with the control system of the fly-by-wire completely.

The cockpit is equipped with four-screen of liquid crystal (HUD) displaying for the data and pilot strategies, the computer system controls the operating conditions (HOTAS).

Su-37 can carry up to 14 air-to-air missiles, and 12 × wing and fuselage stations for up to 8,000 kg (17,636 lb) of ordnance . Twelve fuselage stations can bring air-to-air missiles, air-to-ground missiles, bombs, rockets and ECM (electronic reactions). The aircraft is fitted a 30 mm GSh-30 cannon with 150 rounds.

The aircraft is equipped with air-to-air missile Vympel R-73E, short-range radar-guided. R-73E (NATO reporting name AA-11 Archer) is a close combat missile in all directions with the ability to destroy targets chasing behind or confronting at a height of 0.02 and 20 km.

Air-to-air missile Vympel RVV-AE (AA-12 Adder) is also known as R-77, can intercept the targets that flying at a speed of up to 3,600 km / h and at a height of from 0.02 to 25 km.

Su-37 can be fitted with air-to-ground missile such as short-range missiles Kh-25 (AS-12 Kegler) and Kh-29 (AS-14 Kedge) with a 317 kg warhead.


From Wikipedia:
The Sukhoi Su-37 (NATO reporting name: Flanker-F) is an experimental single-seat, supermaneuverable multirole jet fighter, designed by Sukhoi. A further development of the original Su-27 "Flanker", it was modified from the first-generation Su-35 (formerly "T10M") prototypes. The Su-37 features an upgraded avionic suite and fire-control system, but its most notable additions are the thrust-vectoring nozzles. Only two prototypes were converted.

During the Su-35 flight test programme, active controls during dogfighting maneuvers could not be attained. At the same time, Sukhoi was exploring the application of thrust-vectoring nozzles for fighter jets, giving it better dogfighting attributes. The first Su-37, converted from the eleventh Su-35, performed its maiden flight in April 1996 at Zhukovsky. It was joined by a second prototype in 1998. Throughout the entire program, the Su-37 demonstrated its potential to prospective operators at numerous air shows, performing maneuvers which were previously thought as impossible, among which was a 360° somersault. Despite its potential tactical advantage, the Su-37 did not enter production, and instead remained as a technology demonstrator for updated Su-27 family aircraft such as the export Su-30 and the Su-35BM.


Design and development

The earliest records on thrust-vectoring technology research within Sukhoi began in 1983. The design bureau studied two-dimensional (2D) vector nozzle, which was believed by the West to be the best way of controlling thrust. Sukhoi modified an Su-27UB-PS twin-seater with a 2D nozzle to verify the feasibility of this kind of nozzle. However, the design bureau's General Designer, Mikhail Simonov, believed asymmetrical nozzles (3D) to be more suitable. At the request of Sukhoi, experiments on both types of nozzles were carried out by the Siberian Aeronautical Research Institute (SibNIA).

Meanwhile, Sukhoi was busy with the T10M (later renamed Su-35 in 1993) program, which was a comprehensive upgrade over the Su-27. The T10M would incorporate aerodynamic modifications, improved avionics and armament, and have a better propulsion system, designed to give it greatly enhanced agility. The first Su-27M prototype (T-10S-70) made its maiden flight on 28 June 1988. Changes from the Su-27 include canards, upgraded engines, new radar, and a digital fly-by-wire flight-control system. Later Su-35 prototypes featured glass cockpits and modified vertical stabilizers. The Su-35's construction made significant use of composites, including aluminium-lithium (Al-Li) alloy. The aircraft, like the Su-27, could perform the previously unattainable "Pugachev's Cobra" and tailslide, but during these low-speed maneuvers, active controls could not be achieved because the flight control surfaces were ineffective.


The Su-37 could perform the 180° "Frolov Chakra", demonstrating its supermaneuverability

In 1995, the eleventh T10M prototype, T10M-11, was delivered to Sukhoi's experimental workshop to be outfitted with exclusive systems. Built by KnAAPO, its structure has increased carbon-fibre and Al-Li content. Installed was the 2D thrust-vectoring Lyulka AL-31FP, an interim measure pending the availability of the AL-37FU (Forsazh Upravleniye, "afterburner-controlled"). The Al-31FP, in fact, is a hybrid version combining the Al-31F and the vectoring nozzle of the Al-37FU. Being fitted with a 2D vector nozzle, the Al-31FU is only variable in pitch, plus or minus 15°. The engine not only incorporates a new-generation 2D TVC nozzle but also is resistant to engine surge even during inverted and flat spins, giving better reliability and maneuverability even when the angle of attack is 180°.

The fire-control system was also improved. An upgraded Phazotron N-011M Zhuk-M pulse-Doppler radar was fitted. It can scan 180° horizontally and 55° up and down, and is capable of tracking 20 aerial targets and guiding eight air-to-air missiles. In the aircraft's tail sting is an N-011M rearward facing radar, which has a 120° view horizontally and in elevation. The Su-37 also features an upgraded electronic warfare support measures package. It can carry air-to-air and air-to-surface weapons on 12 hardpoints. The vast range of weapons, of which the Su-37 can carry 8,000 kg (17,600 lb), is supplemented by the 150-round 30 mm GSh-301 cannon.

Instead of traditional analogue instruments, the cockpit has four T-form Sextan Avionique (Thales) LCD multi-function displays (MFD). These display air data/navigation, systems status, weapons/systems selection and tactical situation information. The pilot, who is provided with a head-up display (HUD), sits on the K-36DM ejection seat inclined 30° to help counter the effects of high g-forces. The pilot steers with a side-stick and pressure-sensing throttles. The two-grip flying control configuration was designed to prevent the pilot from losing contact with the controls when the aircraft is engaged in fast vectored-thrust maneuvers. Both the fixed throttle and the side-stick controller provide secure points for the pilot to brace his hands.


Operational history

Painted in a disruptive sand and brown scheme, the aircraft was given the code 711 Blue, later changed to 711 White. Its maiden flight occurred at Zhukovsky on 2 April 1996, with Yevgeni Frolov at the controls. The nozzle was locked fully aft throughout the flight, and it was not until the sixth flight that tests on the thrust-vector nozzles commenced. Frolov was joined by Igor Votintsev, and for the next twelve days, the two had amassed twelve flights between them.

Jet aircraft with yellow, tan and green colour scheme performing aerial display.
An Su-35BM performing at the MAKS Airshow in 2009. This aircraft features thrust-vectoring technology, similar to the Su-37

The 711 Blue was demonstrated to the press at Zhukovsky in spring 1996, by which time it was re-designated Su-37. Its debut to the general public came in September that year at the Farnborough Airshow, piloted by Sukhoi test pilot Yevgeny Frolov. A big talking point of the show was its performance of the "Super Cobra", when the aircraft pitched up to 180°, literally flying tail first, albeit for only a few seconds; this maneuver evolved into the 360° "Frolov Chakra" somersault. The following year, the aircraft arrived on the fifth and last day of the Paris Air Show to perform five aerial displays, the fourth of which was marred by a minor incident when the emergency undercarriage extension handle was moved, preventing gear retraction. It appeared at that year's MAKS Airshow and Dubai International Defence Exhibition, as well as the 1998 FIDAE air show in Chile; for the latter two the Su-37 appeared under the enigmatic designation, "Su-37MR".

In 1998, a second Su-37 (T10M-12) was similarly converted before making its first flight on 23 March the same year. Flight tests and demonstrations at air shows continued until 2000. In 2001, 711 was outfitted with AL-31F engines and updated fly-by-wire flight control system and avionics. In December 2002, 711 crashed during a ferry flight, effectively bringing an end to the programme; the fault was later traced to a software malfunction. The Su-37 did not reach the production stage, although by mid-2000, Sukhoi introduced several modernizations of Su-27, such as Su-30MKI and second generation Su-35, the Su-35BM, which feature similar improvements such as improved avionics and radar systems, and thrust vectoring engines.



General characteristics

Performance

Armament

  • 1 × 30 mm GSh-30 cannon with 150 rounds
  • 12 × wing and fuselage stations for up to 8,000 kg (17,636 lb) of ordnance