Tag: landing system

  • Indra to help boost European airport capacity with GBAS

    Starting this year, new-generation GNSS-based landing systems — ground-based augmentation systems or GBAS — will be deployed at airports all around Europe to increase runway capacity by up to 6% in peak traffic periods, according to Indra, a key partner of the European GBAS Alliance.

    The GBAS technology allows aircrafts to make steeper approaches, which saves fuel and reduces noise and CO2 emissions. GBAS further improves airport capacity by letting approaching aircraft use different glide slopes to avoid wake turbulence left by precedent aircraft in the runway.

    According to research by the European Union’s SESAR initiative supported by Eurocontrol simulations, this can lead to a runway capacity increase between 2% and 6%.

    The European GBAS Alliance includes airports, airlines, air navigation service providers and air- and ground-manufacturing industry working for a coordinated and synchronized deployment of ground-based augmentation systems (GBAS).

    Photo: Indra
    Photo: Indra

    The plan is for deployment preparations to start this year, and ramp up in 2020. The focus is particularly on precision approaches in low-visibility conditions.

    The first collaborative meeting took place in Toulouse, France, in June with more than 20 organizations represented.

    GBAS is recognized as a supplement and, in the future, the replacement of instrument landing systems (ILS).

    A synchronized GBAS implementation for low visibility operations (GBAS GAST D for categories II and III) will lead to environmental, economical, capability and safety benefits for airports, airlines and air navigation service providers.

    Indra has been a driver for GBAS development for years, and is one of the initiators behind the European GBAS Alliance. It contributes with one of the technological pillars; the NORMARC GBAS system is an Indra Air Solution capable of guiding aircraft even in low visibility conditions (CAT II and III). The technology is ready, and the focus now is on getting the infrastructure and regulatory framework in place.

    “The great response to this initiative is very encouraging,” said Hugo Moen, GBAS general sales manager at Indra. “In spite of the indisputable benefits to everyone, we need a collective effort to get out of a “chicken or egg” situation. Both airlines and airports need to make some investments, but airlines are reluctant to invest in GBAS receivers for aircraft as few airports have the required infrastructure. Likewise, airports or ANSPs are not investing since few aircraft can make use of the system.”

    GBAS differs from ILS in being based on GNSS instead of conventional radio signals. Whilst ILS signals can be affected by topography and other physical objects, GBAS has no critical or sensitive areas. This allows for higher capacity during precision approaches, reducing the risk of diversion, cancellation and go-around.

    “GBAS enables steeper and shorter approaches. Precision landings can be performed at airports where this has not been possible due to topography or other reasons. In Norway, we have used GNSS-based landing systems at 17 airports for many years, with great results. It is nice to see the industry working together so more countries can benefit from this new technology,” said GBAS Product Manager Linda Lavik from Indra.

  • US Navy awards Raytheon $255 million for precision landing

    US Navy awards Raytheon $255 million for precision landing

    System equips the F-35 and unmanned aircraft with safer, more accurate landing guidance

     
    The U.S. Navy has awarded Raytheon Company a $255 million contract for development and production readiness of its next generation precision landing system. The Joint Precision Approach and Landing System uses GPS satellite navigation to provide more accurate landing guidance for manned and unmanned aircraft, replacing radar and beacons used in older systems.

    This contract, announced by the Department of Defense on Sept. 21 and Raytheon on Oct. 19, includes options which, if exercised, would bring the value to $270 million.

    Raytheon will complete development for an auto-land capability to be used by both manned and unmanned aircraft, as well as finalize the integration with the F-35 Joint Strike Fighter: the first aircraft to be equipped with JPALS technology.

    A U.S. Navy F-35C Lightning II lands aboard the aircraft carrier USS Nimitz in the Pacific. (Photo: US Navy)
    A U.S. Navy F-35C Lightning II lands aboard the aircraft carrier USS Nimitz in the Pacific. (Photo: US Navy)

    When operational in 2018, the U.S. Navy and Marine Corps will use JPALS on the F-35C carrier variant, F-35B short takeoff/vertical landing variant and the MQ-25A multi-mission unmanned vehicle.

    “The JPALS solution revolutionizes landings for manned and unmanned military aircraft,” said Dave Wajsgras, president of Raytheon’s Intelligence, Information and Services business. “Aviators will be able to trust this technology to provide safe, secure, and reliable landing guidance, at any time of day, in all kinds of weather and environments.”

    Developed in partnership with the U.S. Navy to provide pinpoint landing guidance on carriers in rough seas, JPALS is tailorable to a wide range of environments including contingency operations requiring rapid deployment, or land-based airfields with curved, segmented and specialized approaches, and can integrate and modernize landing systems on legacy aircraft for joint interoperability.

    JPALS improves navigational alignment prior to approach, allowing aircraft to land on any aircraft carrier or amphibious assault ship, day or night, even in adverse weather conditions. As the only military ground-based augmentation system in the world, the system features anti-jam protection to ensure mission continuity throughout a range of threat environments.