USHST Report Touts Automatic Flight Control Systems in Light Helicopters | Aero-News Network
Aero-News Network
RSS icon RSS feed
podcast icon MP3 podcast
Subscribe Aero-News e-mail Newsletter Subscribe

Airborne Unlimited -- Most Recent Daily Episodes

Episode Date

Airborne-Monday

Airborne-Tuesday

Airborne-Wednesday Airborne-Thursday

Airborne-Friday

Airborne On YouTube

Airborne-Unlimited-06.23.25

Airborne-NextGen-06.24.25

AirborneUnlimited-06.25.25

Airborne-AffordableFlyers-06.26.25

AirborneUnlimited-06.27.25

Thu, Mar 04, 2021

USHST Report Touts Automatic Flight Control Systems in Light Helicopters

'Most Part 27 Aircraft Are Not Equipped With Even The Most Basic Stabilization Systems'

As a result of its comprehensive analysis of fatal helicopter accidents, the U.S. Helicopter Safety Team determined that loss of control while inflight has been a leading factor in accident causes, especially involving light helicopters.

Current light helicopters have flight characteristics that are challenging and demanding of pilot workload. In response, the USHST is moving forward with some first steps to increase safety by encouraging the development and installation of stability augmentation systems and autopilot devices that increase the flight stability of light helicopters.

"If light helicopters operating under visual flight rules could be enhanced to meet some of the instrument flight rule stability requirements, many loss-of-control accidents could be avoided," explains Nick Mayhew, industry co-chair of the U.S. Helicopter Safety Team. "Aircraft stability would help a pilot maintain positive aircraft control during temporary losses of visual cueing or disorientation."

Transport vs. Light Rotorcraft: Automatic flight control systems have been successfully integrated into transport category (Part 29) helicopters for more than 30 years and have proven their effectiveness and safety for flight in low visibility and instrument meteorological conditions.  However, most of these systems are too complex or heavy to integrate into Part 27 helicopters, particularly single-engine models.  Consequently, these smaller rotorcraft lack the operational capability and inherent safety that autopilot systems provide. This restricts such aircraft from operating under instrument flight rules and results in more frequent flights under VFR conditions in the midst of poor visibility and low ceilings. 

Since most Part 27 aircraft are not equipped with even the most basic stabilization systems, they remain more susceptible to loss of control. This could occur when operations are conducted under marginal visual flight rules, when a pilot encounters unintended flight into instrument meteorological conditions or when a pilot becomes spatially disoriented.

New Pathway: In response to this situation, the USHST is presenting a new Recommended Practices document, "Automatic Flight Control Systems in Light Helicopters," (https://ushst.org/loss-of-control/). It provides wide-ranging information about automatic flight control functionality and performance, including:

  • Stability Augmentation
  • Auto-Land
  • Basic Coupled Modes and IFR Coupled Modes
  • Hover-Assist
  • Envelope Protection
  • Automatic Hover Departure
  • Level or Save Me Mode
  • Autorotation Assistance

New Tech: In addition, the paper offers an extensive look at the current and new stability augmentation and autopilot technology, including:

  • Systems currently offered by rotorcraft manufacturers
  • Systems offered by outside 3rd party vendors

Integration of UAS and eVTOL stabilization technology and their safety enhancing features such as:

  • Self-Leveling in Flight or at Hover,
  • Altitude Hold,
  • Automatic Roll and Yaw Control,
  • Omnidirectional Collision Avoidance, etc.

"With the increasing maturity of existing technology and the emergence of new technologies commonly used beyond the aerospace industry," adds Mayhew, "it may be possible to find automatic flight control system solutions that achieve sufficient stability and reliability through low-cost/low-weight systems. Working together, we can find these solutions and enhance safety."

FMI: www.USHST.org, www.IHSF.aero

Advertisement

More News

ANN's Daily Aero-Linx (06.29.25)

Aero Linx: Transport Canada We are a federal institution, leading the Transport Canada portfolio and working with our partners. Transport Canada is responsible for transportation p>[...]

ANN's Daily Aero-Term (06.29.25): Gross Navigation Error (GNE)

Gross Navigation Error (GNE) A lateral deviation from a cleared track, normally in excess of 25 Nautical Miles (NM). More stringent standards (for example, 10NM in some parts of th>[...]

Classic Aero-TV: Anticipating Futurespace - Blue Origin Visits Airventure 2017

From AirVenture 2017 (YouTube Edition): Flight-Proven Booster On Display At AirVenture… EAA AirVenture Oshkosh is known primarily as a celebration of experimental and amateu>[...]

NTSB Final Report: Cirrus SR22

Aircraft Parachute System (CAPS) Was Deployed About 293 Ft Above Ground Level, Which Was Too Low To Allow For Full Deployment Of The Parachute System Analysis: The day before the a>[...]

Airborne Affordable Flyers 06.26.25: PA18 Upgrades, ‘Delta Force’, Rhinebeck

Also: 48th Annual Air Race Classic, Hot Air Balloon Fire, FAA v Banning 100LL, Complete Remote Pilot The news Piper PA-18 Super Cub owners have been waiting for has finally arrived>[...]

blog comments powered by Disqus



Advertisement

Advertisement

Podcasts

Advertisement

© 2007 - 2025 Web Development & Design by Pauli Systems, LC