0503 HEMS Weather Symposium, March 2006. Enhanced Vision Systems Questions to Address today What is Max-Viz and who is Bob Yerex ? What is EVS, and how.

Slides:



Advertisements
Similar presentations
Weather Hazards Chapter 9, Section B.
Advertisements

Ch 14 – Instrument Meteorological Conditions (IMC)
LZ / PZ RECONNAISSANCE An LZ and/or PZ reconnaissance is an area reconnaissance performed to determine the suitability for air assault operations of a.
INTERACTION OF EM WITH ATMOSPHERE Course: Introduction to RS & DIP Mirza Muhammad Waqar Contact: EXT:2257 RG610.
The airport operator’s perspective on runway incursion hazards and mitigation options Session 2 Presentation 3.
The pilot and airline operator’s perspective on runway incursion hazards and mitigation options Session 3 Presentation 1.
VISUAL ILLUSIONS SSG RODRIGUEZ REFERENCES: FM 1-301, TC
Night Flying and the JAR Night Qualification
Night Helicopter EMS (HEMS) Operations Safety
Downloaded from Approach and Landing Accidents Reducing the Risk Presented by Bryan W. Neville Aviation Safety Inspector.
Increasing The Relevance Of AVS Within The NAS 9 January 2007 Nominated for Flight International’s “Aerospace Industry Awards” 2005.
Regional Gliding School Cloud Precipitation Fog Haze Smoke Blowing Snow Blowing Dust Blowing Sand.
Medical Helicopter Safety In-service EMS Service Joseph Lewis, M.D. March, 2009.
Air Medical Weather Symposium Boulder, Colorado March 21-23, 2006 “Needs of the Air Medical Industry” Bruce Milton, Air Methods Corporation Skip Barthle,
USHST Update James Viola. Overview IHST - USHST’s Current Status Fatal Accident Focus Fatality Reduction Initiatives.
Goshen, Indiana June A Safety Snapshot of the U.S. Civil Helicopter Community.
#4095. How much colder than standard temperature is the actual temperature at 9,000 feet, as indicated in the excerpt from the Winds and Temperature Aloft.
ElectroOptic Sensors Matt McKeever Jonathan Baker UAV Design Team 10/26/2006
Remote sensing in meteorology
Applications from packages I to III
Satellites and Radar – A primer ATMO 203. Satellites Two main types of satellite orbits – Geostationary Earth Orbiting Satellite is 35,786 km (22,236.
Sense & Avoid for UAV Systems
Chapter 2: Weather Factors
Chapter 19 Visibility & Visibility reducing phenomena.
Visibility ATC Chapter 5.
Runway Excursions. Runway Excursion 2000 Worldwide, runway excursions are the highest single occurrence category of all accidents for commercial & general.
IR Photography Forensic Applications. Characteristics of IR Photography  In digital IR photography the sensor is sensitive to IR light –  Near-infrared.
The Effects of Weather on Aircraft Part 2 of 2. Video Delta Flight 191 Aug 2, 1985 Causes and Effects
Gate-to-Gate Project: Implementing Sequencing, Merging, and Spacing Captain Bob Hilb September 11, 2006.
Satellite Imagery ARSET Applied Remote SEnsing Training A project of NASA Applied Sciences Introduction to Remote Sensing and Air Quality Applications.
Visible Satellite Imagery Spring 2015 ARSET - AQ Applied Remote Sensing Education and Training – Air Quality A project of NASA Applied Sciences Week –
Infrared Technology. -W HAT IS AN I NFRARED C AMERA ? -I NFRARED S PECTRUM -L ONG AND M ID W AVELENGTH I NFRARED -T HERMAL A DVANTAGE - I NFRARED I MAGING.
Dew, Frost and Fog. RECAP Hydrological cycle: transport of water and energy. Humidity: absolute humidity, specific humidity, water mixing ratio, relative.
Electromagnetic Spectrum. Different forms of radiation arranged in order according to their wavelength. – Travels through space at 300,000 km/s or 186,000.
Chapter 5:intrument flight rules
Office of Aviation Safety Emergency Medical Services (EMS) Aviation Operations Jeff Guzzetti Deputy Director for Regional Operations.
Observer Scanner Training
Unit 3 Infrared Basics and Limitations. Objectives: The student will be able to explain in layman’s terms four basic elements that affect thermal IR sensing.
Unit 3 Infrared Basics and Limitations. Objectives: The student will be able to explain in layman’s terms four basic elements that affect thermal IR sensing.
A Technology Partnership for the New Millennium Randy Stevens Office of Aviation Research 68th NASAO Annual Convention September 20, 1999 Enhancing Aviation.
WILDFIRE UAS Concept of Operations US Forest Service Fire & Aviation Management DRAFT.
A White Paper on the potential for a small scale airborne system for Threat assessment, Characterization, Monitoring, and Tactical feed-back for deployment.
Revolutionizing Aviation Pres Henne Senior Vice President, Programs Gulfstream Aerospace Corporation.
Satellite Imagery ARSET - AQ Applied Remote SEnsing Training – Air Quality A project of NASA Applied Sciences NASA ARSET- AQ – EPA Training September 29,
Lecture 2: AIRSIDE PART 2 By: Zuliana Ismail.
Runway Incursion Causal Categories OPERATIONAL ERROR (OE) - A human error caused by a tower controller. There are over 8000 tower controllers in the U.S.
IR Photography Forensic Applications. Characteristics of IR Photography  In digital IR photography the sensor is sensitive to IR light –  Near-infrared.
Radar.
IMAGERY.
THERMOGRAPHY Presented By: Nagaraj S Patil. Contents Introduction What it is? Where it is used? What makes it useful? Principle Application Advantages.
A Technology Partnership for the New Millennium Anne Harlan, Director William J. Hughes Technical Center 68th NASAO Annual Convention September 20, 1999.
The Night Environment October, 1994 Statistics Night is 5 x more dangerous than day flying Night accidents are more likely to be fatal –28% of fatal.
Light-Portable Synthetic Aperture RADAR
Air Line Pilots Association, International IESALC Denver October19,2015 LED Lights In Runway And Approach Lighting Arrays A Pilot’s Perspective Captain.
Remote sensing/digital image processing. Color Arithmetic red+green=yellow green+blue=cyan red+blue=magenta.
1 IFR Instrument Flight Rules Instrument Meteorlogical Conditions Background: –IFR is specified by the FAR’s(Federal Aviation Regulations) –Weather Conditions.
Temperature Inversions the cause of the smoggy brown haze.
Presentation of equipment.
Rotary Wing Night Flight Part II
INFRARED SENSORS AND SYSTEMS
ATMOSPHERIC EFFECTS ON ELECTRO-OPTICAL SENSORS AND SYSTEMS
How(UAVs) are used in Disaster Management
Civil Air Patrol – California Wing Weather Mission Scanner Course
Bringing Large Commercial Airport Capabilities to Your Local Community
Effects of Darkness on Vision
Runway Excursions.
Introduction and Basic Concepts
Remote sensing in meteorology
Dew, Frost and Fog.
© 2016 Global Market Insights, Inc. USA. All Rights Reserved Thermal Camera Market: Key Technologies and Trends.
Presentation transcript:

0503 HEMS Weather Symposium, March 2006

Enhanced Vision Systems Questions to Address today What is Max-Viz and who is Bob Yerex ? What is EVS, and how does it operate ? How can EVS help with EMS safety ?

Enhanced Vision Systems What is Max-Viz ? Founded in 2001, based in Portland OR. A team of over 30 of the foremost experts in EVS sensor technology. Sole mission is to enhance the situational awareness of flight crews and existing mission flight safety.

Enhanced Vision Systems Who is Bob Yerex ? Retired Military helicopter pilot. 4 years in commercial airlines. 2 years flying in an SPIFR EMS program. Relatively new to Max-Viz. Extensive background in flight safety.

Enhanced Vision Systems Why am I here ? I know what you do, and what it is like operating in the EMS environment. I understand the available technologies, and how they can assist in mitigating operational risk. I sincerely believe EVS can answer many of the questions on how to improve safety.

Enhanced Vision Systems What is an “Enhanced Vision System” ? EVS is a situation awareness tool. EVS enhances day / night operational safety and situational awareness in many limited visibility environments. EVS uses an infrared sensor, the same FLIR technology that has been proven useful in military and law enforcement applications for decades. EVS generates a “black & white” TV image, based upon the infrared (thermal) characteristics of the scene.

Enhanced Vision Systems Sample Video, Sun Valley Idaho, Night Approach, Max-Viz Cessna 421, Test Bed System (2 sensor) (witness camera view added in the insert)

Enhanced Vision Systems Max-Viz EVS-1000 EVS-1000 Most Performance for the Dollar of any EVS System on the Market. 80% Less Expensive than Competitive Systems. High Reliability, no closed-cycle cooler. Uncooled Technology, Allows for Very Small and Light Package (<5 lbs.) Long-wave IR sensor.

Enhanced Vision Systems Small and Light Weight Easy, flexible installation Less impact on payload 5 lbs w/ power supply Max-Viz Product Technology Uncooled Microbolometer Infrared (IR) Detectors Microbolometer IR Sensor Head Higher Reliability 15,000+ Hour MTBF No Mechanical Moving Parts Less Maintenance Less Expensive Lower Acquisition Cost Lower Installation Cost Lower Maintenance Cost

Enhanced Vision Systems EVS-1000 on Eurocopter EC-145

Enhanced Vision Systems EVS-1000 on Bell 412

Enhanced Vision Systems EVS-1000 on Sikorsky S-76

Enhanced Vision Systems A-109 E Power

Enhanced Vision Systems Bell-212, San Diego Fire & Rescue

Enhanced Vision Systems AS-355 Installation

Enhanced Vision Systems The Solution…EVS-1000 Enhanced Vision Enhanced Vision Systems (EVS) by Max-Viz Provide day-like vision in: Darkness Poor visibility Smoke Haze Smog Dust Light Fog * Greater distance through light fog than human vision, depending on conditions… *

Enhanced Vision Systems Energy and Atmospheric Attenuation Electromagnetic Energy can be attenuated (absorbed and scattered) by the air itself, moisture in the air and/or particles in the air. Particles in the air typically attenuate wave-lengths of energy that are smaller than the particles size. EVS-1000 is sensitive to energy that is in the 8-14 micron range.

Enhanced Vision Systems Energy and Atmospheric Attenuation EVS-1000 will typically image through smog, smoke and dust particles that are LARGER than 1 micron, and smaller than 8-14 microns. Many helicopter accidents occur in “brown-out” landings. The EVS-1000 images through brown-out conditions providing a clear view of the real horizon & aircraft attitude.

Enhanced Vision Systems Rain, Snow, Clouds and Fog … As droplet sizes become larger than 1 micron, the naked eye will begin to shut down, as will an NVG scene. When droplet sizes grow larger than microns, the LWIR window will begin to close down. Light fog/clouds are often smaller droplet size than LWIR, affording the pilot with a view of targets and terrain through the light fog.

Enhanced Vision Systems Rain, Snow, Clouds and Fog … Heavy clouds / fog will attenuate LWIR (you can profile clouds or fog, enhancing avoidance or abort decisions prior to encountering IIMC conditions). In all cases, targets in any fog environment will generally be visible at 4x to 10x greater distance on EVS than with the human eye. EVS can be used to provide verification of targets in thick fog in ground operations.

Enhanced Vision Systems Example….Heavy and Light Obscurants Look closely Heavier Clouds are behind the ridge Lighter clouds / smog / haze are in front of the ridge…

Enhanced Vision Systems Human Factors….Depth Perception EVS-1000 is a 53 degree wide by 40 degree vertical field-of-view. Minimal training and experience is necessary to avoid “objects can be closer than they appear” problems. In a 50 foot approach, the EVS image (at 5 degree look-down) will present a 550 feet wide display of the LZ area.

Enhanced Vision Systems The Problem….Operational Risks Controlled Flight Into Terrain See the weather or terrain before it becomes a problem. Inadvertant IMC Unfamiliar Approaches & Terrain. Operating at very unforgiving altitudes. Enhanced ability to avoid areas of IFR or low visibility. Enhancement to early and appropriate abort decisions. Loss of Situational Awareness.

Enhanced Vision Systems Why should EMS be interested in EVS ??? “ From , NTSC found that EMS helicopter accident rates were 3.5 times higher than other Part 135 operations… …13.42 accidents per 100,000 flight hours” (safecopter.arc.nasa.gov). “ A disproportionate number occurred at night…38% of flights were at night, and 49% of the accidents occurred at night….with 36% during cruise…” (Air Med Physicians Handbook, Nov 02).

Enhanced Vision Systems Why should EMS be interested in EVS ??? “88% of weather-related accidents occurred at night, with 77% of these involving fatalities…. (AMPH Report, Nov 2002). “Helicopter EMS death rate is nine times greater than the riskiest occupations…..3.8/100,000 for all industries, 21.2 for agriculture, 22.5 for mining, 192 per 100,000 projection rate for EMS operations”… (AMPH Report, Safety & Risk Assessment in AMT, Nov 2002).

Enhanced Vision Systems What are the Operator Benefits with EVS ? EVS Benefits Terrain Avoidance. Early Detection of Runway / LZ Incursions. Operations in Unfamiliar Areas. Early Visual Acquisition of Runway in IMC & MVFR. Ground & Taxi Operations. Aircraft Attitude Reference. Marginal VFR Operations. Situational Awareness. Enhances:

Enhanced Vision Systems Ground & Taxi Operations Taxiway / Ramp, or LZ Hazard Avoidance Aircraft Vehicles Humans/Animals Debris Pavement Edges

Enhanced Vision Systems Unfamiliar Airports / LZs at Night EVS View Pilot’s View Enhances: Ability to see runways vs. taxi-ways. EVS View Pilot’s View View of airport surface.

Enhanced Vision Systems Unforgiving Environments Penetrates Dust Smoke Smog Blowing Sand

Enhanced Vision Systems Conclusion I am anxious to meet with any of you to discuss EVS technology. I am here for the entire symposium. EVS technology will make a difference in EMS safety. Our mission is to help you mitigate risk, and enhance the safety of your existing operations.