Friday, November 7, 2008

Air Defense Identification Zone (ADIZ)

From Wikipedia, the free encyclopedia

An air defense identification zone (ADIZ) is an area of airspace defined by a nation within which "the ready identification, the location, and the control of aircraft are required in the interest of national security"[1]. Typically, an aircraft entering an ADIZ is required to radio its planned course, destination, and any additional details about its trip through the ADIZ to a higher authority, typically an air traffic controller.

An ADIZ may be in airspace over the sovereign land or sea territory of a state, for example over a military installation or over the state's territorial waters, in which case it is simply an internal administrative matter, based on the principal of national sovereignty over airspace.

The United States and certain other nations including Canada, Australia, Japan, and Iceland, however, have established self-declared air defense identification zones extending hundreds of miles over maritime areas beyond their territorial waters, without an explicit basis in international law.

North America

In North America, the United States and Canada are surrounded by an ADIZ, which is jointly administered by the civilian air traffic control authorities and the militaries of both nations, under the auspices of the North American Aerospace Defence Command or NORAD. (The Canadian ADIZ when discussed separately is known as the Canadian Air Defence Identification Zone or CADIZ.)

The joint US/Canadian ADIZ, which is almost exclusively over water, serves as a national defense boundary for aerial incursions. Any aircraft that wishes to fly in or through the boundary must file either a Defense Visual Flight Rules (DVFR) flight plan or an Instrument Flight Rules (IFR) flight plan before crossing the ADIZ. The aircraft must have an operational radar transponder and maintain two-way radio contact while approaching and crossing the North American ADIZ.

In the United States, the FAA handles the requests of international aircraft and Transport Canada handles Canadian requests. Any aircraft flying in these zones without authorization may be identified as a threat and treated as an enemy aircraft, potentially leading to interception by fighter aircraft.

The exact nature of the external ADIZ claim of the United States is unclear.

The U.S. Code of Federal Regulations Title 14 § 99.11(a)[1] states "No person may operate an aircraft into, within, or from a departure point within an ADIZ, unless the person files, activates, and closes a flight plan with the appropriate aeronautical facility, or is otherwise authorized by air traffic control", which appears to claim authority over all aircraft in the external U.S. ADIZ regardless of destination.

However, the U.S. Navy's Commander's Handbook on the Law of Naval Operations[2] states the ADIZ applies only to commercial aircraft intending to enter U.S. sovereign airspace, with a basis in international law of "the right of a nation to establish reasonable conditions of entry into its territory". The manual specifically instructs U.S. military aircraft to ignore the ADIZ of other states when operating in coastal areas:

The United States does not recognize the right of a coastal nation to apply its ADIZ procedures to foreign aircraft not intending to enter national airspace nor does the United States apply its ADIZ procedures to foreign aircraft not intending to enter U.S. airspace. Accordingly, U.S. military aircraft not intending to enter national airspace should not identify themselves or otherwise comply with ADIZ procedures established by other nations, unless the United States has specifically agreed to do so.

Meanwhile in actual practice the U.S. does attempt to apply its external ADIZ to military aircraft which pass through its extended ADIZ without intending to enter U.S. sovereign territory[3]. A U.S. Air Force university dissertation states[4]:

These regulations do not pertain to military aircraft, but to enter US airspace, without inducing the scrambling of fighter interceptors, these rules must be complied with and followed. The US does not claim sovereignty over these zones per se, but does closely monitor and request information of all objects entering the zone.

Washington D.C.

One of the most well-known recent additions to the collection of North American ADIZs is the Washington, DC Air Defense Identification Zone, which was created after the September 11, 2001 attacks by Al-Qaeda. The attacks, which used commercial airliners in large-scale suicide attacks, caused an increase in airborne security measures, including the establishment of the new ADIZ.

References

Wednesday, November 5, 2008

Aeronautical Information Manual

From Wikipedia, the free encyclopedia

In United States aviation, the Aeronautical Information Manual (AIM) is the Federal Aviation Administration's official guide to basic flight information and ATC procedures.

This manual contains the fundamentals required in order to fly in the United States National Airspace System. It also contains items of interest to pilots concerning health and medical facts, factors affecting flight safety, a pilot/controller glossary of terms used in the ATC System, and information on safety, accident, and hazard reporting. The main body of the AIM contains ten chapters, as follows:

  1. Air Navigation
  2. Aeronautical Lighting and Other Airport Visual Aids
  3. Airspace
  4. Air Traffic Control
  5. Air Traffic Procedures
  6. Emergency Procedures
  7. Safety of Flight
  8. Medical Facts for Pilots
  9. Aeronautical Charts and Related Publications
  10. Helicopter Operations

The AIM is not regulatory in nature, although parts of it re-state and amplify Federal Aviation Regulations. However, failure to follow procedures set out in the AIM could be used in enforcement action, as such failures could substantiate a charge of a careless or reckless operation (§ 91.13).

The AIM's text and images are produced by the FAA, and are available in electronic form. Several commercial enterprises sell typeset books containing the AIM, usually in combination with those chapters of the Federal regulations that are particularly important to pilots. The books are usually called "FAR/AIM".

External links

Single-Pilot Resource Management

From Wikipedia, the free encyclopedia

Single-Pilot Resource Management (SRM) is an adaptation of Crew Resource Management(CRM) training to single-pilot operations. The purpose of SRM is to reduce the number of aviation accidents caused by human error by teaching pilots about their own human limitations and how to maximize their performance. The initiative for this training began in 2005 when the NBAA published training guidelines for single-pilot operations of very light jets (VLJs)[1]. However, the application of SRM is not limited to VLJ pilots. This training applies to all single-pilot flights in General Aviation (GA).

Although GA is often regarded as a lesser component of the aviation industry, this perception is incorrect. In the United States GA accounts for 96% of aircraft, 60% of flight hours, and 94% of fatal aviation accident[2][3]. airline and military aviation, estimates of the number of accidents caused by pilot error range from 70-80%.[4]

However, the National Transportation Safety Board revealed that 97% of accidents in General Aviation were caused by pilot error[5]. This is the statistic that SRM seeks to reduce.

Training

The content of SRM is similar to that of CRM training, except the topics relating to pilot crews are excluded (ex. captain and co-pilot communication). Examples of topics included in SRM training are situation awareness, workload management, automation management, and aeronautical decision making[1].

Delivering this training to GA pilots is difficult as they are spread out throughout the country, unlike airline pilots who can gather at one time in a lecture hall. The University of Western Ontario is a leader in SRM and is researching how to deliver SRM training online. A major research investigation at UWO recently proved that online SRM training improves pilot situational awareness[6]. This investigation involved 36 licensed pilots completing SRM training followed by a performance evaluation in a high-fidelity Cessna 172 flight simulator.

References

  1. ^ a b "NBAA Training Guidelines for Single Pilot Operations of Very Light Jets and Technically Advanced Aircraft" (PDF). National Business Aviation Association (2005). Retrieved on 2008-10-28.
  2. ^ Kane, Robert (2002), Air Transportation (14th ed.), Kendall/Hunt Publishing Company, pp. 751, ISBN 0787288810
  3. ^ "Accidents, fatalities, and rates". NTSB. Retrieved on 2008-10-25.
  4. ^ Wiegmann, D. A.; S. A. Shappell (2001). "A Human Error Analysis of Commercial Aviation Accidents Using the Human Factors Analysis and Classification System (HFACS)" (pdf). Federal Aviation Administration. Retrieved on 2008-10-25.
  5. ^ "General aviation accidents involving visual flight rules flight into instrument meteorological conditions" (PDF). NTSB (1989). Retrieved on 2008-10-28.
  6. ^ Kearns, S. K. (2007), The effectiveness of guided mental practice in a computer-based single pilot resource management training program

JEPPESEN (J-AID)

from privote pilot manual
The Jeppesen Airport and Information directory (J-AID) is a collection of the most current aeronautical and airport information available. It includes data for both VFR and IFR flight operations. The J-AID is divided into several section: Introduction, Radio Facilities, Airport Directory, Meteorology, Tables and Codes, Air Traffic Control, and Regulaitons. The information is ususally updated on a regualr schedule. Included in the J-AID is the material covered int he Airman's Inforamtion Manual and the Airport/Facility Directory, with extensive coverage of many other aeronautical knowledge areas. Because of the volume of material in the J-AID and frequency of revision, FAR Part 135.81 autherizes the use of the J-AID as a substitute for the AIM and the Airport/facility Directory for air taxi and commercial operations, Many airloines and air taxi operations prefer its use.


from http://foraker.research.att.com/~davek/slide/random/e6b.html

Jeppesen-Sanderson Flight Computer

Jeppesen-Sanderson Flight Computer (front) Jeppesen-Sanderson Flight Computer (reverse)

Probably the only slide rule still in widespread production. This is a somewhat specialized rule (though it can do basic multiplication and division using the circular rule on the front) designed for solving the vector problem involved in calculating a flightpath, correcting for wind. The front of the rule can also calculate things like fuel consumption, while the back window is designed to allow the user to draw the vector problem in pencil. Pretty darn cool, and they're nicely made (this one's all aluminum). I guess I'm not too surprised these things are still made; i'd be a little reluctant to depend on a cheap Duracell for something like this. Plus, the design is really well-suited for the task (among other things, it's designed to be usable with just one hand, the other hand being somewhat occupied in the actual piloting of the airplane.)

Airman's Information manual

The Airman's Information Manual (AIM) provides basic flight information and ATC procedures. It furnishes a comprehensive description of the national air space system and the procedures for operating within that system.