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Package compiled for FAA managers

FAA via National Archives / The Black Vault · 122 pages · text from the file's own layer

This package was compiled by the FAA Alaskan Region Public Affairs Office in Anchorage and sent to FAA managers with a memo from Paul Steucke dated March 5, 1987. It gathers material on the November 17, 1986 sighting by the crew of Japan Air Lines flight 1628: a news release, pilot and controller transcripts, crew interviews and radar analysis. The FAA concluded that it could not confirm the event. It attributed the second radar target to a split, uncorrelated return from the JAL Boeing 747 and planned no further investigation.

  • p. 4 …They determined that a second radar target near the JAL flight at the time of the…
  • p. 5 AAL-5, FAA February 4, 1987 SELEX:TED PORI'IONS OF TRANSCRIPI'IOO ~ THE INCIDENI' INVOLVING…
  • p. 7 …Approach center (Fairbanks FAA tower) on the sixty one line. Approach. Look at your radar. We…
  • p. 8 …Sir, the military radar advises they do have a primary target in trail of you at…
  • p. 10 …see the traffic any long-er. Affinnative. Okay sir, we're searchi.rXJ this time, we…
  • p. 15 …Th ese uncorrelated primary returns are not uncommon, due critical timing associated with the delay adjustments…
  • p. 17 …Terauchi No, third time. R. Gordon This is the third time that ah that you've…
  • p. 18 …Terauchi Big Ship - yes and the second time ah, the, in my home I saw a…
  • p. 19 …Terauchi I think it was the first time. F. Fujii Who was the first person who…
  • p. 20 …Fujii From the forward you could see the flame and the exhaust and flame were surrounding…
  • p. 21 …This one and this one, the same logic, this point and this point are the same…
  • p. 23 …Fujii When did you pick it up, the radar? K. Terauchi Time? Time? F. Fujii Time…
  • p. 24 …Autopilot stayed on all the time. K. Terauchi Yeah • R. Gordon Okay K. Terauchi Working good…
  • p. 27 …Terauchi See this is the jumbo jet. 1.5, two times this light. R. Gordon Okay…
  • p. 28 …Gordon Yeah, let's see what would you estimate the size of the small ships to…
  • p. 33 …Gordon Yes, yes, you could probably explain that with the thing you have drawn here. Now…
  • p. 35 …See if they were stacked together at the beginning, one must have returned to the mothership…
  • p. 38 Meeting the Future by Kenju Terauchi M~ ,...,. ~ L. '1\ ti;f,) !ST .$, /Y11"'1ol"O Page…
  • p. 39 MEETING THE FUTURE .. Page 5 .. We took a flight course Southeast of Greenland direct to Chule…
  • p. 40 …the same time. The strange phenomenon happened immediately.after we began left rotation, following the order…
  • p. 41 …the ground radar did not show any aircraft but us. They also asked us several times…
  • p. 42 …I changed auto- focus to manual-focus and pressed the shutter but this time the shutter…
  • p. 47 …lone time before we received When we checked our rear there was still the ship!iI…
  • p. 48 …About the same time a United Airline passenger aircraft which left Anchorage to Fairbanks flew into…
  • p. 49 …About the same time a United Airline passenger aircraft which left Anchorage to Fairbanks flew into…
  • p. 50 ~Page 16~ The strange encounter ended at 75 miles North of Talkeetna, 150 miles (Approximately 276…
  • p. 51 …The following is a record of the interview: P. Beckner ? P. Beckner Conducted at this time…
  • p. 53 …clear • And you could distinguish this lights as being different from the star . . ?.. NNNooo . . . • from the…
  • p. 54 …Tamefuji ••• so maybe he couldn't see at that time, but the Captain and me (unintelligible…
  • p. 57 …Mimoto The physical requires him to wear glasses. P. Beckner Okay , how ' bout - how 'bout the…
  • p. 58 …Now - the time of the incident, when - when you guys first saw the objects, ah what…
  • p. 60 …long did you see this total, the length of time that you saw it? T. Tamefuji…
  • p. 66 …Beckner By the engineer table? T. Tamefuji Yes, I - when I saw, but ah, cockpit was…
  • p. 67 …the trip? He felt that, er, er, was it just during this period of time when…
  • p. 68 …Beckner First saw the object? T. Tamefuj1 Hummm , I thi nk ah , at the same time…
  • p. 69 …So pretty much at the same time you both saw it? T ~ Tamefuji Right P. Beckner…
  • p. 70 …Beckner ••• or were they pretty much the same intensity for the time that you saw them…
  • p. 72 …And tha - so that was the last time you saw it, was prior to the turn…
  • p. 74 …after I sighted it the first time. The reason is because the Captain wanted to take…
  • p. 75 …At the time of sighting, how were the lighting conditions outside? 2
  • p. 78 …When I was interviewed here at the first time by FAA personnel, I was not sure…
  • p. 80 PERSONNEL STATEMENT FEDERAL AVIATION ADMINISTRATION Anchorage Air Route Traffic Control Center January 6, 1987 The following…
  • p. 81 …ROCC did have primary ta r get in the same position JL1628 reported. Several times I…
  • p. 84 …During the time period p~ior to this incident all operations were normal. I had assigned…
  • p. 88 …They stated that all they oould see were the lights and at no time could they…
  • p. 100 …At no time did either crewmember see anything outside the aircraft. The area is not within…
  • p. 101 …directly over the town of Arctic Village, Alaska, at the time of the first sighting and…
  • p. 103 …Department of TransportctiOn Federal Aviation Administration (The event occurred Ofhce of Public Affus Alaskan Region 701…
  • p. 104 …18, 1986 UTC (The event occurred on November 17, 1986 Alaska Standard Time) PLE ASE MARK…
  • p. 114 …as derivatives and duplicates) • Document the image at the time of scanning, not what it may…
  • p. 115 …adjustments to the tone distribution and/or color balance. However, at this time, monitors for viewing…
  • p. 116 …benefits, at this time we feel that RGB files produced to the color and tone reproduction…
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Federal Agencies Digitization Initiative Still Image Working Group -August 2010
II. TECHNICAL OVERVIEW
Raster Image Characteristics
Spatial Resolution
Spatial resolution detennines the amount of infonnation in a raster image file in terms of the number of picture
elements or pixels per unit of measurement, but it does not define or guarantee the quality of the information. Spatial
resolution defines how finely or widely spaced the individual pixels are from each other. The higher the spatial
resolution, the more finely spaced and the higher the number of pixels overall. The lower the spatial resolution, the
more widely spaced and the fewer the number of pixels overall.
Spatial resolution is measured as pixels per inch or PP! ; pixels per millimeter or pixels per centimeter are also used.
Resolution is often referred to as dots per inch or DPI. In common usage, the te1ms PPI and DPI are used
interchangeably. Since raster image files are composed of pixels, technically PPI is a more accurate term and is used
in this document (one example in support of using the PPI term is that Adobe Photoshop software uses the pixels per
inch terminology). DP! is the appropriate tem1 for describing printer resolution (actual dots vs. pixels); however,
DP! is used often in scanning and image processing software to refer to spatial resolution and this usage is an
understandable convention .
The spatial resolution and the image dimensions detennine the total number of pixels in the image; an 8"xl0"
photograph scanned at I 00 ppi produces an image that has 800 pixels by 1000 pixels or a total of 800,000 pixels.
The numbers ofrows and columns of pixels, or the height and width of the image in pixels as described in the
previous sentence, is known as the pixel array. When specifying a desired file size, it is always necessary to provide
both the resolution and the image dimensions ; ex. 300 ppi at S"x 1O" or even 300 ppi at original size.
The image file size, in tenns of data storage, is proportional to the spatial resolution (the higher the resolution, the
larger the file size for a set document size) and to the size of the document being scanned (the larger the document,
the larger the file size for a set spatial resolution). Increasing resolution increases the total number of pixels,
resulting in a larger image file . Scanning larger documents produces more pixels resulting in larger image files .
Higher spatial resolution provides more pixels, and generally will render more fine detail of the original in the
digital image, but not always. The actual rendition of fine detail is more dependent on the spatial frequency response
SFR) of the scanner or digital camera (see Quantifying Sca1mer/Digital Camera Performance below), the image
processing applied, and the characteristics of the item being scanned. Also, depending on the intended usage of the
master files. there may be a practical limit to how much fine detail is actually needed .
Signal Resolution
Bit-depth or signal resolution, sometimes called tonal resolution, defines the maximum number of shades and/or
colors in a digital image file , but does not define or guarantee the quality of the information.
In a I-bit file each pixel is represented by a single binary digit (either a 0 or I), so the pixel can be either black or
white. There are only two possible combinations or 2 1 = 2.
The common standard for grayscale and color images is to use 8-bits (eight binary digits representing each pixel) of
data per channel and this provides a maximum of 256 shades per channel ranging from black to white; 2s = 256
possible combinations of zeroes and ones.
High-bit or 16-bits ( 16 binary digits representing each pixel) per channel images can have a greater number of
shades compared to 8-bit per channel images, a maximum of over 65,000 shades vs. 256 shades; 21 6 - 65,536
possible combinations of zeroes and ones.
Well done 8-bits per channel imaging will meet most needs - with a limited ability for major corrections,
transfom1ations , and re-purposing. Gross corrections of 8-bit per channel images may cause shades to drop out of
the image, creating a posterization effect due to the 1imited number of shades.
High-bit images can match the effective shading and density range of photographic originals (assuming the scanner
is actually able to caphtre the information), and, due to the greater shading (compared to 8-bits per channel), may be
beneficial when re-purposing images and when working with images that need major or excessive adjustments to the
tone distribution and/or color balance. However, at this time, monitors for viewing images and output devices for
Technical Guidelines for Digitizing Cultural Heritage Materials: Creation of Raster Image Master Files 4

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Document, cited by the archive. The PDF is mirrored here; the original link is under it. 122 pages are in the text index: search them above, or from the library's search.