翻訳と辞書
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・ Tracking collar
・ Tracking Down Maggie
・ Tracking error
・ Tracking number
・ Tracking ship
・ Tracking shot
・ Tracking signal
・ Tracking software
・ Track 12
・ Track 29
・ Track 5
・ Track 61 (Boston)
・ Track 61 (New York City)
・ Track access controller
・ Track Aduowan
Track algorithm
・ Track and field
・ Track and field at the 1995 Military World Games
・ Track and field at the 1999 Military World Games
・ Track and field at the 2003 Military World Games
・ Track and field at the 2007 Military World Games
・ Track and field at the 2011 Military World Games
・ Track and field at the 2015 Military World Games
・ Track and field at the Military World Games
・ Track and field official
・ Track and trace
・ Track automation
・ Track ballast
・ Track Bangas
・ Track bed


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Track algorithm : ウィキペディア英語版
Track algorithm
A Track algorithm is a radar and sonar performance enhancement strategy. Tracking algorithms provide the ability to predict future position of multiple moving objects based on the history of the individual positions being reported by sensor systems.
Historical information is accumulated and used to predict future position for use with air traffic control, threat estimation, combat system doctrine, gun aiming, missile guidance, and torpedo delivery. Position data is accumulated over the span of a few minutes to a few weeks.
There are four common track algorithms.〔(【引用サイトリンク】title=Fundamentals of Radar Tracking )
* Nearest Neighbor
* Probabilistic Data Association
* Multiple Hypothesis Tracking
* Interactive Multiple Model (IMM)
==History==

The original tracking algorithms were built into custom hardware that became common during World War II. This includes storage tubes used with planned position indicator displays, range height indicator displays, and pen-plotting boards used for civilian air traffic control and waterway management. It also includes custom analog computers, like the Mark I Fire Control Computer used with radar data to aim guns, missiles, and torpedoes associated with military air traffic control and waterway management.
Track algorithms were migrated from analog equipment to digital computers from the 1950s through the 1980s. This was necessary to eliminate limitations that include mid-air collisions and other problems linked with obsolete equipment that was socialized by PATCO and United States Department of Defense. Similar migration trends occurred in other countries throughout the world for similar reasons.
Modern civilian air traffic and military combat systems depend upon a custom track algorithms used with real-time computing slaved to displays and peripherals.
Limitation for modern digital computing systems are processing speed, input-output throughput rate, the number of input-output devices, and software compatibility with upgrade parts.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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