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Maximizing the Stability of an Ensemble of Clocks
Maximizing the Stability of an Ensemble of Clocks

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Publisher: Storming Media
Category: Book

Buy New: $28.95




Media: Spiral-bound
Pages: 103

ISBN: 1423500563
EAN: 9781423500568

Publication Date: 2003
Availability: Usually ships in 1-2 business days
Condition: Please note that this is a report or document and is not a book, per se. It is 103 pages long and is Velobound in a soft linen cover. This technical report was sponsored by the Pentagon and is provided in the best form available to the government. Sometimes our report quality is picture perfect and in color; other times, particularly for older reports, extensive black-and-white photocopying has degraded the quality. If you have any questions about quality of a particular report, please ask and we would be happy to describe it in more detail.

Editorial Reviews:

Product Description
This is a NAVAL POSTGRADUATE SCHOOL MONTEREY CA report procured by the Pentagon and made available for public release. It has been reproduced in the best form available to the Pentagon. It is not spiral-bound, but rather assembled with Velobinding in a soft, white linen cover. The Storming Media report number is A382814. The abstract provided by the Pentagon follows: Atomic Clocks provide "stable" signals that are mainly used to generate time scales and to measure differences of time between events. Each atomic clock can individually be characterized according to the stability of the scale it produces. Due to the stochastic behavior of each clock, usually clock ensembles are used to build more stable time scales. This process requires basically two steps. First it is required to individually characterize each time source to identify the particular noise components present. Second, a measure of performance is required in order to derive an algorithm based on it to properly "weigh" this particular clock in the process of creating a combined scale. In this thesis both problems are faced using an operations research approach: each clock is modeled, analyzed and characterized by a time-dependent measure of performance related to its intrinsic stability, and optimally combined to produce a more stable combined time scale. The optimality criterion is directly related to the spectral characteristics of the noise sources present.


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