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Electronics / Signal processing / Information theory / Radar / Plasma physics / EISCAT / Ionosphere / Undersampling / Modulation / Technology / Digital signal processing / Telecommunications engineering


Real-time space debris monitoring with EISCAT J. Markkanen a , M. Lehtinen b , and M. Landgraf c a EISCAT b Sodankyl¨ a
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Document Date: 2005-05-10 01:12:10


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City

Longyearbyen / Sodankyl¨a / Sodankyl¨ a / Darmstadt / Tromsø / Kiruna / /

Company

Invers Ltd. / EISCAT Svalbard / XILINX / /

Continent

Europe / /

Country

Germany / Sweden / Norway / Svalbard and Jan Mayen / Finland / /

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EntertainmentAwardEvent

Jussi / /

Event

FDA Phase / /

Facility

Apple’s DSP library / Geophysical Observatory / /

IndustryTerm

correlation products / inner product / real-time applications / overall processing speed / direct-digital-synthesizer chip / software modules / ntp protocol / signal processing / sample correlation products / programmable logic chip / maximum-likelihood solution / dual-processor / amplitude domain data processing / signal processing board / data processing / host site / signal total energy / term fast match function algorithm / computing / real-time speed / vector processor / required processing speed / /

OperatingSystem

UNIX / Mac OS X / Macintosh / /

Organization

Scientific Association / T¨ ahtel¨ / /

Person

Klystron Klystron / /

Position

radar controller / programmable radar controller / controller / /

Product

F14 / F15 / kHz / F13 / G5 / /

ProgrammingLanguage

C / D / /

ProvinceOrState

South Dakota / /

Technology

FPGA / LAN / AltiVec vector processor / match function algorithm / UNIX / tomography / GPS / key algorithms / ESA / ntp protocol / GPS system / programmable logic chip / Gigabit / direct-digital-synthesizer chip / DSP / gigabit Ethernet / /

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