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dc.contributor.authorAlem, W. K.
dc.contributor.authorWeber, C. L.
dc.date.accessioned2016-05-18T23:02:28Z
dc.date.available2016-05-18T23:02:28Z
dc.date.issued1978-11
dc.identifier.issn0884-5123
dc.identifier.issn0074-9079
dc.identifier.urihttp://hdl.handle.net/10150/609814
dc.descriptionInternational Telemetering Conference Proceedings / November 14-16, 1978 / Hyatt House Hotel, Los Angeles, Californiaen_US
dc.description.abstractA demod-remod type of coherent tracking loop for conventional QPSK and staggered QPSK (SQPSK) is presented. The phase detector characteristic (S-curve) is determined. The effects of power unbalance and arm gain unbalance on the S-curve are presented. The steady state rms phase error is shown as a function of the signal-to-noise ratio at the output of the arm filters.
dc.description.sponsorshipInternational Foundation for Telemeteringen
dc.language.isoen_USen
dc.publisherInternational Foundation for Telemeteringen
dc.relation.urlhttp://www.telemetry.org/en
dc.rightsCopyright © International Foundation for Telemeteringen
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/
dc.titleA Coherent Receiver for QPSK and SQPSK Signalsen_US
dc.typetexten
dc.typeProceedingsen
dc.contributor.departmentAxiomatixen
dc.contributor.departmentUniversity of Southern Californiaen
dc.identifier.journalInternational Telemetering Conference Proceedingsen
dc.description.collectioninformationProceedings from the International Telemetering Conference are made available by the International Foundation for Telemetering and the University of Arizona Libraries. Visit http://www.telemetry.org/index.php/contact-us if you have questions about items in this collection.en
refterms.dateFOA2018-09-11T10:35:00Z
html.description.abstractA demod-remod type of coherent tracking loop for conventional QPSK and staggered QPSK (SQPSK) is presented. The phase detector characteristic (S-curve) is determined. The effects of power unbalance and arm gain unbalance on the S-curve are presented. The steady state rms phase error is shown as a function of the signal-to-noise ratio at the output of the arm filters.


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