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Dive into the research topics where Lawrence M. Ecklund is active.

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Featured researches published by Lawrence M. Ecklund.


2008 3rd IEEE Symposium on New Frontiers in Dynamic Spectrum Access Networks | 2008

The Design and Operation of the IEEE 802.22.1 Disabling Beacon for the Protection of TV Whitespace Incumbents

Gregory J. Buchwald; Stephen L. Kuffner; Lawrence M. Ecklund; Monique Brown; Edgar H. Callaway

Recent proposed rulemakings from the Federal Communications Commission in the United States offers the hope of unique access to valuable spectrum; so-called television whitespace (TVWS). Use of this spectrum is contingent upon the protection of the incumbent occupants of the proposed allocation. Television signals are among the most powerful terrestrial RF transmissions on Earth. Even so, detection of these signals to the required levels sufficient to protect these services has proven daunting. Supplemental techniques, such as geo-location, mitigate these challenges for fixed TV broadcast; however, other nomadic low power incumbents also occupy the TVWS spectrum. The most common of these are wireless microphones, a subset of which are licensed and entitled to protection. These devices are allowed a maximum conducted power level of 50 mW and 250 mW on the VHF and UHF channels, respectively. Critical to day-to-day television operations, these devices must also be afforded protection from unlicensed transmitters. Wireless microphones often operate at power levels of 25 mW or less, with inefficient antennas placed physically near the body, yielding effective radiated power levels of 5 to 10 mW, often times even less. In addition, the emissions from these devices are often audio-companded FM, making legitimate, licensed operations indistinguishable from narrowband unlicensed transmissions and other discrete carriers. To that end the IEEE 802.22 working group established task group 1 (TG1) to develop a standard for a protective, disabling beacon method capable of insuring detection of legitimate devices.


Archive | 2004

Method and apparatus for allowing communication units to utilize non-licensed title spectrum

Gregory J. Buchwald; Lawrence M. Ecklund; Richard Stanley Rachwalski; Seth David Silk; Stephen L. Kuffner


Archive | 2007

Method and apparatus for determining appropriate channels for communication

Gregory J. Buchwald; Lawrence M. Ecklund; Steven F. Gillig; Terry K. Mansfield


Archive | 2006

Method and apparatus for allocation of shared spectrum in a wireless communication system

Gregory J. Buchwald; Lawrence M. Ecklund; Stephen L. Kuffner; Stephen N. Levine; S. David Silk


Archive | 1988

Phase locked loop having a fast lock current reduction and clamping circuit

Roy H. Espe; Lawrence M. Ecklund


Archive | 2006

Method and apparatus for cognitive spectrum assignment for mesh networks

Stephen N. Levine; Lawrence M. Ecklund; Stephen L. Kuffner


Archive | 1987

Clamping circuit for a PLL tuning system

Charles J. Marik; Lawrence M. Ecklund


Archive | 1992

Am-fm combined stereo receiver

Lawrence M. Ecklund


Archive | 2007

METHOD AND APPARATUS FOR SETTING UP AND MANAGING OPERATIONAL ENVIRONMENT IN P2P WIRELESS NETWORKS

Dragan Boscovic; Wlodzimierz S. Czarnocki; Lawrence M. Ecklund; Gary W. Grube


Frequenz | 1988

Linearized differential amplifier

Lawrence M. Ecklund; Charles J. Marik

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