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US Patent 7010048 Multiple access method and system

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Is a
Patent
Patent
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Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
70100480
Patent Inventor Names
Steven J. Shattil0
Date of Patent
March 7, 2006
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Patent Application Number
093815880
Date Filed
February 10, 1999
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Patent Citations Received
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US Patent 12137019 Signal generation method and apparatus
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US Patent 11991738 Communication techniques using quasi-static properties of wireless channels
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US Patent 12009960 Location-assisted channel estimation methods in wireless communications systems
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US Patent 12022289 Integrated secure device manager systems and methods for cyber-physical vehicles
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US Patent 12095529 Spread-OFDM receiver
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US Patent 11843552 Fixed wireless access using orthogonal time frequency space modulation
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US Patent 11894965 Efficient synthesis and analysis of OFDM and MIMO-OFDM signals
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US Patent 11917604 Orthogonal multiple access and non-orthogonal multiple access
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Patent Primary Examiner
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Kevin Burd
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Patent abstract

A wireless communication system transmits data on multiple carriers simultaneously to provide frequency diversity. Carrier interference causes a narrow pulse in the time domain when the relative phases of the multiple carriers are zero. Selection of the frequency separation and phases of the carriers controls the timing of the pulses. Both time division of the pulses and frequency division of the carriers achieves multiple access. Carrier interferometry is a basis from which other communication protocols can be derived. Frequency hopping and frequency shifting of the carriers does not change the pulse envelope if the relative frequency separation and phases between the carriers are preserved. Direct sequence CDMA signals are generated in the time domain by a predetermined selection of carrier amplitudes. Each pulse can be sampled in different phase spaces at different times. This enables communication in phase spaces that are not detectable by conventional receivers. The time-dependent phase relationship of the carriers provides automatic scanning of a beam pattern transmitted by an antenna array. In waveguide communications, the carrier frequencies and phase space may be matched to the chromatic dispersion of an optical fiber to increase the capacity of the fiber.

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