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US Patent 9083595 Signal modulation method resistant to echo reflections and frequency offsets

Patent 9083595 was granted and assigned to Cohere Technologies on July, 2015 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Current Assignee
Cohere Technologies
Cohere Technologies
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9083595
Date of Patent
July 14, 2015
Patent Application Number
13430690
Date Filed
March 27, 2012
Patent Citations Received
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US Patent 12131546 Systems and methods of object detection in wireless power charging systems
3
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US Patent 12074460 Rechargeable wireless power bank and method of using
4
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US Patent 12107441 Systems and methods for detecting wireless power receivers and other objects at a near-field charging pad
5
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US Patent 12132261 Systems for receiving electromagnetic energy using antennas that are minimally affected by the presence of the human body
6
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US Patent 11665041 Modulation and equalization in an orthonormal time-frequency shifting communications system
7
‌
US Patent 11670863 Multibeam antenna designs and operation
8
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US Patent 11670970 Detection of object location and displacement to cause wireless-power transmission adjustments within a transmission field
9
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US Patent 11689045 Near-held wireless power transmission techniques
10
...
Patent Primary Examiner
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Mohammad Adhami
Patent abstract

A method of modulating communications signals, such as optical fiber, wired electronic, or wireless signals in a manner that facilitates automatic correction for the signal distortion effects of echoes and frequency shifts, while still allowing high rates of data transmission. Data symbols intended for transmission are distributed into N×N matrices, and used to weigh or modulate a family of cyclically time shifted and cyclically frequency shifted waveforms. Although these waveforms may then be distorted during transmission, their basic cyclic time and frequency repeating structure facilitates use of improved receivers with deconvolution devices that can utilize the repeating patterns to correct for these distortions. The various waveforms may be sent in N time blocks at various time spacing and frequency spacing combinations in a manner that can allow interleaving of blocks from different transmitters. Applications to channel sounding/characterization, system optimization, and also radar are also discussed.

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