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Distributed antenna system and method

  • US 9,374,187 B2
  • Filed: 08/17/2012
  • Issued: 06/21/2016
  • Est. Priority Date: 03/12/2012
  • Status: Active Grant
First Claim
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1. A distributed antenna system comprising:

  • a plurality of remote units configured to service different regions of a service area; and

    a head-end unit configured to process and transmit downlink signals from base stations to the remote units over optical cables, and to process and transmit uplink signals from the remote units to the base stations;

    wherein the remote units are configured to adjust or filter a level of downlink signals from the head-end unit and to transmit the adjusted or filtered downlink signals to mobile stations, and to process and transmit uplink signals from mobile stations to the head-end unit over the optical cables;

    wherein the head-end unit comprises;

    a plurality of head-end RF units each configured to adjust or filter the downlink signals from at least one base station and to output corresponding downlink RF signals, and to adjust or filter the uplink signals from corresponding ones of the remote units;

    a plurality of E/O converters each configured to convert the downlink RF signals from a corresponding head-end RF unit into a downlink optical signal, wherein the downlink optical signals from a first one of the E/O converters has a different wavelength than the downlink optical signals from a second one of the E/O converters;

    a wavelength division multiplexer configured to combine a plurality of downlink optical signals with different wavelengths from the E/O converters into a combined downlink optical signal with multiple wavelengths, and to split a combined uplink optical signal with multiple wavelengths into a plurality of uplink optical signals with different wavelengths and transmit the uplink optical signals with different wavelengths to a plurality of optical paths according to the different wavelengths;

    an optical splitter configured to split the combined downlink optical signal into a plurality of downlink optical signals each having multiple wavelengths to the remote units via a corresponding optical cable for each remote unit, and to combine a plurality of uplink optical signals each having multiple wavelengths from the remote units into the combined uplink optical signal with multiple wavelengths; and

    a plurality of O/E converters each configured to convert uplink optical signals from the wavelength division multiplexer via a corresponding one of the optical paths into an uplink RF signal, wherein the uplink optical signals received by a first one of the O/E converters has a different wavelength than the uplink optical signals received by a second one of the O/E converters; and

    wherein at least one of the remote units comprises a plurality of O/E converters, at least one remote RF unit, a plurality of E/O converters, and a sector selector configured to connect the at least one remote RF unit to at least two of the O/E converters of the remote unit and at least two of the E/O converters of the remote unit, wherein the sector selector is configured to dynamically select a downlink RF signal from a corresponding one of the O/E converters of the remote unit and to transmit an adiusted uplink RF signal from the remote RF unit to a corresponding one of the E/O converters of the remote unit.

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