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Supporting an add-on remote unit (RU) in an optical fiber-based distributed antenna system (DAS) over an existing optical fiber communications medium using radio frequency (RF) multiplexing

  • US 10,291,322 B2
  • Filed: 02/20/2017
  • Issued: 05/14/2019
  • Est. Priority Date: 08/25/2014
  • Status: Active Grant
First Claim
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1. A remote unit (RU) system in an optical fiber-based distributed antenna system (DAS), comprising:

  • an existing RU comprising an existing RU downlink communications signal path configured to convert at least one existing downlink optical radio frequency (RF) communications signal received from at least one existing RU downlink optical signal interface into at least one existing downlink electrical RF communications signal;

    an add-on RU comprising an add-on RU downlink communications signal path configured to convert at least one add-on downlink optical RF communications signal received from at least one add-on RU downlink optical signal interface into at least one add-on downlink electrical RF communications signal different from the at least one existing downlink electrical RF communications signal; and

    a RU frontend interface comprising;

    a first optical-to-electrical (O/E) converter coupled to a downlink optical fiber;

    an RF de-multiplexer coupled to the first O/E converter;

    a first electrical-to-optical (E/O) converter coupled to the RF de-multiplexer and at least one existing RU;

    a second O/E converter coupled to the at least one existing RU;

    a third O/E converter coupled to at least one add-on RU;

    an RF multiplexer coupled to the second O/E converter and the third O/E converter;

    a second E/O converter coupled to an uplink optical fiber and the RF multiplexer; and

    a third E/O converter coupled to the RF de-multiplexer and the at least one add-on RU;

    wherein the RU frontend interface is configured to;

    receive a downlink multiplexed optical signal over the downlink optical fiber;

    convert the downlink multiplexed optical signal into a downlink multiplexed RF signal;

    de-multiplex the downlink multiplexed RF signal and generate the at least one existing downlink electrical RF communications signal and the at least one add-on downlink electrical RF communications signal;

    convert the at least one existing downlink electrical RF communications signal into the at least one existing downlink optical RF communications signal;

    convert the at least one add-on downlink electrical RF communications signal into the at least one add-on downlink optical RF communications signal;

    provide the at least one existing downlink optical RF communications signal to the existing RU downlink communications signal path via the at least one existing RU downlink optical signal interface; and

    provide the at least one add-on downlink optical RF communications signal to the add-on RU downlink communications signal path via the at least one add-on RU downlink optical signal interface.

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