EP0346925A2

Private branch radio communication system using optical fibers.

Abstract

A private branch radio communication system includes a portable radio transmitter (1) and a portable radio receiver (4). The system further includes first and second repeaters (2, 3) respectively located in first and second areas (P1, P2) within a given premises and coupled to each other through an optical fiber cable (5). A radio signal output from the portable radio transmitter (1) is converted into an optical signal by the first repeater (2), and is then supplied to the second repeater (3) through the optical fiber cable (5), and converted into a radio signal which is received by the portable radio receiver (4).

EP0346925A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 16 June 2009, 17.3 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

16 claims: 3 independent, 13 dependent

  1. 1
    A private branch radio communication system characterized by comprising:a portable radio transmitter (1) for modulating a signal and outputting the modulated signal as a radio signal in a first area within a given premises;a first repeater means (2), located in the first area, for receiving the radio signal transmitted from said radio transmitter (1) and outputting an optical signal corresponding to the signal received;an optical transmission medium (5) for transmitting the optical signal output from said first repeater to a second area within said premises;a second repeater means (3), located in the second area, for receiving the optical signal output from said first repeater means (2) and transmitted by said optical transmission medium, and generating a radio signal corresponding to the signal received in the second area;and a portable radio receiver (4) for receiving the radio signal output from said second repeater (3) in the second area and demodulating the signal received.
  2. 7
    A private branch radio communication system characterized by comprising:a first portable radio transceiver (21) for modu­lating a signal and generating the modulated signal as a radio signal in a first area within a given premises, and for receiving the radio signal generated in the first area and demodulating the signal received;a second portable radio transceiver (24), for modu­lating a signal and generating the modulated signal as a radio signal in a second area within said premises, and for receiving the radio signal generated in the second area and demodulating the signal received;an optical transmission medium (5A, 5B) for coupling the first and second areas to each other;a first two-way repeater means (22), arranged in the first area, for receiving the radio signal output from said radio transceiver (21) and supplying an opti­cal signal corresponding to the signal received to said optical transmission medium (5A, 5B) and for receiving an optical signal transmitted through said optical transmission medium (5A, 5B) and generating a radio signal corresponding to the signal received in the first area;and a second two-way repeater means (23), arranged in the second area, for receiving the optical signal output from said first repeater means (22) and transmitted through said optical transmission medium (5A, 5B), and generating a radio signal corresponding to the signal received in the second area and for receiving the radio signal output from said radio transceiver (24) and supplying an optical signal corresponding to the signal received to said optical transmission medium (5A, 5B).
  3. 15
    A private branch radio communicating system characterized by comprising:a plurality of portable radio transceivers (Ka1 - Ke1);a plurality of two-way repeater means (Ra - Re), distributed throughout a plurality of areas (P11 - P15) within a given premises, for receiving radio signals generated in the respective areas where the repeater means are distributed and supplying optical signals cor­responding to the signals received to a first optical transmission medium (30a - 30e), and for receiving opti­cal signals input through a second optical transmission medium (31a - 31e) and generating radio signals corre­sponding to the signals received in the respective areas;and optical signal multiplexing means (32) for multi­plexing the optical signals output from said plurality of two-way repeater means (Ra - Re) and supplied through said first optical transmission medium (30a - 30e), and supplying the multiplexed optical signal to said plu­rality of two-way repeater means (Ra - Re) through said second optical transmission medium (31a - 31e).