In a passive optical telecommunication system wherein a plurality of
decentralized stations are respectively connected via their own respective
light waveguide subscriber line to an optical brancher that is connected,
in turn, directly or via at least one further optical brancher to a common
light waveguide terminal of the center station via a light waveguide bus,
the decentralized station and the centralized station each transmitting
and receiving optical digital signals in common-frequency operation, a
transmission/reception circuit at each decentralized station is provided
to avoid a degradation of the reception sensitivity of the central station
corresponding to the bit pattern of its transmitted signal. This
transmission/reception circuit includes a reception signal inverter
connected between the output of the opto-electrical transducer and the
input of the electro-optical transducer, and an optical delay line whose
delay time is matched to the operating time of the electrical reception
signal invertor is inserted between the output of the electro-optical
transducer and the light waveguide subscriber line. The
transmission/reception circuit maintains the sum of the inverted reception
signal component, and the part of the received signal, which is
unavoidably reflected, at a constant level.
Other References
Patent Abstracts of Japan, vol. 8, No. 8 (E-221) [1445], Jan. 13, 1984
(Application 57-55056).
Patent Abstracts of Japan, vol. 8, No. 4 (E-220) [1441], Jan. 19, 1984
(Application 57-54253).
Patent Abstracts of Japan, vol. 8, No. 250 (E-279) [1687], Nov. 16, 1984
(Application 58-2257).
Patent Abstracts of Japan, Application No. 58-14078, Aug. 1984.
"Passive Fibre Local Loop for Telephony with Broadband Upgrade," Oakley et
al., ISSLS-88 Conference Papers, pp. 9.4.1-9.4.5.
"The Provision of Telephony Over Passive Optical Networks," Hoppitt et al.,
British Telecom Technological Journal, vol. 17, No. 2, (1989) pp. 100-113.
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