An adaptive time division duplexing (ATDD) method and apparatus for duplexing transmissions on a communication link in wireless communication systems.
The preferred duplex mode of operation in the 3400-3600 MHz sub-band shall be Time Division Duplex (TDD).
The system is specifically adapted to time division duplex (TDD) transmission over fast fading channel.
A method for uplink space transmission based on a time division duplex (TDD) system is provided.
For full duplex transmission, time division duplex (TDD) is used.
Disclosed are a method for controlling uplink transmission power by a terminal that adopts a time division duplex (TDD) scheme in a wireless communication system, and a terminal device thereof.
The duplex mode of operation in the 3600-3800 MHz sub-band shall be Time Division Duplex.
A front end circuit for coupling a plurality of antennas to a multi-channel time domain duplex RF transceiver is disclosed.
For each satellite and each terminal, transmission and reception are temporally separated and synchronized, and time duplexing is used.
Each transceiver transmits the telephone signals using time division duplex to simulate a duplex telephone conversation on a single radio frequency channel.
In another embodiment PIM interference is eliminated by time duplexing the signals transmitted and received by a satellite's antenna.
Requêtes fréquentes français :1-200, -1k, -2k, -3k, -4k, -5k, -7k, -10k, -20k, -40k, -100k, -200k, -500k, -1000k,
Requêtes fréquentes anglais :1-200, -1k, -2k, -3k, -4k, -5k, -7k, -10k, -20k, -40k, -100k, -200k, -500k, -1000k,
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