One-Way Ramp to a Two-Way Highway: Integrated Magnetic-Free Nonreciprocal Antenna Interfaces for Full-Duplex Wireless

One-Way Ramp to a Two-Way Highway: Integrated Magnetic-Free Nonreciprocal Antenna Interfaces for Full-Duplex Wireless
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从单向坡道到双向高速公路:用于全双工无线的集成无磁非互易天线接口

DOI:
10.1109/mmm.2018.2880497
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发表时间:
2019
影响因子:
3.6
通讯作者:
Krishnaswamy, Harish
Krishnaswamy, Harish
中科院分区:
计算机科学3区
文献类型:
--
作者:
Reiskarimian, Negar;Dinc, Tolga;Zhou, Jin;Chen, Tingjun;Dastjerdi, Mahmood Baraani;Diakonikolas, Jelena;Zussman, Gil;Krishnaswamy, Harish

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自从无线电发明以来,传输和接收已经分开,以保护接收器 (Rx) 免受自干扰 (SI)(即来自同一位置的无线电发射器 (Tx) 的干扰)的干扰。这种分离称为双工。当今的无线系统仍然依靠双工来避免 SI——许多短程或局域无线电(例如蓝牙和 WiFi 收发器)在不重叠的时隙中发送和接收,称为时分双工 (TDD),而其他现代无线系统(例如当今的大多数蜂窝系统)使用频分双工 (FDD) 来分离频域中的发送和接收。 TDD 和 FDD 都是半双工,导致单个用户的发送和接收信号在频率或时间上分离。
Since the invention of the radio, transmission and reception have been separated to protect the receiver (Rx) from being jammed by self-interference (SI), i.e., the interference that comes from the colocated radio transmitter (Tx). This separation is called duplexing. Today's wireless systems still rely on duplexing to avoid SI-many short-range or local area radios, such as Bluetooth and WiFi transceivers, transmit and receive in nonoverlapping time slots, called time-division duplexing (TDD), while other modern wireless systems, such as the majority of today's cellular systems, use frequency-division duplexing (FDD) to separate the transmission and reception in the frequency domain. Both TDD and FDD are half duplex, where the separation of the transmitted and received signals of a single user in either frequency or time causes.
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