正交频分复用
衰退
电子工程
频道(广播)
块错误率
计算机科学
多输入多输出
时间分集
发射机
调制(音乐)
时频分析
分集方案
电信
工程类
电信线路
声学
物理
雷达
作者
Ronny Hadani,Shlomo Rakib,Michael Tsatsanis,A.M. Monk,Andrea Goldsmith,Andreas F. Molisch,Robert Calderbank
标识
DOI:10.1109/wcnc.2017.7925924
摘要
A new two-dimensional modulation technique called Orthogonal Time Frequency Space (OTFS) modulation designed in the delay-Doppler domain is introduced. Through this design, which exploits full diversity over time and frequency, OTFS coupled with equalization converts the fading, time-varying wireless channel experienced by modulated signals such as OFDM into a time-independent channel with a complex channel gain that is roughly constant for all symbols. Thus, transmitter adaptation is not needed. This extraction of the full channel diversity allows OTFS to greatly simplify system operation and significantly improves performance, particular in systems with high Doppler, short packets, and large antenna arrays. Simulation results indicate at least several dB of block error rate performance improvement for OTFS over OFDM in all of these settings. In addition these results show that even at very high Dopplers (500 Km/h), OTFS approaches channel capacity through linear scaling of throughput with the MIMO order, whereas the performance of OFDM under typical design parameters breaks down completely.
科研通智能强力驱动
Strongly Powered by AbleSci AI