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    • 1. 发明申请
    • RESOURCE BLOCK BASED MULTICARRIER MODULATIONS FOR AGILE SPECTRUM
    • 用于AGILE SPECTRUM的资源块基于MULTICARRIER调制
    • US20150304146A1
    • 2015-10-22
    • US14648160
    • 2013-11-27
    • INTERDIGITAL PATENT HOLDINGS, INC.
    • Rui YangLeonid L. KazakevichJialing LiErdem BalaKenneth KearneyI-Tai LuJuan FangZihao You
    • H04L27/26H04W72/04
    • H04L27/2627H04L5/0066H04L27/0008H04L27/2631H04L27/264H04W72/04
    • A resource block (RB)-based multicarrier modulation (MCM) transmitter and receiver structure for spectral agile systems are disclosed. The transmitter and the receiver are capable of sharing opportunistically available and non-contiguous channels with other users. The RB-MCM partitions the available spectrum, contiguous or non-contiguous, into multiple RBs (same or different sizes), applies a baseband MCM or single carrier modulation, or coded single carrier or multicarrier schemes in each RB with a type of spectral leakage reduction technique, and applies RB modulation for each RB to modulate the signal from baseband to the frequency band of that RB. At the receiver, the received signal may be filtered and RB demodulation may be applied to put each RB signal in baseband and a baseband multicarrier or single carrier or coded single carrier or coded multicarrier demodulation may be applied to each RB signal. Different RBs may use different modulation schemes.
    • 公开了一种用于频谱敏捷系统的基于资源块(RB)的多载波调制(MCM)发射机和接收机结构。 发射机和接收机能够与其他用户共享机会性可用和不连续的信道。 RB-MCM将可用频谱(连续或不连续)划分成多个RB(相同或不同的大小),在每个RB中应用基带MCM或单载波调制或编码单载波或多载波方案,具有频谱泄漏的类型 并且对每个RB应用RB调制以调制从基带到该RB的频带的信号。 在接收机处,可以对接收到的信号进行滤波,并且可以应用RB解调来将每个RB信号置于基带中,并且可以对每个RB信号应用基带多载波或单载波或编码单载波或编码多载波解调。 不同的RB可以使用不同的调制方案。
    • 2. 发明申请
    • FULL DUPLEX SINGLE CHANNEL COMMUNICATIONS
    • 全双工单通道通信
    • US20150229461A1
    • 2015-08-13
    • US14424740
    • 2013-08-27
    • InterDigital Patent Holdings, Inc.
    • Robert A. DiFazioPhilip J. PietraskiRui YangErdem BalaJialing Li
    • H04L5/14
    • Embodiments contemplate TDD systems and techniques where timeslots may be allocated as DL, UL, or FDSC; the base station (BS) may be full duplex singled channel (FDSC) capable; and some, all, or none of the UEs (or WTRUs) may be FDSC capable. In one or more embodiments, FDSC1 timeslots may be contemplated that may be used (in some embodiments perhaps exclusively used) by a pair of radios, for example one BS and one UE, both having FD capability. In one or more embodiments, FDSC timeslots may be shared among a BS with FDSC capability and two or more UEs, that may be half duplex (HD). Embodiments also contemplate various FDD systems and techniques, including full duplex FDD systems and techniques.
    • 实施例考虑了TDD系统和技术,其中时隙可以被分配为DL,UL或FDSC; 基站(BS)可以是全双工单通道(FDSC)能力; 并且一些,全部或者没有一个UE(或者WTRU)可以是FDSC能力的。 在一个或多个实施例中,可以预期可以由具有FD能力的一对无线电(例如一个BS和一个UE)使用(在一些实施例中可能是专门使用)的FDSC1时隙。 在一个或多个实施例中,FDSC时隙可以在具有FDSC能力的BS和可以是半双工(HD)的两个或更多个UE之间共享。 实施例还考虑了各种FDD系统和技术,包括全双工FDD系统和技术。
    • 5. 发明申请
    • METHODS AND APPARATUS FOR FASTER THAN NYQUIST RATE MULTI-CARRIER MODULATION
    • 方法和装置比NYQUIS RATE MULTI-CARRIER调制更快
    • US20160191218A1
    • 2016-06-30
    • US14912337
    • 2014-08-15
    • INTERDIGITAL PATENT HOLDINGS INC.
    • Erdem BalaRui YangJialing Li
    • H04L5/00H04L27/26H04J11/00
    • H04L5/0007H04J11/0023H04L5/0044H04L5/0062H04L27/264H04L27/2644
    • The disclosure pertains to methods and apparatus for Faster than Nyquist (FTN) modulation schemes to increase throughput in multicarrier communication systems and wherein the latency problem inherent in filter bank multicarrier systems (FBMC) is reduced or eliminated by using non-orthogonal waveforms (i.e., faster than Nyquist modulation) in only part(s) of the subframe or packet and orthogonal waveforms in other part(s). The number and spacing between FTN pulses may be selected such that the last sample of the last pulse is received within the time slot allocated to the subframe/packet, thereby eliminating added latency. The FTN modulation scheme may be employed both temporally and in frequency (e.g., the frequency spacing of the channels may be tighter than the Nyquist frequency spacing condition. FTN signaling also may be used as a method to control/coordinate interference between different nodes. For instance, if a node uses FTN, more pulses may be packed into a given period in the time domain and/or more channels may be packed into a given bandwidth in the frequency domain, hence some parts of the band may be vacated for use by others, use by the same node for additional channels, or used with reduced power. The interference control/coordination may be extended to time and frequency. Such FTN schemes may be used with different types of multicarrier systems.
    • 本公开涉及用于提高多载波通信系统中的吞吐量的用于比奈奎斯特(FTN)调制方案更快的方法和装置,并且其中通过使用非正交波形来减少或消除滤波器组多载波系统(FBMC)中固有的等待时间问题(即, 比奈奎斯特调制更快)仅在子帧或分组的一部分中,其他部分的正交波形。 可以选择FTN脉冲之间的数量和间隔,使得在分配给子帧/分组的时隙内接收最后一个脉冲的最后一个样本,从而消除增加的等待时间。 FTN调制方案可以在时间上和频率上使用(例如,信道的频率间隔可以比奈奎斯特频率间隔条件更紧,FTN信令也可以用作控制/协调不同节点之间的干扰的方法。 例如,如果节点使用FTN,则可以在时域中将更多的脉冲打包到给定的时间段内,和/或可以将更多的信道压缩到频域中的给定带宽中,因此频带的某些部分可以腾出以供 其他的,由相同节点用于附加信道,或者以降低的功率使用,干扰控制/协调可以扩展到时间和频率,这样的FTN方案可以与不同类型的多载波系统一起使用。