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    • 84. 发明授权
    • Apparatus, method, and computer program product providing improved uplink pilot transmission schemes
    • 提供改进的上行链路导频传输方案的装置,方法和计算机程序产品
    • US07860150B2
    • 2010-12-28
    • US11789731
    • 2007-04-24
    • Esa TiirolaKari Pajukoski
    • Esa TiirolaKari Pajukoski
    • H04B1/00
    • H04B1/7143H04B2001/7154H04J13/00
    • In one non-limiting aspect thereof, the exemplary embodiments of this invention provide a user equipment that includes a data processor; and a wireless transceiver configured to transmit uplink pilot signals during sub-bands and slots, wherein at least three blocks (LB1, LB2 and LB3) are reserved for pilot signals. LB1 and LB2 include in-band pilot signals transmitted using a dedicated pilot code. The wireless transceiver is further configured to transmit LB3 using a frequency hopping pattern and pilot code allocation that are based on a slot and a sub-band in which a first LB3 is transmitted. Thus, the code and hopping pattern of a scheduled user equipment are resource-specific (defined by an allocated resource), as opposed to being user equipment-specific.
    • 在其一个非限制性方面,本发明的示例性实施例提供了一种包括数据处理器的用户设备; 以及无线收发器,被配置为在子频带和时隙期间发送上行导频信号,其中至少三个块(LB1,LB2和LB3)被保留用于导频信号。 LB1和LB2包括使用专用导频码发送的带内导频信号。 无线收发器还被配置为使用基于发射第一LB3的时隙和子带的跳频模式和导频码分配来发送LB3。 因此,调度的用户设备的代码和跳频模式是资源特定的(由分配的资源定义的),而不是用户设备特定的。
    • 86. 发明申请
    • FREQUENCY HOPPING IN A WIRELESS COMMUNICATION NETWORK
    • 在无线通信网络中频繁使用
    • US20100189032A1
    • 2010-07-29
    • US12621945
    • 2009-11-19
    • Wanshi ChenPeter GaalJuan MontojoMasato KitazoeSaiyiu Duncan HoNathan E. Tenny
    • Wanshi ChenPeter GaalJuan MontojoMasato KitazoeSaiyiu Duncan HoNathan E. Tenny
    • H04B1/713H04W4/00
    • H04B1/7143
    • Techniques for performing frequency hopping in a wireless network are described. In an aspect, frequency hopping may be performed based on both cell identity (ID) and system time information. In one design, a user equipment (UE) may determine a cell ID of a cell and may obtain system time information for the cell. The UE may determine resources to use for transmission with frequency hopping based on the cell ID and the system time information. In one design, the UE may initialize a PN generator in each radio frame with an initial value determined based on the cell ID and a system frame number (SFN) for the radio frame. The UE may determine the resources to use for transmission based on a hopping function, a mirroring function, and a PN sequence from the PN generator. The UE may send a transmission on the resources to the cell.
    • 描述用于在无线网络中执行跳频的技术。 在一个方面,可以基于小区标识(ID)和系统时间信息来执行跳频。 在一种设计中,用户设备(UE)可以确定小区的小区ID,并且可以获得小区的系统时间信息。 UE可以基于小区ID和系统时间信息来确定用于使用跳频进行传输的资源。 在一种设计中,UE可以利用基于小区ID确定的初始值和无线电帧的系统帧号(SFN)来初始化每个无线电帧中的PN发生器。 基于来自PN发生器的跳频功能,镜像功能和PN序列,UE可以确定用于传输的资源。 UE可以向资源发送资源上的传输。
    • 88. 发明申请
    • METHOD FOR DETERMINING AND CHANGING RF CHANNEL AND RF TRANSCEIVING SYSTEM USING THE SAME
    • 使用该方法确定和更改RF信道和RF收发系统的方法
    • US20100111144A1
    • 2010-05-06
    • US12388268
    • 2009-02-18
    • Chih-Kai CHIU
    • Chih-Kai CHIU
    • H04B1/02H04B7/00H04B1/38
    • H04B1/7143H04W72/02
    • A method for determining and changing RF channels is provided in the present invention, wherein the RF channel is changed randomly and automatically according the communication status so that the communication status between a transmitting end and a receiving end is capable of being maintained to ensure data transmission. In another embodiment, the present invention further provides an RF transceiving system, in which a channel for communication between two wireless transmission modules is constructed automatically and randomly to prevent the communication channel from being duplicated so that channel collision is avoided. In addition, the present invention also provides frequency-hopping to prevent data from being lost and special coding to prevent data from reception error so as to ensure that the data in transceiving process will not be stopping, erroneous, or lost during the user operation.
    • 在本发明中提供了一种用于确定和改变RF信道的方法,其中RF信道根据通信状态随机和自动地改变,使得发送端与接收端之间的通信状态能够被保持以确保数据传输 。 在另一个实施例中,本发明还提供了一种射频收发系统,其中用于两个无线传输模块间通信的信道被自动地和随机地构成,以防止通信信道被复制,从而避免信道冲突。 此外,本发明还提供跳频以防止数据丢失和特殊编码以防止数据接收错误,从而确保收发过程中的数据在用户操作期间不会停止,错误或丢失。
    • 90. 发明申请
    • Reliable Wireless Communication System Using Adaptive Frequency Hopping
    • 使用自适应跳频的可靠无线通信系统
    • US20100046583A1
    • 2010-02-25
    • US12338372
    • 2008-12-18
    • Hoi-Sheung Wilson SoRaghuveer ChereddyRaymond Rui-Feng Liao
    • Hoi-Sheung Wilson SoRaghuveer ChereddyRaymond Rui-Feng Liao
    • H04B1/713
    • H04B1/715H04B1/7143H04L1/0001
    • A method and system, the method including determining a frequency quality measurement value for each of a plurality of frequencies a network coordinator can use in a frequency hopping sequence for communicating with a client, classifying each of the plurality of communication frequencies into one of a plurality of different categories based on a relative ranking of the determined frequency quality measurement value of each of the plurality of frequencies, generating, by the network coordinator, a frequency hopping sequence to be used for communication between the network coordinator and the client, the generated hopping sequence including only select frequencies from the plurality of frequencies in a predetermined number of future time slots that minimize a probability of a predetermined number of consecutive frequency hop failures in the predetermined number of future time slots, and notifying the client of the generated frequency hopping sequence to be used for communication.
    • 一种方法和系统,所述方法包括确定网络协调器可以在跳频序列中用于与客户端通信的多个频率中的每一个的频率质量测量值,以将多个通信频率中的每一个分类为多个 基于所确定的多个频率中的每一个的频率质量测量值的相对等级,由网络协调器生成要用于网络协调器和客户端之间的通信的跳频序列,生成的跳频 序列仅包括在预定数量的未来时隙中的来自多个频率的选择频率,其使预定数量的未来时隙中的预定数量的连续频率跳跃的概率最小化,并且向客户端通知所生成的跳频序列 用于沟通。