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    • 41. 发明授权
    • Asymmetrical receivers for wireless communication
    • 用于无线通信的不对称接收机
    • US08879602B2
    • 2014-11-04
    • US12508711
    • 2009-07-24
    • Arthur Richard Brisebois
    • Arthur Richard Brisebois
    • H04B1/00H04B7/06H04B7/08
    • H04W72/0486H04B1/006H04B1/1036H04B1/7097H04B7/0413H04B7/0626H04B7/0871H04B2201/709709H04L5/0048H04L5/006H04W16/14H04W72/005
    • System(s) and method(s) are provided to configure receivers in a mobile device to mitigate receiver overload and fully or nearly-fully utilize available spectrum for communication. Configuration is dictated at least in part by at least one of radio link quality or available receiver specifications, and it can be effected by the mobile device or a base station that serves the mobile device. Receiver configuration includes various spectrally asymmetric receivers that tune respective disparate portions of the available spectrum to maximize utilization thereof in the spectral regions prone to overload conditions. In severe overload conditions, a single receiver can be configured to operate in a frequency band spectrally adjacent to a sub-band that leads to overload conditions when employed for telecommunication. To improve performance, the single receiver configuration can be supplemented with at least one of transmit diversity operation, asymmetric multicarrier spreading, or downlink power boost of asymmetrical multicarrier spreading.
    • 提供系统和方法来配置移动设备中的接收机以减轻接收机过载并且完全或几乎完全利用可用频谱进行通信。 至少部分地由至少一个无线链路质量或可用的接收机规范来规定配置,并且可以由移动设备或为移动设备服务的基站来实现。 接收机配置包括各种频谱不对称的接收机,其调谐可用频谱的各个不同部分以最大化其在易于过载条件的频谱区域中的利用。 在严重的过载条件下,单个接收机可被配置成在频谱上与频带相邻的频带工作,该子带在用于电信时导致​​过载状况。 为了提高性能,可以用发射分集操作,非对称多载波扩展或不对称多载波扩展的下行链路功率增强中的至少一个来补充单个接收机配置。
    • 43. 发明授权
    • Scanning of wireless environment in a femto-based home macro sector
    • 在基于毫微微的家庭宏部门中扫描无线环境
    • US08487516B2
    • 2013-07-16
    • US12337247
    • 2008-12-17
    • Arthur Richard BriseboisGiuseppe De Rosa
    • Arthur Richard BriseboisGiuseppe De Rosa
    • H04B7/00
    • H04W48/16H04W8/22H04W16/32H04W24/10H04W36/08H04W48/02H04W48/08H04W48/20H04W84/045H04W88/18
    • System(s) and method(s) are provided to trigger inter-carrier scanning in a mobile device based at least in part on location thereof. Femto access point (AP) that can serve the mobile device can determine location through cell or sector identifier that is extracted via scan(s) of macro wireless environment of the femto AP. Femto AP can rank extracted sector identifier(s) and establish home macro sector (HMS) identifier(s), and also can generate scanning requirements for idle-mode scan(s) by a mobile device that operates in a HMS and is authorized to access wireless coverage through the femto AP. Scanning requirement(s) can force periodic inter-carrier measurements of a HMS wireless environment, and establish HMS-specific radio link quality threshold(s). Wireless network can receive at least one of HMS identifier(s) and scanning requirement(s) and deliver same to mobile device(s) authorized to exploit wireless coverage through femto AP associated with the HMS ID(s) and the scanning requirement(s).
    • 提供系统和方法以至少部分地基于其位置来触发移动设备中的载波间扫描。 可以服务于移动设备的毫微微接入点(AP)可以通过经由毫微微AP的宏无线环境的扫描提取的小区或扇区标识符来确定位置。 Femto AP可以对提取的扇区标识符进行排序并建立归属宏扇区(HMS)标识符,并且还可以由在HMS中操作的移动设备产生对空闲模式扫描的扫描要求,并被授权 通过毫微微AP接入无线覆盖。 扫描要求可以强制HMS无线环境的周期性载波间测量,并建立HMS特定的无线链路质量阈值。 无线网络可以接收HMS标识符和扫描需求中的至少一个,并将其传送给被授权利用与HMS ID相关联的毫微微AP和扫描要求(s)的无线覆盖的移动设备 )。
    • 46. 发明申请
    • User Interface Control with Edge Finger and Motion Sensing
    • 用户界面控制与边缘手指和运动感应
    • US20110087963A1
    • 2011-04-14
    • US12576419
    • 2009-10-09
    • Arthur Richard BriseboisRobert S. Klein
    • Arthur Richard BriseboisRobert S. Klein
    • G06F3/041
    • G06F3/0485G06F3/03547
    • Devices and methods are disclosed which relate to controlling the interface of a communications device using edge sensors that detect finger placement and movements. The invention combines edge sensors and outputs with left/right hand detection and an associated soft key adaptation. This combination allows a user to make handset inputs, such as display control functions, on the interface using finger placement combinations and motions. The approach may be applied to communications devices such as cellular telephones, PDAs, Tablet PCs, etc. as well as other handheld devices including, but not limited to, those used for GPS, package tracking and musical instruments. The combination user interface approach may be applied to any soft keys, on either side or edge of the device, for any function.
    • 公开了涉及使用检测手指放置和移动的边缘传感器来控制通信设备的接口的设备和方法。 本发明将边缘传感器和输出与左/右手检测和相关联的软键适配相结合。 该组合允许用户使用手指放置组合和运动在接口上进行手机输入,例如显示控制功能。 该方法可以应用于诸如蜂窝电话,PDA,平板电脑等通信设备以及其它手持设备,包括但不限于用于GPS,包裹跟踪和乐器的手持设备。 组合用户界面方法可以应用于设备的任一侧或边缘上的任何软键,用于任何功能。
    • 48. 发明申请
    • ENTERPRISE FEMTO BASED KIOSK
    • 基于企业基础的KIOSK
    • US20100318417A1
    • 2010-12-16
    • US12485209
    • 2009-06-16
    • Arthur Richard BriseboisRobert Klein
    • Arthur Richard BriseboisRobert Klein
    • G06Q30/00H04W84/10G06F17/30G06Q50/00
    • H04W4/00G06Q20/202G06Q30/02G06Q30/0237G06Q30/0255G06Q30/04H04W84/045
    • Methods and apparatus for employing femto technology in an enterprise kiosk are presented herein. A content component can receive multimedia content from a base station coupled to a core network. Further, a transfer component can wirelessly transfer the received multimedia content to a mobile device utilizing a femto based wireless protocol based on, at least in part, a sale of the received multimedia content. A database component can store the received multimedia content in a data store, and the transfer component can wirelessly transfer the stored multimedia content to the mobile device utilizing the femto based wireless protocol. The transfer component can alternatively record the received multimedia content in a removable data storage device.
    • 本文给出了在企业信息站中使用毫微微技术的方法和装置。 内容组件可以从耦合到核心网络的基站接收多媒体内容。 此外,转移组件可以至少部分地基于所接收的多媒体内容的销售,使用基于毫微微的无线协议将接收到的多媒体内容无线地传送到移动设备。 数据库组件可以将所接收的多媒体内容存储在数据存储器中,并且传输组件可以使用基于毫微微的无线协议将存储的多媒体内容无线地传送到移动设备。 传输组件可以备选地将接收到的多媒体内容记录在可移动数据存储设备中。
    • 50. 发明申请
    • ACCESS CONTROL FOR MACROCELL TO FEMTOCELL HANDOVER
    • MACROCELL到FEMTOCELL切换的访问控制
    • US20100278141A1
    • 2010-11-04
    • US12434211
    • 2009-05-01
    • Yung Shirley Choi-GroganArthur Richard BriseboisKurt Donald Huber
    • Yung Shirley Choi-GroganArthur Richard BriseboisKurt Donald Huber
    • H04W36/00
    • H04W36/0083H04J13/0062H04W4/90H04W36/04H04W36/30H04W36/32
    • System(s) and method(s) are provided to control access to a femtocell as part of handover of a mobile device from macrocell to femtocell. Macro network platform issues a handover (HO) request towards femto network platform and a single virtual femto node, which represents a plurality of femto access points (APs). Location estimate(s) for the mobile device drives selection of a target femto AP. Selection of the target AP results in acceptance of the HO request. The mobile device also can request macro-to-femto (MTF) handover. HO neighbor list(s) is generated by decoding a network-issued identifier for each femto APs in a set of femtocells, and selectively ranking each femto AP based at least on channel quality; access privileges of the mobile device to each of the identified femto APs determines selectivity. Validation of mobile device's access right(s) drives acceptance of the MTF HO request to a top ranked femto AP.
    • 提供系统和方法以控制对作为移动设备从宏小区切换到毫微微小区的一部分的毫微微小区的接入。 宏网络平台向毫微微网络平台和表示多个毫微微接入点(AP)的单个虚拟毫微微节点发出切换(HO)请求。 移动设备的位置估计驱动目标毫微微AP的选择。 目标AP的选择导致HO请求的接受。 移动设备还可以请求宏到毫微微(MTF)切换。 通过对一组毫微微小区中的每个毫微微AP解码网络发布的标识符来生成HO邻居列表,并且至少基于信道质量选择性地对每个毫微微AP进行排序; 每个识别的毫微微AP的移动设备的访问权限确定选择性。 验证移动设备的访问权限将MTF HO请求的接受驱动到顶级的毫微微AP。