CN105594138A - 远程分布式天线系统 - Google Patents
远程分布式天线系统 Download PDFInfo
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/04—Wireless resource allocation
- H04W72/044—Wireless resource allocation based on the type of the allocated resource
- H04W72/0453—Resources in frequency domain, e.g. a carrier in FDMA
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/14—Relay systems
- H04B7/15—Active relay systems
- H04B7/155—Ground-based stations
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q1/00—Details of, or arrangements associated with, antennas
- H01Q1/12—Supports; Mounting means
- H01Q1/22—Supports; Mounting means by structural association with other equipment or articles
- H01Q1/24—Supports; Mounting means by structural association with other equipment or articles with receiving set
- H01Q1/241—Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM
- H01Q1/246—Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for base stations
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/14—Relay systems
- H04B7/15—Active relay systems
- H04B7/155—Ground-based stations
- H04B7/15528—Control of operation parameters of a relay station to exploit the physical medium
- H04B7/15542—Selecting at relay station its transmit and receive resources
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/24—Radio transmission systems, i.e. using radiation field for communication between two or more posts
- H04B7/26—Radio transmission systems, i.e. using radiation field for communication between two or more posts at least one of which is mobile
- H04B7/2612—Arrangements for wireless medium access control, e.g. by allocating physical layer transmission capacity
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/0001—Arrangements for dividing the transmission path
- H04L5/0003—Two-dimensional division
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/0001—Arrangements for dividing the transmission path
- H04L5/0014—Three-dimensional division
- H04L5/0023—Time-frequency-space
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/50—Network services
- H04L67/56—Provisioning of proxy services
- H04L67/561—Adding application-functional data or data for application control, e.g. adding metadata
Abstract
提供了将一个或多个微小区的输出频移到60GHz或更高频率范围以便传输到分布式天线集的分布式天线系统。这些微小区基站设备的蜂窝频带输出被用来调制60GHz(或更高)载波,从而在60GHz载波上产生一组子载波。然后,该组子载波将在空中经由模拟微波RF单元被发送,其后它可以被中继或辐射到周围区域。中继器放大信号并再次在空中朝下一个中继器重新发送该信号。在需要微小区的地方,60GHz信号被频移回其原始频率(例如,1.9GHz蜂窝频带)并且本地辐射到附近的移动设备。
Description
对相关申请的交叉引用
本主题申请要求于2013年5月31提交的标题为“REMOTEDISTRIBUTEDANTENNASYSTEM”的美国专利申请序列No.13/907,246的优先权,其全部内容通过引用并入本文。
技术领域
本主题公开内容涉及无线通信,例如,涉及利用诸如微波的限定频带内的信号提供远程分布式天线系统。
背景技术
随着智能电话和其它便携式设备日益变得普及,以及数据使用迅速上升,宏小区基站和现有的无线基础设施正不堪重负。为了提供附加的移动带宽,推出了小小区部署,其中微小区和微微小区提供为比传统宏小区小得多的区域提供覆盖,但费用高昂。
附图说明
图1是示出根据本文所描述的各方面的分布式天线系统的示例非限制实施例的框图。
图2是示出根据本文所描述的各方面的分布式天线系统的示例非限制实施例的框图。
图3是示出根据本文所描述的各方面的分布式天线发射器系统的示例非限制实施例的框图。
图4是示出根据本文所描述的各方面的分布式天线中继器系统的示例非限制实施例的框图。
图5是示出根据本文所描述的各方面的分布式天线发射器系统的示例非限制实施例的框图。
图6是示出根据本文所描述的各方面的分布式天线中继器系统的示例非限制实施例的框图。
图7是示出根据本文所描述的各方面的毫米频带天线装置的示例非限制实施例的框图。
图8示出了用于提供如本文所描述的分布式天线系统的方法的示例非限制实施例的流程图。
图9是根据本文所描述的各方面的计算环境的示例非限制实施例的框图。
图10是根据本文所描述的各方面的移动网络平台的示例非限制实施例的框图。
具体实施方式
现在参考附图描述一种或多种实施例,其中贯穿全文相似的附图标记被用来指相似的元件。在以下描述中,为了解释,阐述众多具体的细节,以便提供对各种实施例的透彻理解。但是,很显然,各种实施例可以在没有这些具体细节的情况下被实践(并且无需适用于任何特定的联网环境或标准)。
为了为增加数量的移动设备提供网络连接性,提供了允许一个或多个基站具有在广的区域上分布的天线的分布式天线系统。小小区部署可以被用来补充传统的宏蜂窝部署,并且需要遍布各处且高容量的网络来支持它们。
本文公开的各种实施例涉及在具有对应于毫米波频带的频率(例如,60GHz以及更高)的载波上携带一个或多个微小区(或微微小区(picocell)、毫微微小区(femtocell)以及其它类型的小小区部署)的输出信号的微波系统。但是,这里公开的各种实施例可以在几乎任何微波频率操作。一个或多个微小区基站设备的集群可以被安置在发射点,并为其附近的若干个微小区服务。这些微小区基站设备的RF(射频)输出可以被用来调制60GHz(或更高)载波,从而在60GHz载波上产生一组子载波。然后,这组子载波将经由特别设计的模拟微波RF单元在空中被发送,然后该组子载波可以被中继或辐射到周围区域。中继器放大信号并朝下一个中继器再次在空中重新发送。在需要微小区的地方,60GHz信号被频移回其原始频率(例如,1.9GHz的蜂窝频带)并在本地辐射到附近的移动设备。
由于60GHz载波从一个天线站点跳到下一个,因此各个子载波可以取决于该站点的流量需求而被添加或丢弃。要添加或丢弃的信道的选择可以随着流量负荷偏移而被动态控制。来自移动设备的返回信号可以被调制到60GHz范围内的另一频率,并且可以在相反的方向上被发送回原始发射点。在另一实施例中,可以使用时分双工,并且返回信号可以与原始信号处于相同的频率。因此,中继器基本上经由从一个电线杆(utilitypole)到另一个电线杆的无线电跳将微小区基站设备从发射点位置空间偏移到其它地方。发射器和中继器可以以这样一种方式经由模拟过程(调制载波)频移蜂窝信号,使得系统是可扩展和灵活的,从而允许附加的微小区和天线站点被添加,并且与通信协议无关。本文所公开的系统将适用于当前的蜂窝通信协议,也将适用于未来的部署。
出于这些考虑以及其它考虑,在一种或多种实施例中,一种系统包括存储指令的存储器和耦合到该存储器以便于执行指令以执行操作的处理器,包括便于从基站设备接收第一信号,其中第一信号被确定为在蜂窝频带内。该操作包括利用第一信号调制载波信号以及基于载波信号和第一信号生成传输。该操作还可以包括将传输无线地指向远程天线。
另一实施例包括存储指令的存储器和耦合到该存储器以便于执行指令以执行操作的处理器,该操作包括接收第一无线传输。该操作还可以包括从第一无线传输中提取信号,其中该信号处于蜂窝频带频率中。该操作还可以包括向移动设备发送该信号以及重新发送第一无线传输。
在另一实施例中,一种方法包括,由包括处理器的设备接收指向远程天线的限定的高频传输。该方法还可以包括从多个信号中识别被确定为与远程天线关联的信号,其中该多个信号利用该限定的高频传输被携带在多个信道内。然后,该方法可以包括提取该信号、发送指向移动设备的该信号,并且重新发送指向另一远程天线的该限定的高频传输。
现在转向图1,示出了根据本文所描述的各方面的分布式天线系统100的示例非限制实施例。系统100包括位于基站设备114处的一个或多个微小区基站(在图3和图5中更详细地示出),基站设备114经由到移动网络的物理连接(例如,有线或光学)被通信耦合到网络连接。在一些实施例中,基站设备114可以被通信耦合到宏小区站点或该站点的网络连接。宏小区可以具有到移动网络的专用连接,并且基站设备114可以共享宏小区站点的连接。基站设备114可以安装在灯杆102上或连接到灯杆102。在一些实施例中,基站设备114可以安装在电线杆或其它高起的结构上。在一些实施例中,基站设备114可以安装在地面上或接近地面。
基站设备114可以为移动设备120和122提供连接性。安装在灯杆(或电线杆或其它结构)102、104和106上的发射器108或中继器110和112上或与其邻近的天线116和118可以从基站设备114接收信号,并且与如果天线116和118位于基站设备114处或其附近相比,经宽得多的区域将那些信号发送到移动设备120和122。
应当认识到,为了简化,图1示出三个灯杆与一个基站设备。在其它实施例中,灯杆102可以具有更多的基站设备,并且具有分布式天线的一个或多个灯杆是可能的。在一些实施例中,可以有不带天线的发射器和/或中继器。天线可以通信耦合到需要微小区部署的区域内的发射器和/或中继器,或者可以隔开,以避免过多的重叠。
发射器108可以从基站设备114接收指向移动设备120和122的信号并调制60GHz载波,从而在60GHz载波上产生一组子载波。然后,发射器108可以将该载波发送到范围内的中继器,在这种情况下为中继器110。中继器110可以从该载波中提取指向移动设备120的信号,并经由天线116将该信号辐射到移动设备120。然后,中继器110可以将该载波重新发送到中继器112,在中继器112处中继器112提取指向移动设备122的信号并经由天线118辐射该信号。然后,中继器112可以将该载波传输重新发送到下一个中继器。中继器110和112还可以在重新发送之前利用低噪声放大器和功率放大器的组合放大该传输。
在各种实施例中,中继器110和112和/或天线116和118可以被分配给对应于载波中的预定带宽范围的信道。中继器110和112可以从载波中提取所分配的信号,其中该信号对应于与中继器和/或天线对应的信道和/或带宽。以这种方式,天线116和118为微小区区域辐射正确的信号。在其它实施例中,载波可以包括包含指示哪些子载波对应于天线116和118的元数据的控制信道,并且因此中继器110和112提取适当的信号。
由于60GHz载波从一个辐射器站点跳到另一个,因此各个子载波可以取决于该站点的流量需求而被添加或丢弃。要被添加或丢弃的信道的选择可以随着流量负荷偏移而被动态控制。
当移动设备120和/或122将信号发送回移动网络时,天线116和/或118接收那些信号,并且中继器110和/或112使用这些信号调制另一载波(例如,在模拟域中被偏移到60GHz),然后载波被发送回发射器108,在那里来自移动设备120/或122的信号被提取并输送到基站设备114。
现在转向图2,显示了示出根据本文所描述的各方面的分布式天线系统200的示例非限制实施例的框图。系统200包括在基站214处的一个或多个微小区基站设备(在图3和图5中更详细地示出),该基站214经由到移动网络的物理连接(例如,有线或光学的)被通信耦合到网络连接。在一些实施例中,基站214可以被通信耦合到宏小区站点或该站点的网络连接。宏小区可以具有到移动网络的专用连接,并且基站214可以共享宏小区站点的网络连接。基站214可以安装在灯杆202上或连接到灯杆202。在一些实施例中,基站214可以安装在电线杆或其它高起的结构上。在一些实施例中,基站214可以安装在地面上或接近地面。
图2绘出了与图1中所示不同的实施例。在图2中,不像在图1中,灯杆204和206之间的传输跳可以利用经由电力线(例如,表面波)或者作为引导的电磁波经由地下导管(例如,管道)来发送的载波来实现。在一些实施例中,传输220可以沿线或其它传统数据链路被发送。
无论是何种传输装置,功能都类似于图1,其中发射器208可以从基站214接收指向移动设备216和218的信号并调制60GHz载波,从而在60GHz载波上产生一组子载波。然后,发射器208可以将该载波发送到范围内的中继器,在这种情况下为中继器210。中继器210可以从该载波提取指向移动设备216的信号,并经由天线222将该信号辐射到移动设备216。然后,中继器210可以经由物理链路或者作为表面波经电力线将该载波重新发送到中继器212,其中中继器212提取指向移动设备218的信号并经由天线224辐射该信号。然后,中继器212可以向下一个中继器重新发送该载波传输。中继器210和212也可以在重新发送之前利用低噪声放大器和功率放大器的组合放大该传输。
现在转向图3,所示出的是根据本文所描述的各方面的分布式天线发射器系统300的示例非限制实施例的框图。图3更详细地示出了图1中描述的基站104和发射器106。基站302可以包括路由器304和微小区基站设备308(或微微小区、毫微微小区或其它小的小区部署)。基站302可以接收链接到现有基础设施的外部网络连接306。网络连接306可以是物理的(诸如光纤或电缆)或无线的(诸如高带宽微波连接)。网络连接306可以链接到的现有基础设施在一些实施例中可以是宏小区站点。对于那些具有高数据率网络连接的宏小区站点,基站302可以与宏小区站点共享网络连接。
路由器304可以为微小区基站设备308提供便于与移动设备通信的连接性。虽然图3示出基站302具有一个微小区基站设备,但是在其它实施例中,基站302可以包括两个或更多个微小区基站设备。微小区基站设备308的RF输出可以被用来调制60GHz信号并且经由光纤连接到户外单元(“ODU”)310。ODU310可以是能够接收和发送微波信号的各种微波天线当中的任何一种。在一些实施例中,ODU单元可以是如图7中所示的毫米波频带天线装置。
现在转向图4,显示了示出根据本文所描述的各方面的分布式天线中继器系统400的示例非限制实施例的框图。ODU402可以接收从中继器或发射器处的另一ODU发送的毫米波传输。该传输可以是具有多个子载波信号的载波。中继器406可以接收该传输,并且模拟抽头和调制器408可以从该多个子载波信号中提取信号并且经由天线410将该信号辐射到移动设备。模拟抽头和调制器408还可以放大由ODU402接收的传输并且经由ODU404将该载波重新发送到另一中继器或发射器。
天线410还可以从移动设备接收通信协议信号,并且模拟抽头和调制器408可以使用该信号来调制另一个载波,并且ODU402或404可以将该载波传输继续发送到基站设备。
参考图5,显示了示出根据本文所描述的各方面的分布式天线发射器系统500的示例非限制实施例的框图。系统500包括将信号发送到位于其各自小区中的移动设备并且从该移动设备接收信号的微小区基站设备504、506和508。应当认识到,系统500被示为具有3个微小区基站设备仅仅是为了示例。在其它实施例中,基站站点或集群可以包含一个或多个微小区基站设备。
微小区基站设备504、506和508的输出可以与由本地振荡器514分别在混频器522、520和518处生成的毫米波载波组合。混频器522、520和518可以使用外差技术频移来自微小区基站设备504、506和508的信号。这可以在模拟域中完成,并且因此,可以不考虑微小区基站设备504、506和508使用的通信协议的类型而完成该频移。随着时间的推移,当新的通信技术被开发出来时,微小区基站设备504、506和508可以被升级或替换,而频移和发送装置可以保留,从而简化了升级。
控制器510可以生成伴随载波的控制信号,并且GPS模块512可以同步控制信号的频率,使得可以确定确切的频率。GPS模块512还可以提供用于分布式天线系统的时间参考。
多路复用器/解多路复用器524可以根据来自控制器510的控制信号频分多路复用来自混频器518、520和522的信号。这些信号中的每一个可以在载波上被分配信道,并且控制信号可以提供指示对应于每个信道的微小区信号的信息。
ODU单元502还可以接收由中继器发送的传输,其中该传输的载波携带来自移动设备的指向微小区基站设备504、506和508的信号。多路复用器/解多路复用器524可以将子载波信号彼此分开并且基于信号的信道或者基于控制信号中的元数据将它们指向正确的微小区。然后,混频器518、520和522可以从载波提取该信号,并且将该信号指向对应的微小区。
现在转向图6,显示了示出根据本文所描述的各方面的分布式天线中继器系统600的示例非限制实施例的框图。中继器系统600包括从发射器和其它中继器接收和发送传输的ODU602和604。
在各种实施例中,ODU602可以从发射器接收具有多个子载波的传输。双工器606可以将该传输与ODU602正在发送的其它传输分开,并且将该传输指向低噪声放大器(“LNA”)608。在来自本地振荡器612的帮助下,混频器628可将传输(处于或高于60GHz)向下偏移至蜂窝频带(~1.9GHz)。提取器632可以在子载波上提取对应于天线622的信号,并且将该信号指向天线622。对于没有在该天线位置被辐射的信号,提取器632可以将它们重定向到另一个混频器636,在那里信号被用来调制由本地振荡器614生成的载波。载波及其子载波被指向功率放大器(“PA”)616并且经由双工器620被ODU604重新发送到另一个中继器。
在天线622处,PA624可以提升(boost)用于传输到移动设备的信号。LNA626可以被用来放大从移动设备接收到的微弱信号,并然后将该信号发送到多路复用器634,多路复用器634将该信号与已经从ODU604接收到的信号合并。从ODU604接收到的信号已经被双工器620分离,然后被传递通过LNA618,并且被混频器638进行频率下偏移。当信号被多路复用器634组合时,它们由混频器630进行频率上偏移,然后由PA610提升,并且由ODU602发送回发射器或另一中继器。
现在转向图7,显示了示出根据本文所描述的各方面的毫米频带天线装置700的示例非限制实施例的框图。无线电中继器704可以具有保护无线电天线706的塑料盖702。无线电中继器704可以被安装到具有安装臂710的电线杆、灯杆或其它结构708。无线电中继器还可以经由电源线712接收电力并且利用光纤或电缆714将信号输出到附近的微小区。
在一些实施例中,无线电中继器704可以包括16个天线。这些天线可以沿径向布置,并且每个天线可以具有大约24度的方位角波束宽度。因此在每个天线波束宽度之间可以有小的重叠。当发送或接收传输时,无线电中继器704可以基于诸如信号强度、信噪比等的信号测量自动选择最佳扇区天线以用于连接。由于无线电中继器704可以自动选择天线来使用,因此,在一种实施例中,不实现精确的天线对准,对于安装结构的扭曲、倾斜和摇摆也没有严格的要求。
在一些实施例中,无线电中继器704可以在该装置内包括诸如中继器系统600或400的装置,从而,除了便于与移动设备的通信,还使得自包含单元是分布式天线网络中的中继器。
图8示出了结合上述系统的过程。图8中的过程可以例如分别由图1-7中所示的系统100、200、300、400、500、600和700实现。虽然为了解释的简化,方法被示为和描述为一系列方框,但是应当理解和认识到,要求保护的主题不受方框次序的限制,因为一些方框可以按与本文绘出和描述的次序不同的次序发生和/或与其它方框同时发生。而且,不是所示出的所有方框都是实现下文所描述的方法所需要的。
图8示出了用于提供如本文所描述的分布式天线系统的方法的示例非限制实施例的流程图。方法800可以包括步骤802,其中从远程天线接收限定的高频传输。第一限定的频率传输可以处于或大于60GHz。该传输可以被户外微波收发器(例如,ODU602或无线电中继器704)接收。在步骤804处,从该传输中的多个信号中识别出一个信号并且确定该信号为与远程天线关联(例如,基于控制信道),并且其中该多个信号利用限定的高频传输被携带在多个信道中。在一些实施例中,该多个信道可以被一起频分多路复用。信号占用的信道可以确定信号指向哪个远程天线,并且在步骤806处,混频器(例如,628)和多路复用器/解多路复用器(例如,632)可以从该多个信号中提取信号并且将该信号偏移回在1.9GHz附近的固有频率(nativefrequency)。在步骤808处,信号可以被发送(例如,通过天线622)到信号所指向的移动设备。在810处,可以朝链中的另一远程天线和/或中继器继续重新发送该限定的频率传输。
现在参考图9,示出了根据本文所描述的各方面的计算环境的框图。例如,在一些实施例中,计算机可以是或者包括在之前的系统100、200、300、400、500、600和/或700中的任何一个所公开的分布式天线系统中。
为了对本文所描述的各种实施例提供附加的上下文,图9和以下讨论旨在提供对本文所描述的实施例的各种实施例可以在其中实现的合适计算环境900的简要的一般描述。虽然以上已经在可以在一个或多个计算机上运行的计算机可执行指令的一般上下文中描述了实施例,但是本领域技术人员将认识到,实施例也可以结合其它程序模块和/或作为硬件和软件的组合来实现。
一般而言,程序模块包括执行特定任务或实现特定抽象数据类型的例程、程序、组件、数据结构等。而且,本领域技术人员将认识到,本发明性方法可以利用其它计算机系统配置实践,包括单处理器或多处理器计算机系统、微型计算机、大型计算机,以及个人计算机、手持式计算设备、基于微处理器的或可编程的消费者电子产品等,其中每一个都可以操作地耦合到一个或多个关联的设备。
如在权利要求中所使用的,除非通过上下文另外很清楚地指示,否则术语“第一”、“第二”、“第三”等仅仅是为了清晰,而不是以其他方式指示或暗示时间上的任何次序。例如,“第一确定”、“第二确定”和“第三确定”不指示或暗示第一确定要在第二确定之前作出,或者反之亦然,等等。
本文实施例的所说明的实施例也可以在其中某些任务由通过通信网络链接的远程处理设备执行的分布式计算环境中实践。在分布式计算环境中,程序模块可以位于本地存储器存储设备和远程存储器存储设备二者中。
计算设备通常包括各种介质,这可以包括计算机可读存储介质和/或通信介质,在本文中这两个术语如下被彼此不同地使用。计算机可读存储介质可以是可被计算机访问并且包括易失性介质和非易失性介质、可移除介质和不可移除介质的任何可用的存储介质。作为例子而非限制,计算机可读存储介质可以结合用于存储信息的任何方法或技术来实现,其中信息诸如计算机可读指令、程序模块、结构化数据或非结构化数据。
计算机可读存储介质可以包括,但不限于,随机存取存储器(RAM)、只读存储器(ROM)、电可擦除可编程只读存储器(EEPROM)、闪存存储器或其它存储器技术、紧凑盘只读存储器(CD-ROM)、数字多功能盘(DVD)或其它光盘储存器、磁盒、磁带、磁盘储存器或其它磁存储设备,或者可以被用来存储期望的信息的其它有形和/或非瞬时性介质。在这方面,当在本文被应用到储存器、存储器或计算机可读介质时,术语“有形”或“非瞬时性”应当被应理解为排除本身作为修改器的仅是传播的瞬时性信号而不放弃对本身不只是传播的瞬时性信号的所有标准储存器、存储器或计算机可读介质的权利。
针对关于由介质存储的信息的各种操作,一个或多个本地或远程计算设备可以访问计算机可读存储介质,例如,经由访问请求、查询或其它数据检索协议。
通信介质通常将计算机可读指令、数据结构、程序模块或者其它结构化或非结构化数据体现在诸如调制数据信号的数据信号中,例如载波或其它运输机制,并且包括任何信息输送或运输介质。术语“调制数据信号”或信号指其一个或多个特征以在一个或多个信号中编码信息的这样的方式被设置或改变的信号。作为例子而非限制,通信介质包括诸如有线网络或直接连线连接的有线介质以及诸如声学、RF、红外和其它无线介质的无线介质。
再次参考图9,用于实现本文所描述的各方面的各种实施例的示例环境900包括计算机902,计算机902包括处理单元904、系统存储器906和系统总线908。系统总线908将系统组件耦合到处理单元904,该系统组件包括但不限于系统存储器906。处理单元904可以是任何各种市售处理器。双微处理器和其它多处理器体系架构也可以用作处理单元904。
系统总线908可以是若干类型的总线结构当中的任何一种,这些总线结构可以进一步利用任何各种市售总线体系架构互连到存储器总线(在有或没有存储器控制器的情况下)、外围总线以及本地总线。系统存储器906包括ROM910和RAM912。基本输入/输出系统(BIOS)可以存储在诸如ROM、可擦除可编程只读存储器(EPROM)、EEPROM的非易失性存储器中,BIOS包含帮助在计算机902中的元件之间传送信息的基本例程,比如在启动期间。RAM912还可以包括高速RAM,诸如用于高速缓存数据的静态RAM。
计算机902还包括内部硬盘驱动(HDD)914(例如,EIDE、SATA),该内部硬盘驱动914也可被配置用于外部使用在合适的机壳(未示出)、软磁盘驱动(FDD)916(例如,以便读或写可移除磁盘918)和光盘驱动920(例如,读CD-ROM盘922或者读或写诸如DVD的其它高容量光学介质)。硬盘驱动914、磁盘驱动916和光盘驱动920可以分别通过硬盘驱动接口924、磁盘驱动接口926和光学驱动接口928连接到系统总线908。用于外部驱动实现方式的接口924包括通用串行总线(USB)和电气和电子工程师协会(IEEE)994接口技术当中的至少一个或二者。其它外部驱动连接技术也在本文所描述的实施例的预期之内。
驱动及其关联的计算机可读存储介质提供了数据、数据结构、计算机可执行指令等的非易失性存储。对于计算机902,驱动器和存储介质以合适的数字格式容纳任何数据的存储。虽然以上计算机可读存储介质的描述指硬盘驱动(HDD)、可移除软磁盘以及诸如CD或DVD的可移除光学介质,但是本领域技术人员应当认识到,可被计算机读取的其它类型的存储介质,诸如zip驱动、磁盒、闪存存储器卡、盒式磁带等,也可以在该示例操作环境中使用,并且进一步,任何这种存储介质都可以包含用于执行本文所描述的方法的计算机可执行指令。
多个程序模块可以被存储在驱动和RAM912中,包括操作系统930、一个或多个应用程序932、其它程序模块934和程序数据936。操作系统、应用、模块和/或数据的全部或部分也可以被高速缓存在RAM912中。本文所描述的系统和方法可以利用各种市售操作系统或操作系统的组合来实现。
用户可以通过一个或多个有线/无线输入设备,例如键盘938和诸如鼠标940的定点设备,将命令和信息输入计算机902。其它输入设备(未示出)可以包括麦克风、红外(IR)遥控器、操纵杆、游戏平板、触控笔,触摸屏等等。这些和其它输入设备常常通过可以耦合到系统总线908的输入设备接口942连接到处理单元904,但是可以通过其它接口进行连接,诸如并行端口、IEEE1394串行端口、游戏端口、通用串行总线(USB)端口、IR接口等等。
监视器944或其它类型的显示设备也可以经由诸如视频适配器946的接口连接到系统总线908。除了监视器944,计算机通常还包括其它外围输出设备(未示出),诸如扬声器、打印机等。
经由到诸如(一个或多个)远程计算机948的一个或多个远程计算机的有线和/或无线通信,计算机902可以利用逻辑连接在联网环境中操作。(一个或多个)远程计算机948可以是工作站、服务器计算机、路由器、个人计算机、便携式计算机、基于微处理器的娱乐设备、对等设备或其它常见的网络节点,并且通常包括以上关于计算机902所描述的元件当中的许多或全部,但是为了简洁,仅示出存储器/存储设备950。所绘出的逻辑连接包括到局域网(LAN)952和/或例如广域网(WAN)954的更大网络的有线/无线连接性。这种LAN和WAN联网环境常见于办公室和公司,并且便于实现企业范围的计算机网络,诸如内联网,所有这些都可以连接到全球通信网络,例如互联网。
当在LAN联网环境中使用时,计算机902可以通过有线和/或无线通信网络接口或适配器956连接到本地网络952。适配器956可以便于实现到LAN952的有线或无线通信,其中LAN952还可以包括被放置于其上的、用于与无线适配器956进行通信的无线AP。
当在WAN联网环境中使用时,计算机902可以包括调制解调器958,或者可以连接到WAN954上的通信服务器,或者具有用于经WAN954(诸如借助互联网)建立通信的其它装置。可以是内置或外置并且可以是有线或无线设备的调制解调器958可以经由输入设备接口942连接到系统总线908。在联网环境中,关于计算机902或其部分进行描述的程序模块可以存储在远程存储器/存储设备950中。应当认识到,所示出的网络连接是示例,并且在计算机之间建立通信链路的其它装置也可以被使用。
计算机902可以操作为与操作地放置在无线通信中的任何无线设备或实体进行通信,例如打印机、扫描仪、台式和/或便携式计算机、便携式数据助理、通信卫星、与无线可检测标记关联的任何装备或位置(例如,公用电话亭、报亭、休息室)以及电话。这可以包括无线保真(Wi-Fi)和无线技术。由此,通信可以是就像利用常规网络的预定义的结构,或者仅仅是至少两个设备之间的自组织(adhoc)通信。
Wi-Fi可以允许从家里的沙发、酒店房间的床上或者工作会议室连接到互联网,而不需要线。Wi-Fi是类似于在手机中使用的无线技术,该技术使这些设备(例如计算机)在室内和室外发送和接收数据;在基站范围内的任何地方。Wi-Fi网络使用被称为IEEE802.11(a、b、g、n、ac等)的无线电技术来提供安全、可靠、快速的无线连接性。Wi-Fi网络可以被用来将计算机连接到彼此、连接到互联网以及连接到(可以使用IEEE802.3或以太网的)有线网络。Wi-Fi网络在无许可的2.4GHz和5GHz无线电频带内以11Mbps(802.11)或54Mbps(802.11)的数据速率操作,例如或具有包含这两个频带(双频带)的产品,使得网络可以提供类似于在许多办公室使用的基本10BaseT有线以太网网络的真实世界性能。
图10给出了可以实现和采用本文所描述的公开主题的一个或多个方面的移动网络平台1010的示例实施例1000。一般而言,无线网络平台1010可以包括既便于分组交换(PS)(例如,互联网协议(IP)、帧中继、异步传送模式(ATM))和电路交换(CS)流量(例如,语音和数据)又控制用于联网无线电信的生成的组件,例如节点、网关、接口、服务器或不同的平台。作为非限制性示例,无线网络平台1010可以包括在电信运营商网络中,并且如本文其它地方所讨论的那样可以被认为是运营商侧的组件。移动网络平台1010包括(一个或多个)CS网关节点1012,其中CS网关节点1012可以对接(interface)从像(一个或多个)电话网络1040(例如,公共交换电话网(PSTN)或公共陆地移动网(PLMN))的传统网络或信令系统#7(SS7)网络1060接收到的CS流量。(一个或多个)电路交换网关节点1012可以授权并认证从这些网络产生的流量(例如,语音)。此外,(一个或多个)CS网关节点1012可以访问通过SS7网络1060生成的移动性或漫游数据;例如,存储在被访问的位置寄存器(VLR)中的移动性数据,该数据可以驻留在存储器1030中。而且,(一个或多个)CS网关节点1012对接基于CS的流量和信令和(一个或多个)PS网关节点1018。作为例子,在3GPPUMTS网络中,(一个或多个)CS网关节点1012可以至少部分地在(一个或多个)网关GPRS支持节点(GGSN)中实现。应当认识到,(一个或多个)CS网关节点1012、(一个或多个)PS网关节点1018和(一个或多个)服务节点1016的功能和具体操作由被移动网络平台1010用于电信的(一种或多种)无线电技术提供和规定。
除了接收和处理CS交换流量和信令,(一个或多个)PS网关节点1018还可以授权并认证与被服务的移动设备的基于PS的数据会话。数据会话可包括与无线网络平台1010外部的网络交换的流量或(一个或多个)内容,其中该网络就像(一个或多个)广域网(WAN)1050、(一个或多个)企业网1070以及(一个或多个)服务网络1080,其中服务网络可以在(一个或多个)局域网(LAN)中体现,也可以通过(一个或多个)PS网关节点1018与无线网络平台1010对接。应当指出的是,WAN1050和(一个或多个)企业网1070可以至少部分地体现像IP多媒体子系统(IMS)的(一个或多个)服务网络。基于在(一个或多个)技术资源1017中可用的(一个或多个)无线电技术层,(一个或多个)分组交换网关节点1018可以在数据会话被建立时生成分组数据协议上下文;便于路由分组化的数据的其它数据结构也可以被生成。为此,在一方面,(一个或多个)PS网关节点1018可以包括隧道接口(例如,(一个或多个)3GPPUMTS网络中的隧道终止网关(TTG)(未示出)),该隧道接口可以便于实现与诸如Wi-Fi网络的(一个或多个)完全不同的无线网络进行分组化的通信。
在实施例1000中,无线网络平台1010还包括(一个或多个)服务节点1016,基于(一个或多个)技术资源1017中可用的(一个或多个)无线电技术层,所述服务节点递送通过(一个或多个)PS网关节点1018接收的数据流的各种分组化的流。应当指出的是,对于主要依赖于CS通信的(一个或多个)技术资源1017,(一个或多个)服务器节点可以不依赖(一个或多个)PS网关节点1018就输送流量;例如,(一个或多个)服务器节点可以至少部分地体现移动交换中心。作为例子,在3GPPUMTS网络中,(一个或多个)服务节点1016可以在(一个或多个)服务GPRS支持节点(SGSN)中被体现。
对于采用分组化的通信的无线电技术,无线网络平台1010中的(一个或多个)服务器1014可以执行众多应用,这些应用可以生成多个不同的分组化的数据流,并且管理(例如,调度、排队,格式化...)这些流。(一个或多个)这种应用可以包括对由无线网络平台1010提供的标准服务(例如,供应、计费、客户支持...)的附加特征。数据流(例如,作为语音呼叫或数据会话的一部分的(一个或多个)内容)可以被递送到(一个或多个)PS网关节点1018,用于数据会话的授权/认证和启动,并且被递送到(一个或多个)服务节点1016,用于其后的通信。除了应用服务器,(一个或多个)服务器1014还可以包括(一个或多个)实用服务器,实用服务器可以包括供应服务器、操作和维护服务器、可以至少部分地实现证书授权机构和防火墙以及其它安全机制的安全服务器等等。在一方面,(一个或多个)安全服务器保护通过无线网络平台1010被服务的通信,以便除了(一个或多个)CS网关节点1012和(一个或多个)PS网关节点1018可以制定的授权和认证程序,还确保网络的操作和数据完整性。而且,(一个或多个)供应服务器可以供应来自像由不同的服务提供商运营的网络的(一个或多个)外部网络的服务;例如,WAN1050或(一个或多个)全球定位系统(GPS)网络(未示出)。(一个或多个)供应服务器还可以通过关联到无线网络平台1010的(例如,被相同的服务提供商部署和运营的)网络供应覆盖,诸如(一个或多个)增强室内受限空间内的无线服务覆盖并且卸载RAN资源的毫微微小区网络(未示出),以便借助UE1075增强家庭或商业环境内的订户服务体验。
应当指出的是,(一个或多个)服务器1014可以包括被配置为至少部分地赋予(confer)宏网络平台1010的功能的一个或多个处理器。为此,例如,该一个或多个处理器可以执行存储在存储器1030中的代码指令。应当认识到,(一个或多个)服务器1014可以包括内容管理器1015,其中内容管理器1015以基本上与前文所描述的方式相同的方式进行操作。
在示例实施例1000中,存储器1030可以存储关于无线网络平台1010的操作的信息。其它操作信息可以包括通过无线平台网络1010被服务的移动设备的供应信息、订户数据库;应用智能、定价方案,例如促销价格、统一费率方案、优惠券活动;与用于不同的无线电或无线技术层的操作的电信协议一致的(一个或多个)技术规范等等。存储器1030还可以存储来自(一个或多个)电话网络1040、WAN1050、(一个或多个)企业网1070或者SS7网络1060当中的至少一个的信息。在一方面,存储器1030可以例如作为数据存储组件或作为远程连接的存储器存储的一部分被访问。
为了提供用于所公开主题的各方面的上下文,图10和以下讨论旨在提供对所公开的主题的各个方面可以在其中实现的合适环境的简要的一般描述。虽然该主题已经在以上在运行在一个和/或多个计算机上的计算机程序的计算机可执行指令的一般上下文中进行了描述,但是本领域技术人员将认识到,所公开的主题也可以结合其它程序模块来实现。一般而言,程序模块包括执行特定任务和/或实现特定抽象数据类型的例程、程序、组件、数据结构等等。
在本说明书,诸如“存储”、“储存器”、“数据存储”、“数据储存器”、“数据库”的术语以及基本上任何其它与组件的操作和功能相关的信息存储组件都是指“存储器组件”或者体现在“存储器”或包含存储器的组件中的实体。应当认识到,本文所描述的存储器组件可以是易失性存储器或非易失性存储器,或者可以既包括易失性存储器又包括非易失性存储器,作为说明而非限制,易失性存储器1020(见下文)、非易失性存储器1022(见下文)、盘储存器1024(见下文)和存储器储存器1046(见下文)。另外,非易失性存储器可以被包括在只读存储器(ROM)、可编程ROM(PROM)、电可编程ROM(EPROM)、电可擦除ROM(EEPROM)或闪存存储器中。易失性存储器可以包括随机存取存储器(RAM),它充当外部高速缓存存储器。作为说明而非限制,RAM以许多形式可用,诸如同步RAM(SRAM)、动态RAM(DRAM)、同步DRAM(SDRAM)、双数据速率SDRAM(DDRSDRAM)、增强型SDRAM(ESDRAM)、同步链路DRAM(SLDRAM)和直接RambusRAM(DRRAM)。此外,本文系统或方法的所公开的存储器组件旨在包括,但不限于包括,这些和任何其它合适类型的存储器。
而且,应当指出的是,所公开的主题可以利用其它计算机系统配置来实践,包括单处理器或多处理器计算机系统、微型计算设备、大型计算机,以及个人计算机、手持式计算设备(例如,PDA、电话、手表、平板电脑、上网本电脑……)、基于微处理器的或可编程的消费者或工业电子产品等等。所说明的各方面也可以在分布式计算环境中实践,其中任务由通过通信网络链接的远程处理设备执行;但是,本公开内容的各方面就算不是全部也至少有一些可以在独立的计算机上实践。在分布式计算环境中,程序模块可以既位于本地存储器存储设备又位于远程存储器存储设备中。
本文所描述的实施例可以采用人工智能(AI)来方便自动化本文所描述的一个或多个特征。实施例(例如,结合在添加到现有通信网络之后自动识别所获取的提供最大化价值/利益的小区站点)可以采用各种基于AI的方案来用于执行其各种实施例。而且,分类器可以被用来确定所获取的网络的每个小区站点的排名或优先级。分类器是将输入属性向量x=(x1,x2,x3,x4,...,xn)映射到该输入属于一类的置信度的函数,即f(x)的=置信度(类)。这种分类可以采用基于概率和/或基于统计的分析(例如,分解成分析效用和成本)来预测或推断用户期望被自动执行的动作。支持向量机(SVM)是可以被采用的分类器的一个示例。SVM通过找出可能输入的空间中的超曲面来操作,其中超曲面试图分离触发标准与非触发事件。直观地,这使得分类对于接近但与训练数据不完全相同的测试数据是正确的。假定不同的独立性模式可以被采用,其它有向和无向模型分类方法包括,例如朴素贝叶斯、贝叶斯网络、决策树、神经网络、模糊逻辑模型和概率分类模型。如本文使用的分类还包括被用来开发优先级模型的统计回归。
如将容易认识到的,一种或多种实施例可以采用经过显式训练(例如,经由通用训练数据)以及隐式训练(例如,经由观察UE行为、运营商偏好、历史信息、接收外来信息)的分类器。例如,SVM可以经由分类器构造器和特征选择模块内的学习或训练阶段来配置。因此,(一个或多个)分类器可以被用来自动学习和执行多个功能,包括但不限于根据预定标准确定所获取的小区站点中哪个将有利于最大数量的订户和/或所获取的小区站点中哪个将向现有的通信网络覆盖添加最小价值等等。
如在本申请中所使用的,在一些实施例中,术语“组件”、“系统”等旨在指或者包括,与计算机相关的实体或者与具有一个或多个具体功能的操作装置相关的实体,其中实体可以是硬件、硬件和软件的组合、软件或者执行中的软件。作为例子,组件可以是,但不限于是,在处理器上运行的过程、处理器、对象、可执行程序、执行线程、计算机可执行的指令、程序和/或计算机。作为说明而非限制,在服务器上运行的应用和该服务器都可以是组件。一个或多个组件可以驻留在执行的过程和/或线程内,并且组件可以在一个计算机上本地化和/或在两个或更多个计算机之间分布。此外,这些组件可以从其上存储有各种数据结构的各种计算机可读介质执行。这些组件可以经由本地和/或远程过程来通信,诸如根据具有一个或多个数据分组的信号(例如,来自与在本地系统、分布式系统中与另一个组件交互和/或经由信号跨诸如互联网的网络与其它系统交互的一个组件的数据)。作为另一个例子,组件可以是具有由电气或电子电路操作的机械零件提供的具体功能的装置,其中电气或电子电路由处理器执行的软件或固件应用操作,其中处理器可以在装置的内部或外部并且执行软件或固件应用的至少一部分。作为又一个示例,组件可以是通过没有机械零件的电子组件提供具体功能的装置,该电子组件可以在其中包括处理器,以执行至少部分地赋予电子组件功能的软件或固件。虽然各种组件被示为单独的组件,但是应当认识到,在不背离示例实施例的情况下,多个组件可以被实现为单个组件,或者单个组件可以被实现为多个组件。
另外,各种实施例可以利用标准的编程和/或工程技术被实现为方法、装置或制品,以产生软件、固件、硬件或其任何组合来控制计算机实现所公开的主题。如本文所使用的,术语“制品”是要涵盖可从任何计算机可读设备或计算机可读存储/通信介质访问的计算机程序。例如,计算机可读存储介质可以包括,但不限于,磁存储设备(例如,硬盘、软盘、磁条)、光盘(例如,紧凑盘(CD)、数字多功能盘(DVD))、智能卡和闪存存储器设备(例如,卡、棒、键驱动)。当然,本领域技术人员将认识到,在不背离各种实施例的范围或精神的情况下,可以对这种配置做出许多修改。
此外,词语“示例”和“示例性”在本文中被用来意指充当实例或说明。本文被描述为“示例”或“示例性”的任何实施例或设计并不一定要被解释为优于或胜过其它实施例或设计。相反,词语示例或示例性的使用旨在以具体的方式呈现概念。如在本申请中所使用的,术语“或”旨在指包含性的“或”而不是排他性的“或”。即,除非另有指定或从上下文可以清楚知道,否则“X采用A或B”旨在指任何自然的包含性排列。即,如果X采用A;X采用B;或者X采用A和B二者,则在任何以上情况下都满足“X采用A或B”。此外,如在本申请和所附权利要求书中所使用的,除非另有指定或从上下文清楚看出是针对单数形式,否则冠词“一”和“一个”应当一般性地被解释为意指“一个或多个”。
而且,诸如“用户设备”、“移动站”、“移动订户站”、“接入终端”、“终端”、“手持机”、“移动设备”(和/或表示类似术语的术语)可以指被无线通信服务的订户或用户用来接收或递送数据、控制、语音、视频、声音、游戏或基本上任何数据流或信令流的无线设备。前述术语在本文可互换使用并且参照相关的附图。
此外,术语“用户”、“订户”、“客户”、“消费者”等贯穿全文可被互换采用,除非上下文证实(warrant)这些术语之间的特定区分。应当认识到,这些术语可以指人类实体或者通过人工智能支持的自动化组件(例如,至少基于复杂的数学形式体系做出推论的能力),该自动化组件可以提供模拟视觉、声音识别等。
如在本文所采用的,术语“处理器”可以指基本上任何计算处理单元或设备,包括但不限于包括,单核处理器;具有软件多线程执行能力的单处理器;多核处理器;具有软件多线程执行能力的多核处理器;具有硬件多线程技术的多核处理器;并行平台;以及具有分布式共享存储器的并行平台。此外,处理器可以指被设计为执行本文所描述的功能的集成电路、专用集成电路(ASIC)、数字信号处理器(DSP)、现场可编程门阵列(FPGA)、可编程逻辑控制器(PLC)、复杂可编程逻辑器件(CPLD)、离散门或晶体管逻辑、离散硬件组件或者其任意组合。处理器可以利用纳米级体系架构,诸如但不限于,基于分子和量子点的晶体管、开关和门,以便优化空间的使用或增强用户设备的性能。处理器还可以被实现为计算处理单元的组合。
如在本文所使用的,诸如“数据储存器”、“数据储存器”、“数据库”的术语以及基本上任何其它与组件的操作和功能相关的信息存储组件都是指“存储器组件”或者在“存储器”或包括存储器的组件中体现的实体。应当认识到,本文所描述的存储器组件或计算机可读存储介质可以是易失性存储器或非易失性存储器,或者可以既包括易失性存储器又包括非易失性存储器。
本文所公开的存储器可以包括易失性存储器或非易失性存储器,或者可以既包括易失性存储器又包括非易失性存储器。作为说明而非限制,非易失性存储器可以包括只读存储器(ROM)、可编程ROM(PROM)、电可编程ROM(EPROM)、电可擦除PROM(EEPROM)或闪存存储器。易失性存储器可以包括随机存取存储器(RAM),它充当外部高速缓存存储器。作为说明而非限制,RAM以许多形式可用,诸如同步RAM(SRAM)、动态RAM(DRAM)、同步DRAM(SDRAM)、双数据速率SDRAM(DDRSDRAM)、增强型SDRAM(ESDRAM)、同步链路DRAM(SLDRAM)和直接RambusRAM(DRRAM)。各实施例的存储器(例如,数据储存器、数据库)旨在包括但不限于这些和任何其它合适类型的存储器。
以上所描述的仅仅包括各种实施例的示例。当然,不可能为了描述这些实施例而描述组件或方法的每个可以想到的组合,但本领域普通技术人员可以认识到,给出的实施例的许多进一步的组合和排列都是可能的。因此,本文所公开和/或要求保护的实施例是要涵盖落入随附权利要求的精神和范围之内的所有此类更改、修改和变化。此外,就术语“包括(includes)”在具体描述或权利要求中被使用的程度而言,这种术语是要以类似于术语“包括(comprising)”的方式作为包含性的,就像当“包括”在权利要求中作为过渡词被采用时所解释的那样。
Claims (20)
1.一种系统,包括:
存储器,存储指令;及
处理器,耦合到所述存储器,以便于执行指令以执行操作,包括:
便于从基站设备接收第一信号,其中第一信号被确定为在蜂窝频带内;
利用第一信号调制载波信号;
基于载波信号和第一信号生成传输;及
无线地将传输指向远程天线。
2.如权利要求1所述的系统,其中所述传输包括从基站设备集接收的信号的子载波集。
3.如权利要求2所述的系统,其中所述子载波集的子载波被指向相应的远程天线集。
4.如权利要求1所述的系统,其中所述传输被确定为被表示在处于或基本上处于至少60GHz的频率。
5.如权利要求1所述的系统,其中第一信号符合移动网络通信协议。
6.如权利要求2所述的系统,其中所述子载波集通过频分多路复用来组合。
7.如权利要求1所述的系统,其中所述传输包括指示从所述基站设备接收的子载波信号对应于远程天线集当中的哪个远程天线的元数据。
8.如权利要求1所述的系统,其中所述操作还包括:
从所述远程天线无线地接收第二传输;及
从第二传输中提取第二信号,其中第二信号的频带被转换成所述蜂窝频带。
9.如权利要求8所述的系统,其中所述操作还包括:
确定第二信号对应于基站设备集当中的哪个基站设备;及
将第二信号发送到第二信号对应的所述基站设备。
10.一种系统,包括:
存储器,存储指令;及
处理器,耦合到所述存储器,以便于执行指令以执行操作,包括:
接收第一无线传输;
从第一无线传输中提取信号,其中所述信号在蜂窝频带频率内;
将所述信号发送到移动设备;及
重新发送第一无线传输。
11.如权利要求10所述的系统,其中所述操作还包括:
从所述移动设备接收第二信号;
基于利用第二信号调制载波信号来生成第二传输;及
发送指向基站设备的第二传输,其中第二传输处于至少大约60GHz的频率。
12.如权利要求11所述的系统,其中第二传输包括指示第二传输与其关联的基站设备的标识符。
13.如权利要求10所述的系统,其中所述操作还包括:
在提取所述信号之前利用第一放大器提升第一无线传输的信噪比;及
在重新发送第一无线传输之前利用第二放大器放大第一无线传输。
14.如权利要求10所述的系统,其中第一无线传输包括多个信号。
15.如权利要求14所述的系统,其中所述提取包括从所述多个信号中选择被确定为与所述移动设备关联的信号。
16.如权利要求14所述的系统,其中所述多个信号中的信号通过频分多路复用来组合。
17.如权利要求10所述的系统,其中所述信号是根据移动网络通信协议来格式化的。
18.一种方法,包括:
由包括处理器的设备接收指向远程天线的限定的高频传输;
由该设备从多个信号中识别被确定为与所述远程天线关联的信号,其中所述多个信号利用所述限定的高频传输被携带在多个信道内;
由所述设备提取所述信号;
由所述设备发送指向移动设备的所述信号;及
由所述设备重新发送指向另一远程天线的所述限定的高频传输。
19.如权利要求18所述的方法,其中所述提取所述信号还包括将所述信号转换到蜂窝频带频率。
20.如权利要求18所述的方法,其中所述限定的高频传输是第一限定的高频传输,并且还包括:
由所述设备从所述移动设备接收第二信号;
由所述设备利用第二信号调制载波信号;
由所述设备响应于所述调制而生成第二限定的高频传输;及
由所述设备将所述限定的第二高频传输发送到基站设备。
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US10091787B2 (en) | 2018-10-02 |
CA2909887C (en) | 2019-01-15 |
US9930668B2 (en) | 2018-03-27 |
US10484993B2 (en) | 2019-11-19 |
MX2015015124A (es) | 2016-07-19 |
EP3005583A2 (en) | 2016-04-13 |
US10225841B2 (en) | 2019-03-05 |
US20170064715A1 (en) | 2017-03-02 |
JP6328232B2 (ja) | 2018-05-23 |
CN105594138B (zh) | 2019-12-24 |
BR112015029952A2 (pt) | 2017-07-25 |
US10051630B2 (en) | 2018-08-14 |
US9525524B2 (en) | 2016-12-20 |
US20160269156A1 (en) | 2016-09-15 |
WO2014193929A2 (en) | 2014-12-04 |
CA3026062A1 (en) | 2014-12-04 |
CA3026062C (en) | 2019-08-13 |
US20190069296A1 (en) | 2019-02-28 |
KR20160014624A (ko) | 2016-02-11 |
JP2016529755A (ja) | 2016-09-23 |
US20160294517A1 (en) | 2016-10-06 |
US20180160430A1 (en) | 2018-06-07 |
MX350346B (es) | 2017-09-04 |
CA2909887A1 (en) | 2014-12-04 |
US20140355525A1 (en) | 2014-12-04 |
WO2014193929A3 (en) | 2015-03-12 |
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