CN104620640B - 用户设备及接入网络发现和选择功能服务器 - Google Patents
用户设备及接入网络发现和选择功能服务器 Download PDFInfo
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- CN104620640B CN104620640B CN201380045897.3A CN201380045897A CN104620640B CN 104620640 B CN104620640 B CN 104620640B CN 201380045897 A CN201380045897 A CN 201380045897A CN 104620640 B CN104620640 B CN 104620640B
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Abstract
实施例描述了用于至少部分地基于接入网络发现和选择功能(ANDSF)服务质量(QoS)策略来标识无线局域网(WLAN)的优选的接入点(AP)。在一些实施例中,可将ANDSF QoS策略与AP的空中接口拥塞参数、和/或Ap的回程拥塞参数中的一个或多个相比较。
Description
相关申请的交叉引用
本申请要求2013年3月14日提交的题为“ANDSF PARAMETERS FOR WLAN NETWORKSELECTION(用于WLAN网络选择的ANDSF参数)”专利申请No.13/830,465的优先权,该专利申请要求2012年9月28日提交的题为“ADVANCED WIRELESS COMMUNICATION SYSTEMS ANDTECHNIQUES(高级无线通信系统和技术)”的美国临时专利申请No.61/707,784的优先权,这些申请的公开内容通过引用结合于此。
领域
实施例涉及用于使第三代合作伙伴计划(3GPP)用户设备(UE)在离开3GPP网络时利用无线局域网(WLAN)动态参数的装置、方法和存储介质。
背景技术
本文所提供的背景技术描述是为了总体陈述本公开的上下文。当前的发明者所署名的文献,就其在本背景技术部分所描述的程度,以及其在本申请提交之时不可作为现有技术的说明书的诸方面,既不可明显地,也不可隐含地被承认是本公开的现有技术。除非在此另外指出,在本部分描述的方法不是相对于本公开的权利要求的现有技术并且不承认为包括在本部分中的现有技术。
通常,蜂窝网络需要能够将用户设备(UE)切换或卸载至无线局域网(WLAN)。蜂窝网络的示例可包括3G或4G网络,诸如由第三代合作伙伴计划(3GPP)规范定义的3G或4G网络。WLAN的示例可包括Wi-Fi网络,诸如由电气和电子工程师(IEEE)802.11规范描述的Wi-Fi网络。在某些实施例中,蜂窝网络运营商可设置用于使UE接入WLAN的静态策略。
附图简述
通过结合附图的以下详细描述将容易理解多个实施例。为了便于该描述,相同的附图标记指示相同结构的元件。在附图的多个图中通过示例而非作为限制地说明多个实施例。
图1示意性地示出了根据各个实施例的包括UE和基站的网络系统的高层级示例。
图2示出了根据各个实施例的既包括蜂窝实体又包括WLAN实体的多运营商网络的示例。
图3示出了根据各个实施例的接入点标识过程的示例。
图4示出了根据各个实施例的接入网络发现和选择功能(ANDSF)策略更新过程的示例。
图5示意性地示出了可用于实现本文所描述的各个实施例的示例系统。
详细描述
本文描述了用于允许UE使用ANDSF服务质量(QoS)策略来确定用于使UE连接至蜂窝网络的优选WLAN的装置、方法、和存储介质。在一些实施例中,UE可接收与WLAN相关的空中接口接口拥塞参数、回程拥塞参数、和/或WLAN的位置参数。UE可然后将所接收到的参数与一个或多个ANDSF QoS策略相比较,以确定WLAN是否已具有用于使UE连接至WLAN的足够带宽并且仍维持足够的QoS。
在以下详细描述中,参照形成本说明书一部分的所附附图,其中在全部附图中相同的标记指示相同的部件,并且在附图中通过图示说明示出了可实现的实施例。将理解,可利用其它实施例,且可做出结构上或逻辑上的改变,而不偏离本公开的范围。因此,以下详细描述不应按照限制性意义来理解,且多个实施例的范围由所附权利要求及其等价方案来限定。
各个操作又以最有助于理解所要求保护的主题的方式被描述为多个不连续的动作或操作。然而,描述的顺序不应当被解释为暗示这些操作一定是依赖于顺序。具体地说,这些操作可能不以呈现的顺序执行。可以与所描述的实施例不同的顺序执行所描述的操作。可执行各种附加操作和/或在附加的实施例中可省略所描述的操作。
为了本公开的目的,短语“A和/或B”和“A或B”表示(A)、(B)或(A和B)。为了本公开的目的,短语“A、B和/或C”表示(A)、(B)、(C)、(A和B)、(A和C)、(B和C)或(A、B和C)。
说明书可使用短语“在实施例中”或在“多个实施例中”,它们均可表示相同或不同实施例中的一个或多个。此外,有关本公开的多个实施例使用的术语“包括”、“包含”、“具有”等等是同义的。
图1示意性地示出了根据各个实施例的无线通信网络100。无线通信网络100(在下文中“网络100”)可以是蜂窝网络,例如,3GPP长期演进(LTE)网络(诸如,演进的通用陆地无线接入网络(E-UTRAN))。在其他实施例中,网络100可以是WLAN,诸如,IEEE 802.11Wi-Fi网络。网络100可包括配置成与UE 110无线通信的基站105。基站105可以是3GPP eNodeB(eNB)或WLAN接入点(AP)。UE 110可被配置成一次与3GPP eNB或WLAN AP中的任一个通信或基本彼此并行地与3GPP eNB或WLAN AP中的一个或多个通信。
如图1所示,UE110可包括收发机模块120。收发机模块120可进一步与UE 110的天线125耦合以用于与网络100的其他组件(例如,基站105)无线通信。天线125可由功率放大器130供电,功率放大器可以是收发机120的组件(如图1所示)或UE 110的单独的组件。在一个实施例中,功率放大器130为天线125上的所有传输供电。在其他实施例中,UE 110上可能存在多个功率放大器、多个天线、或以上两者。在实施例中,UE 110可包括网络选择模块155,网络选择模块155可包括一个或多个处理器或控制器。网络选择模块155可以是如图所示的收发机模块120的部分,而在其他实施例中,网络选择模块155可与收发机模块120分离。网络选择模块155可被配置成确定UE 110是否应当连接至网络的eNB或AP。如果UE 110具有同时连接至多个网络的选项,则网络选择模块155可被配置成确定UE 110应当连接至多个网络中的哪一些。在实施例中,网络选择模块155可以是硬件、软件、固件、或配置成执行本文所描述的过程的一些其他类型的逻辑。
基站105可包括与基站105的天线140耦合以用于与网络组件(诸如,UE 110)无线通信的收发机模块135。基站105可进一步包括与收发机模块135和功率控制器150耦合的功率放大器145。在一个实施例中,功率放大器145提供用于天线140上的所有传输的功率。在其他实施例中,基站105上可能存在多个功率放大器、多个天线、或以上两者。
图2描绘了包括蜂窝网络和WLAN两者的元件的系统的示例。在实施例中,可与以上描述的UE 110类似的UE 200可与3GPP eNB 205和WLAN AP 210通信地耦合。在实施例中,3GPP eNB 205可与以上描述的基站105相同或基本类似。类似地,WLAN AP 210可与以上描述的基站105相同或基本类似。
在实施例中,3GPP eNB 205和/或WLAN AP 210中的一个或两者可与本地ANDSF(L-ANDSF)服务器215通信地耦合。L-ANDSF服务器215可与ANDSF服务器220耦合。在实施例中,ANDSF服务器220可以是3GPP网络中的服务器,该服务器可由3GPP网络运营商控制。ANDSF服务器220可与一个或多个3GPP eNB 205或WLAN AP 210通信地耦合,一个或多个3GPP eNB205或WLAN AP 210进而为3GPP网络中的一个或多个UE提供服务。在一些实施例中,如图2所示,L-ANDSF服务器215可通信地定位于ANDSF服务器220和3GPP eNB 205或WLAN AP 210之间。在这些实施例中,L-ANDSF服务器215可服务3GPP eNB 205和/或WLAN AP 210的子集,并且作为结果,L-ANDSF服务器215可仅与网络中的UE 200的子集通信地耦合。
与使用单个集中式ANDSF服务器220相比,使用ANDSF服务器的层级(诸如,ANDSF服务器220和多个L-ANDSF服务器215或225)可提供优势。例如,如稍后所解释的,代替使用集中式ANDSF QoS策略控制器,网络运营商(诸如,3GPP网络运营商)可允许L-ANDSF服务器215具有对UE的子集的ANDSF服务质量(QoS)策略的控制。控制UE的子集而不是网络中的所有UE的ANDSF QoS策略,可允许L-ANDSF服务器215动态地改变其ANDSF QoS策略以对应于不断变化的条件(例如,诸如可能在机场发生大量的UE同时到达或离开)。
类似地,3GPP网络运营商可允许不同的网络运营商(3GPP网络运营商的漫游伙伴)控制L-ANDSF服务器215的QoS策略(如果该L-ANDSF服务器215是漫游网络的一部分)。在一些实施例中,集中式ANDSF服务器220可提供一个或多个策略以供L-ANDSF服务器215或225使用。ANDSF服务器220还可向无线互联网服务提供商(WISP)合作伙伴委托(delegate)一些QoS策略授权。该授权可包括定义委托范围的参数、如何避免乒乓效应、或用于微调负荷均衡和网络选择决定的协议。在一些实施例中,L-ANDSF服务器215或225可与ANDSF服务器220相同。在一些实施例中,L-ANDSF服务器215和225和/或ANDSF服务器220可被实现为在相同的硬件上运行的不同软件模块,而在其他实施例中,L-ANDSF服务器215和225和/或ANDSF服务器220可以是不同的硬件元件。
在一些实施例中,ANDSF服务器220可与一个或多个数据库230通信地耦合。在一些实施例中,数据库230可存储有关一个或多个WLAN的空中接口或回程拥塞的统计和策略。在一些实施例中,数据库230可存储ANDSF QoS策略。作为附加或替代,数据库230可存储有关一个或多个蜂窝网络(诸如,3G/4G网络)的数据。在一些实施例中,数据库230可以是ANDSF服务器220或L-ANDSF服务器215或225的一部分。在其他实施例中,数据库230可例如通过直接连接、经由无线链路(诸如,WLAN或3G或4G蜂窝网络)、通过因特网、或经由一些其他方式的通信耦合与ANDSF服务器220和/或L-ANDSF服务器215或225通信地耦合。
在一些实施例中,数据库230可使用数据库230中的数据来创建一个或多个ANDSF策略,例如基于有关蜂窝网络的数据、WLAN的空中接口负荷或拥塞、WLAN的回程拥塞、或一些其他参数的策略。数据库230可然后将QoS策略传递至ANDSF服务器220。在其他实施例中,230的数据库可向ANDSF服务器220或L-ANDSF服务器215或225传输数据,例如,蜂窝网络数据、空中接口数据、回程数据、或一些数据,进而ANDSF服务器220或L-ANDSF服务器215或225可创建新的ANDSF QoS策略。如果ANDSF服务器220创建ANDSF QoS策略,则ANDSF服务器220可将ANDSF QoS策略中的一个或多个传输至L-ANDSF服务器215或225,进而L-ANDSF服务器215或225可将策略传输至UE 200中的一个或多个。在一些实施例中,可使用网际协议(IP)级协议(诸如,简单对象访问协议可扩展标记语言(SOAP-XML)或开放移动联盟设备管理(OMA-DM))经由短消息服务(SMS)将ANDSF QoS策略从ANDSF服务器220或L-ANDSF服务器215传输至UE 200。
在实施例中,ANDSF QoS策略可允许UE 200(具体是UE的网络选择模块)来确定AP(例如,WLAN AP 210)是否会是UE 200应当连接至的AP。例如,在一些实施例中,UE 200可由于各种原因(诸如,方便、3GPP网络的拥塞、来自UE 200的用户的指示、或一些其他原因)想要从3GPP eNB 205断开。在一些实施例中,UE 200可使用一个或多个ANDSF QoS策略来确定是否能接受连接至WLAN AP 210,或如果存在多个WLAN AP,则确定连接至哪个WLAN AP。
在一些实施例中,ANDSF QoS策略中的一个或多个包含WLAN网络(WLAN AP 210可以是该WLAN网络的一部分)的负荷或拥塞参数可能是有利的。类似地,ANDSF QoS策略中的一个或多个包含WLAN网络的空中接口的负荷或拥塞参数可能是有利的。最后,ANDSF QoS策略中的一个或多个包含WLAN AP 210的地点或位置相关的信息可能是有利的。
图3示出了可由UE(诸如,UE 200)(更具体地,该UE的网络选择模块)使用的利用一个或多个ANDSF QoS策略来确定是否可以接受UE与WLAN AP(诸如,WLAN AP 210)连接的过程的示例。在实施例中,在300处,UE 200可接收空中接口拥塞参数。在一些实施例中,WLANAP 210可与Wi-Fi联盟(WFA)热点2.0技术规范V1.0.0(2013年2月16日公开的)兼容。与热点2.0技术规范兼容可允许WLAN AP 210广播在例如2012年3月公开的IEEE 802.11-2012标准中指定的基本服务集(BSS)负荷元素。在实施例中,BBS负荷元素可包括以下中的一个或多个。
站计数(STA计数):STA计数字段可被解释为指示当前与WLAN网络相关联的UE的总数量的整数(该整数可以是无符号的)。
信道利用率:信道利用率字段可指示WLAN AP感测到空中接口是繁忙的时间的百分比。该感测可以是基于物理或虚拟载波感测机制。
可用准入(admission)容量:可用准入容量字段可指示经由明确准入控制可用的剩余时间量。该字段可有助于漫游UE来选择有可能接受未来准入控制请求的WLAN AP。
在实施例中,在305处,UE 200还可接收一个或多个回程拥塞参数。回程拥塞参数可指示有关将WLAN AP 210连接至因特网的回程链路的拥塞的信息。在一些实施例中,拥塞参数可以是例如在2012年公开的WFA Wi-Fi认证PasspointTM(第1版)部署指南中所描述的接入网络查询协议(ANQP)无线区域网络(WAN)度量元素的元素。在一些实施例中,UE200可使用ANQP WAN度量元素来查询WLAN AP 210以取回有关可将WLAN AP 210连接至因特网的回程链路的信息。在一些实施例中,ANQP WAN度量元素可描述包括以下中的一个或多个的回程链路的若干性质。
下行链路速度:下行链路速度可以千比特每秒为单位描述WAN回程链路的下行链路速度,但也可使用其他测量。
上行链路速度:上行链路速度可以千比特每秒为单位描述WAN回程链路的上行链路速度,但也可使用其他测量。
下行链路负荷:下行链路负荷可描述在某一时间周期上测得的下行链路回程连接的负荷的百分比。
上行链路负荷:上行链路负荷可描述在某一时间周期上测得的上行链路回程连接的负荷的百分比。
在实施例中,在310处,UE 200还可接收一个或多个WLAN位置参数。例如,UE 200可接收如在IEEE 802.11-2012规范和WFA热点2.0规范中所定义的接入网络类型字段。接入网络类型字段可用于指示诸如WLAN会是收费的公共网络、免费的公共网络、专用网络、具有访客访问的专用网络、还是一些其他类型的网络。在实施例中,接入网络类型字段可由UE200使用以将WLAN标识为专用、公共、免费个人、紧急、或一些其他类型的网络。在一些实施例中,WLAN位置参数还可包括由WFA热点2.0规范定义的地点信息字段ANQP元素和/或运营商的友好名称热点2.0ANQP元素。这些元素可由WLAN AP 210广播,或它们可响应于UE 200的查询由WLAN AP 210提供。
在一些实施例中,地点信息字段ANQP元素可帮助UE 200标识WLAN网络地点是住宅、公共还是商业地点。地点信息字段ANQP元素可进一步标识在哪里部署WLAN,例如,学校、医院、酒店、专业写字楼等。该地点信息可允许3GPP网络运营商针对不同类型的WLAN网络(诸如,基于公共、家庭、或企业的WLAN网络)应用不同的ANDSF QoS策略。在实施例中,运营商的友好名称热点2.0ANQP元素可用于标识WLAN AP 210的具体名称,并且可用于标识例如属于特定公司的WLAN AP 210。
在一些实施例中,地点信息还可指定ANDSF中的有效性条件/标准并且可由3GPP运营商使用以指定在不同位置中的具体策略。作为示例,3GPP运营商可能想要具有ANDSF QoS策略,藉由该策略,业务可被卸载至其漫游伙伴,但仅在某一时间窗口并且在特定地理位置被下载至其漫游伙伴,例如在在繁忙市区中的交通高峰期间。在该示例中,3GPP运营商A可与具有SSID1的WLAN AP的WLAN运营商#1和具有SSID2的WLAN AP的WLAN运营商#2有关系。ANDSF QoS策略可指定如果UE(例如,UE 200)在位置x并在时刻y和z之间,则UE应当优选具有SSID1的WLAN AP,但是对于其他位置或时间,UE应当优选具有SSID2的WLAN AP。然而,UE中的PLMN优先级列表可能使SSID2的优先级比SSID1的优先级高。使用上述ANDSF QoS策略,如果用户在时刻y和z之间在位置x处,则UE可选择ANDSF已优先化的具有SSID1的WLAN AP,而不是由PLMN优先级列表决定的具有SSID2的WLAN AP。
在315处,UE 200可然后从ANDSF服务器、L-ANDSF服务器215、或一些其他ANDSF服务器接收ANDSF QoS策略。在实施例中,UE 200可能在接收上述空中接口拥塞参数、回程拥塞参数、或WLAN位置参数中的一个或多个之前已接收ANDSF QoS策略。换句话说,UE 200可能在接收WLAN的任何信息或参数之前已被提供有ANDSF QoS策略。在其他实施例中,UE 200可接收以上WLAN参数中的一个或多个,然后从策略服务器请求ANDSF QoS策略。ANDSF QoS策略可建立由UE 200使用的标准以评估动态WLAN AP和网络,并由此ANDSF QoS策略可建立用于WLAN选择的基础。
在实施例中,ANDSF QoS策略可以是系统间移动策略(ISMP),该系统间移动策略可提供用于仅具有单个活动接入网络连接的UE 200的网络选择规则。例如,ISMP策略可适合于可仅连接至3GPP eNB 205或WLAN AP 210中的一个的UE 200。在其他实施例中,ANDSFQoS策略可以是系统间路由策略(ISRP),该系统间路由策略可提供用于具有一个以上活动接入网络连接的UE 200的网络选择规则。例如,ISRP策略可适合于可与3GPP eNB 205和WLAN AP 210两者耦合的UE 200。在其他实施例中,ANDSF QoS策略可以是一些其他形式的接入网络发现策略。在一些实施例中,ISRP、ISMP或接入网络发现策略中的一个或多个可类似于3GPP ISRP、ISMP或接入网络发现策略,诸如在2012年12月公开的3GPP技术规范24.312V11.5.0中所描述的3GPP ISRP、ISMP或接入网络发现策略。
在320处,UE 200可然后将所接收的ANDSF QoS策略与所接收的空中接口拥塞、回程拥塞、或WLAN位置参数中的一个或多个相比较。ANDSF QoS策略与一个或多个所接收的参数的比较可决定UE 200是否连接至WLAN AP 210。在一些实施例中,ANDSF QoS策略可仅包含单个参数,而在一些实施例中ANDSF QoS策略可包含多个参数。在一些实施例中,可在某一时间周期上考虑一个或多个参数。
至少部分地基于在320处的ANDSF QoS策略与所接收空中接口拥塞、回程拥塞、或WLAN位置参数中的一个或多个的比较,在325处,UE可将WLAN AP 210标识为优选的WLAN AP210。至少部分地基于将WLAN AP 210作为优选的WLAN AP 210的标识,在330处,UE可然后将接入请求传输至WLAN AP 210。
在一些实施例中,在325处,可将WLAN AP 210标识为对于特定类型的UE 200的业务(例如,数据业务)来说优选的WLAN AP 210。在其他实施例中,在325处,可将WLAN AP 210标识为对于UE 200的所有业务来说优选的WLAN AP 210。在一些实施例中,可基于ANDSFQoS策略存在一个以上优选的WLAN AP,在这种情况下,UE 200可基于随机选择、或一些附加ANDSF策略或度量与WLAN AP 200连接。在一些实施例中,在330处,UE 200可能已连接至WLAN AP 210并且正在改变连接的性质,例如通过将WLAN AP 210用于附加业务流,而在其他实施例中,在330处,例如在从睡眠模式唤醒或作为来自3GPP eNB 205的切换过程的一部分之后,UE 200可首先与WLAN AP 210连接。
作为一个实施例,ANDSF QoS可引导UE 200从可用WLAN网络中优选WLAN网络,该WLAN网络所具有的与WLAN AP相关联的UE的总数可小于定义的阈值(该阈值可以是绝对或相对值)总数量。在一些实施例中,数量可被认为是在持续时间上的例如总和、平均、或一些其他统计。作为另一示例,如果WLAN繁忙达小于指定的阈值(该阈值可以是绝对或相对值)和/或如果WLAN的上行链路或下行链路连接繁忙达小于指定的阈值(该阈值也可以是绝对或相对值),则ANDSF QoS策略可引导UE 200相比于UE 200的当前蜂窝网络优选某一WLAN。作为第三示例,如果WLAN网络具有在给定持续时间上大于指定的阈值(该阈值可以是绝对或相对值)的经由准入控制可用的剩余介质时间量,则ANDSF QoS策略可引导UE将其至少一部分业务(例如,其数据业务)从UE的当前蜂窝网络移动至WLAN网络。作为另一示例,ANDSFQoS策略可利用在310处接收的WLAN位置参数来确定优选的WLAN AP 210。例如,在一些位置中,SSID可用作指示对用户连接至WLAN AP 210进行收费的公共WLAN AP 210和可自由使用的WLAN AP 210的标准方式。因此,ANDSF QoS策略可由网络运营商使用以引导UE 200使用免费的WLAN AP 210。这些仅是ANDSF QoS策略的示例,并且可附加地或替代地使用可利用以上所描述的空中接口拥塞、回程拥塞、或WLAN位置参数中的一个或多个的其他ANDSF QoS策略。
在一些实施例中,可使用以下参数中的一个或多个来定义ANDSF QoS策略。
NumberSTAs:NumberSTAs参数可被用于ANDSF QoS策略中以标识与WLAN AP或WLANAP的网络连接UE的总数量的阈值或值。
MediumAvailTime:MediumAvailTime参数可被用于ANDSF QoS策略中以设置与经由一个或多个WLAN AP的明确准入控制可用的剩余介质时间量、或空中接口能力有关的阈值或值。
PercentageTimeAPBusy/Throughput:如上所述,在300处,UE 200可接收一个或多个空中拥塞参数,例如BBS负荷元素。PercentageTimeAPBusy/Throughput元素可被用于ANDSF QoS策略中以指定与空中拥塞参数的总值有关的阈值或值。
等待时间(Latency):等待时间元素可被用于ANDSF QoS策略中以指定与WLAN中的等待时间(时间延迟)有关的阈值或值。例如,如果WLAN AP 210的延时低于某一阈值,则UE200可连接至WLAN AP 210以用于诸如延迟敏感的游戏或流视频的某些应用。
响应性/到第一字节的时间(TTFB):Responsiveness/TTFB元素可被用于ANDSFQoS策略中以指定与WLAN的响应性有关的阈值或值。例如,TTFB可用于设置与WLAN中的网络服务器可如何快速地响应于用户请求相关的阈值。在一些实施例中,TTFB可被认为是在虚拟用户作出数据请求并作为响应接收第一块数据之间的持续时间。
回程带宽(Backhaul Bandwidth):回程带宽可被用于ANDSF QoS策略中以指定与WLAN的使用有关的阈值或值。例如,回程带宽可包括在某一时间周期上的上行链路或下行链路负荷、或上行链路或下行链路速度中的一个或多个,在一些实施例中,上行链路或下行链路速度可以千比特每秒或以上相对于ANQP WAN度量元素描述的其他度量测量。
QoS映射:QoS映射元素可类似于在2012年3月公开的IEEE 802.11-2012Wi-Fi标准中定义的QoS映射元素。具体而言,QoS映射元素可用于指定3GPP QoS标记如何被映射至Wi-Fi QoS标记。
地点信息(Venue Information):地点信息可由ANDSF QoS策略使用以标识地点组类型,诸如,WLAN是住宅、商业还是企业等。作为附加或替代,地点信息可用于指定地点类型,诸如地点是咖啡厅、学校、博物馆、医院还是机场等。作为附加或替代,地点信息可用于指定具体地点名称(诸如,“圣荷西机场”)或接入网络类型(诸如,接入网络是公共、专用、家庭还是受访等)。
在一些实施例中,这些参数中的一个或多个可被添加至ANDSF管理对象,诸如在2012年12月公开的3GPP技术规范24.312V11.5.0中描述的ANDSF管理对象。在实施例中,ANDSF QoS策略可包括以上所描述的ANDSF QoS策略参数中的一个或多个。例如,以下ANDSFQoS策略中的一个或多个可由网络运营商使用以指定UE 200的行为。
BSSLoad:ANDSF QoS BSSLoad策略可指定用于UE 200考虑用于选择的WLAN AP210的WLAN中的可接受BSS负荷。BSSLoad策略可包括NumberSTAs、MediumAvailTime、和/或PercentageTimeAPBusy/Throughput参数、或一些其他参数中的一个或多个。作为示例,Number STAs、MediumAvailTime、和/或PercentageTimeAPBusy/Throughput参数中的一个或多个可用于指定那些参数中的每一个的响应阈值。
等待时间(Latency):ANDSF QoS等待时间策略可用于指定用于UE200考虑连接至WLAN AP 210的WLAN中的可接受的等待时间量。在实施例中,ANDSF QoS等待时间策略可包括等待时间参数。作为示例,等待时间参数可用于定义WLAN中最大允许等待时间的阈值。
TTFB:ANDSF QoS TTFB策略可用于指定用于UE 200考虑连接至WLAN AP 210的WLAN中的可接受的TTFB水平。在实施例中,ANDSF QoS TTFB策略可包括响应性/TTFB参数。作为示例,TTFB参数可用于定义WLAN中最大允许响应性/TTFB的阈值。
DL带宽:ANDSF QoS DL带宽策略可用于指定用于UE 200考虑连接至WLAN AP 210的WLAN中的最小可接受的DL带宽。在实施例中,DL带宽策略可包括与WLAN AP 210相关联的下行链路速度、回程负荷、和/或UE的数量中的一个或多个。在实施例中,ANDSF QoS DL带宽策略的参数可包括以上所讨论的NumberSTAs和回程带宽ANDSF QoS策略参数中的一个或多个。
UL带宽:ANDSF QoS DL带宽策略可用于指定用于UE 200考虑连接至WLAN AP 210的WLAN中的最小可接受的UL带宽。在实施例中,UL带宽策略可包括与WLAN AP 210相关联的上行链路速度、回程负荷、和/或UE的数量中的一个或多个。在实施例中,ANDSF QoS UL带宽策略的参数可包括以上所讨论的NumberSTAs和回程带宽ANDSF QoS策略参数中的一个或多个。
RoutingCriteria:ANDSF QOS RoutingCriteria策略可与一个或多个其他ANDSFQoS策略结合使用以指定其他ANDSF QoS策略指定家庭或漫游网络。
如上所述,这些仅是ANDSF QoS策略的示例。在其他实施例中,其他ANDSF QoS策略可结合以上示例中的一个或多个,或添加附加元素。
因为ANDSF QoS策略可以基于诸如空中接口拥塞或回程拥塞的动态元素,所以在一些实施例中,可能期望ANDSF QoS策略基于当前WLAN条件被更新。例如,在某些条件下,ANDSF服务器220或L-ANDSF服务器215可监测当前网络条件并然后将更新的ANDSF QoS策略传输至UE 200。例如,如果所有3GPP和/或WLAN网络都变得非常繁忙(诸如,在机场处的UE的突然涌入的情况下),则可能需要调节与WLAN的负荷有关的ANDSF QoS策略。
图4描绘了例如由ANDSF服务器220或L-ANDSF服务器215使用的以监测网络条件并传输更新的ANDSF QoS策略的过程的示例。首先,在400处,可由ANDSF服务器220或L-ANDSF服务器215接收一个或多个空中接口拥塞参数(诸如,以上关于300描述的空中接口拥塞参数)。类似地,在405处,可由ANDSF服务器220或L-ANDSF服务器215接收一个或多个回程拥塞参数(诸如,以上关于305描述的回程拥塞参数)。类似地,在410处,ANDSF服务器220或L-ANDSF服务器215可接收WLAN网络位置信息。在一些实施例中,可接收少于全部的空中接口拥塞参数、回程拥塞参数、和/或WLAN网络位置信息,而在其他实施例中,ANDSF服务器220或L-ANDSF服务器215可接收以上描述的参数的全部三个。
在400、405、和/或410处接收参数之后,在415处,ANDSF服务器220和/或L-ANDSF服务器215可构建ANDSF QoS策略,诸如,以上所描述的ANDSF QoS策略。替代地,ANDSF QoS策略可由运营商指定并且被传递至L-ANDSF服务器215或ANDSF服务器220中的一个。在一些实施例中,在415处构建QoS策略可包括改变现有的ANDSF QoS策略,例如,与连接至WLAN AP210的UE的数量有关的ANDSF QoS策略。在其他实施例中,ANDSF QoS策略可被构建为新的ANDSF QoS策略。在一些实施例中,可从统计和策略230的数据库、统计和管理235的网络接入的数据库、和/或3G/4G网络240的动态负荷的数据库取回数据或统计,并在ANDSF QoS策略的构建期间考虑。
在415处构建ANDSF QoS策略之后,在420处,可将ANDSF QoS策略传输至UE 200。在一些实施例中,在420处的传输可以是来自UE 200的请求的结果。在其他实施例中,在420处的传输可以是“推送”动作的结果,其中该策略可被推送至UE 200。在实施例中,可经由传输协议(诸如,SMS、SOAP-XML、OMA-DM、或其他传输协议)将ANDSF QoS策略传输至UE 200。
可在使用任何合适硬件和/或软件按需配置的系统中实现本公开的实施例。图5示意性地示出了可用于实现本文所描述的各个实施例的示例系统500。对于一个实施例,图5示出示例系统500,其具有一个或多个处理器505、耦合至该处理器505中的至少一个的系统控制模块510、耦合至该系统控制模块510的系统存储器515、耦合至该系统控制模块510的非易失性存储器(NVM)/存储520、以及耦合至该系统控制模块510的一个或多个通信接口525。
在一些实施例中,系统500可能能够起本文所描述的UE 110的作用。在其他实施例中,系统500可能能够起图1中所示的实施例中所描绘的或其他所描述的实施例中的任何一个中所描绘的基站105的作用。在其他实施例中,系统500可能够起ANDSF服务器220或L-ANDSF服务器215的作用。在一些实施例中,系统500可包括具有指令的一个或多个计算机可读介质(例如,系统存储器或NVM/存储520)和一个或多个处理器(例如,处理器505),该一个或多个处理器与一个或多个计算机可读介质耦合并被配置成执行指令来实现模块以执行本文所描述的动作。
对于一个实施例的系统控制模块510可包括任何合适的接口控制器,该接口控制器用于提供去往处理器505和/或去往与系统控制模块510进行通信的任何合适的设备或组件中的至少一个的任何合适的接口。
系统控制模块510可包括存储器控制器模块530以提供到系统存储器515的接口。存储器控制器模块530可以是硬件模块、软件模块、和/或固件模块。
例如,可使用系统存储器515来为系统500装载和存储数据和/或指令。例如,对于一个实施例的系统515可包括诸如合适的DRAM之类的任何合适的易失性存储器。在一些实施例中,系统存储器515可包括双倍数据率类型四同步动态随机存取存储器(DDR4SDRAM)。
对于一个实施例的系统控制模块510可包括用于提供到NVM/存储520和通信接口525的接口的一个或多个输入/输出(I/O)控制器。
NVM/存储520可用于例如存储数据和/或指令。NVM/存储520可包括任何合适的非易失性存储器,例如,诸如闪存;并且/或者可包括任何合适的非易失性存储设备,例如,诸如一个或多个硬盘驱动器(HDD)、一个或多个紧致盘(CD)驱动器、和/或一个或多个数字多功能盘(DVD)驱动器。
NVM/存储520可包括物理上作为系统500可被安装于其上的设备的部分的存储资源,或者NVM/存储520可由该设备访问,但不一定是该设备的一部分。例如,可在网络上经由通信接口520来访问NVM/存储525。
通信接口525可为系统500提供用于在一个或多个网络上进行通信和/或与任何其他合适的设备进行通信的接口。系统500可根据一项或多项无线网络标准和/或协议中的任何标准或协议无线地与无线网络的一个或多个组件进行通信。
对于一个实施例,处理器505中的至少一个可与系统控制模块510(例如,存储器控制器模块530)的一个或多个控制器的逻辑封装在一起。对于一个实施例,可将处理器505中的至少一个与系统控制逻辑510的一个或多个控制器的逻辑封装在一起以形成系统级封装(SiP)。对于一个实施例,可将处理器505中的至少一个与系统控制逻辑510的一个或多个控制器的逻辑集成在同一管芯上。对于一个实施例,可将处理器505中的至少一个与系统控制逻辑510的一个或多个控制器的逻辑集成在同一管芯上以形成片上系统(SoC)。
在各实施例中,系统500可以是但不限于,服务器、工作站、台式计算设备或移动计算设备(例如,膝上型计算设备、手持计算设备、平板、上网本、智能电话、游戏控制台等)。在各实施例中,系统500可具有更多或更少的组件和/或不同的架构。例如,在一些实施例中,系统500包括相机、键盘、液晶显示(LCD)屏(包括触屏显示器)、非易失性存储器端口、多根天线、图形芯片、专用集成电路(ASIC)和扬声器中的一个或多个。
本公开的各个实施例被描述为包括,但不限于:
示例1可以是用户设备(UE)以标识接入点参数,UE包括接收器,该接收器用于接收无线局域网(WLAN)中的接入点的空中接口拥塞参数和接收接入点的回程拥塞参数。UE可进一步包括网络选择模块,该网络选择模块与接收器耦合以至少部分地基于空中接口拥塞参数或回程拥塞参数与接入网络发现和选择功能(ANDSF)服务质量(QoS)策略的比较来标识接入点是优选的接入点;以及发射器,该发射器与网络选择模块耦合,以至少部分地基于将接入点作为优选的接入点的识别将接入请求传输至该接入点。
示例2可包括示例1的主题并进一步指定接收器进一步从ANDSF服务器接收ANDSFQoS策略。
示例3可包括示例2的主题,并且进一步指定ANDSF服务器是与包括多个UE的网络中的UE的子集通信耦合的本地ANDSF服务器(L-ANDSF)。
示例4可包括示例1-3中的任一个的主题,并且进一步指定空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集(BSS)负荷参数。
示例5可包括示例1-3的任一个的主题,并且进一步指定回程拥塞参数是包括无线接入网络(WAN)回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议(ANQP)参数。
示例6可包括示例1-3的任一个的主题,并且进一步指定ANDSF QoS策略包括基本服务集(BSS)负荷策略、等待时间策略、到第一字节的时间(TTFB)策略、下行链路带宽策略、上行链路带宽的策略、或位置策略。
示例7可包括示例1-3的任一个的主题,并且进一步指定网络选择模块进一步至少部分地基于接入点的名称或位置来标识接入点是优选的接入点。
示例8可包括示例1-3的任一个的主题,并且进一步包括与UE耦合的电源。
示例9可包括一个或多个计算机可读介质,该一个或多个计算机可读介质包括用于标识接入点参数的指令,指令在经过用户设备(UE)执行之后用于使UE接收无线局域网(WLAN)中的接入点的空中接口拥塞参数或接入点的回程拥塞参数;接收接入网络发现和选择功能(ANDSF)服务质量(QoS)策略;将空中接口拥塞参数或回程拥塞参数与ANDSF QoS策略相比较;并至少部分地基于空中接口拥塞参数或回程拥塞参数与ANDSF QoS策略的比较将接入请求传输至接入点。
示例10可包括示例9的主题,并进一步指定指令在经过UE执行之后进一步用于使UE从ANDSF服务器接收ANDSF QoS策略。
示例11可包括示例10的主题,并且进一步指定UE是包括多个UE的网络中的UE,并且其中ANDSF服务器是与网络中的UE的子集通信耦合的本地ANDSF服务器(L-ANDSF)。
示例12可包括示例9-11中的任一个的主题,并且进一步指定空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集(BSS)负荷参数。
示例13可包括示例9-11的任一个的主题,并且进一步指定回程拥塞参数是包括无线接入网络(WAN)回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议(ANQP)参数。
示例14可包括示例9-11的任一个的主题,并且进一步指定ANDSF QoS策略包括基本服务集(BSS)负荷策略、等待时间策略、到第一字节的时间(TTFB)策略、下行链路带宽策略、上行链路带宽的策略、或位置策略。
示例15可包括示例9-11的任一个的主题,并且进一步指定指令在经过UE执行之后进一步用于使UE至少部分地基于接入点的名称或位置来标识接入点是优选的接入点。
示例16可以是用于标识接入点参数的方法,该方法包括在UE处接收无线局域网(WLAN)中的接入点的空中接口拥塞参数或接入点的回程拥塞参数;在UE处接收接入网络发现和选择功能(ANDSF)服务质量(QoS)策略;在UE处将空中接口拥塞参数或回程拥塞参数与ANDSF QoS策略相比较;并在UE处至少部分地基于空中接口拥塞参数或回程拥塞参数与ANDSF QoS策略的比较将接入请求传输至接入点。
示例17可包括示例16的主题并进一步包括在UE处从ANDSF服务器接收ANDSF QoS策略。
示例18可包括示例17的主题,并且进一步指定UE是包括多个UE的网络中的UE,并且其中ANDSF服务器是与网络中的UE的子集通信耦合的本地ANDSF服务器(L-ANDSF)。
示例19可包括示例16-18中的任一个的主题,并且进一步指定空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集(BSS)负荷参数。
示例20可包括示例16-18的任一个的主题,并且进一步指定回程拥塞参数是包括无线接入网络(WAN)回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议(ANQP)参数。
示例21可包括示例16-18的任一个的主题,并且进一步指定ANDSF QoS策略包括基本服务集(BSS)负荷策略、等待时间策略、到第一字节的时间(TTFB)策略、下行链路带宽策略、上行链路带宽的策略、或位置策略。
示例22可包括示例16-18的任一个的主题,并且进一步包括在UE处至少部分地基于接入点的名称或位置标识接入点是优选的接入点。
示例23可以是用户设备(UE),该用户设备包括用于接收无线局域网(WLAN)中的接入点的空中接口拥塞参数或接入点的回程拥塞参数的装置;用于接收接入网络发现和选择功能(ANDSF)服务质量(QoS)策略的装置;用于将空中接口拥塞参数或回程拥塞参数与ANDSF QoS策略相比较的装置;以及用于至少部分地基于空中接口拥塞参数或回程拥塞参数与ANDSF QoS策略的比较将接入请求传输至接入点的装置。
示例24可包括示例23的主题并进一步包括用于从ANDSF服务器接收ANDSF QoS策略的装置。
示例25可包括示例24的主题,并且进一步指定UE是包括多个UE的网络中的UE,并且其中ANDSF服务器是与网络中的UE的子集通信耦合的本地ANDSF服务器(L-ANDSF)。
示例26可包括示例23-25中的任一个的主题,并且进一步指定空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集(BSS)负荷参数。
示例27可包括示例23-25的任一个的主题,并且进一步指定回程拥塞参数是包括无线接入网络(WAN)回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议(ANQP)参数。
示例28可包括示例23-25的任一个的主题,并且进一步指定ANDSF QoS策略包括基本服务集(BSS)负荷策略、等待时间策略、到第一字节的时间(TTFB)策略、下行链路带宽策略、上行链路带宽的策略、或位置策略。
示例29可包括示例23-25的任一个的主题,并且进一步包括用于至少部分地基于接入点的名称或位置标识接入点是优选的接入点。
示例30可以是用于传输ANDSF服务质量(QoS)策略的接入网络发现和选择功能(ANDSF)服务器,该ANDSF服务器包括接收器,该接收器用于接收无线局域网(WLAN)中的接入点的空中接口拥塞参数和接入点的回程拥塞参数;ANDSF策略模块,该ANDSF策略模块用于至少部分地基于空中接口拥塞参数或回程拥塞参数确定ANDSF QoS策略以将接入点标识为优选的接入点;以及发射器,该发射器用于将ANDSF QoS策略传输至用户设备(UE)。
示例31可包括示例30的主题,并且进一步指定ANDSF服务器是包括多个UE的网络中的本地ANDSF服务器(L-ANDSF),该L-ANDSF服务器与少于全部多个UE通信耦合。
示例32可包括示例30或31的主题,并且进一步指定空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集(BSS)负荷参数。
示例33可包括示例30或31的主题,并且进一步指定回程拥塞参数是包括无线接入网络(WAN)回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议(ANQP)参数。
示例34可包括示例30或31的主题,并且进一步指定ANDSF QoS策略包括基本服务集(BSS)负荷策略、等待时间策略、到第一字节的时间(TTFB)策略、下行链路带宽策略、上行链路带宽的策略、或位置策略。
示例35可包括示例30或31的主题,并且进一步指定发射器进一步经由短消息服务(SMS)、网际协议(IP)级协议、或开放移动联盟设备管理(OMA-DM))将ANDSF QoS策略传输至UE。
示例36可包括示例30或31的主题,并且进一步指定ANDSF服务器是受访网络的服务器,该受访网络与UE的归属网络不同。
示例37可以是传输接入网络发现和选择功能(ANDSF)服务质量(QoS)策略的方法,该方法包括在ANDSF服务器处接收无线局域网(WLAN)中的接入点的空中接口拥塞参数和接入点的回程拥塞参数;在ANDSF服务器处至少部分地基于空中接口拥塞参数或回程拥塞参数确定ANDSF QoS策略以将接入点标识为优选的接入点;并且在ANDSF服务器处将ANDSFQoS策略传输至用户设备(UE)。
示例38可包括示例37的主题,并且进一步指定ANDSF服务器是包括多个UE的网络中的本地ANDSF服务器(L-ANDSF),该L-ANDSF服务器与少于全部多个UE通信耦合。
示例39可包括示例37或38的主题,并且进一步指定空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集(BSS)负荷参数。
示例40可包括示例37或38的主题,并且进一步指定回程拥塞参数是包括无线接入网络(WAN)回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议(ANQP)参数。
示例41可包括示例37或38的主题,并且进一步指定ANDSF QoS策略包括基本服务集(BSS)负荷策略、等待时间策略、到第一字节的时间(TTFB)策略、下行链路带宽策略、上行链路带宽的策略、或位置策略。
示例42可包括示例37或38的主题,并且进一步包括在ANDSF服务器处经由短消息服务(SMS)、网际协议(IP)级协议、或开放移动联盟设备管理(OMA-DM))将ANDSF QoS策略传输至UE。
示例43可包括示例37或38的主题,并且进一步指定ANDSF服务器是受访网络的服务器,该受访网络与UE的归属网络不同。
示例44可以是包括用于传输接入网络发现和选择功能(ANDSF)服务质量(QoS)策略的指令的一个或多个计算机可读介质,当由ANDSF服务器执行指令时,该指令使ANDSF服务器接收无线局域网(WLAN)中的接入点的空中接口拥塞参数和接入点的回程拥塞参数;至少部分地基于空中接口拥塞参数或回程拥塞参数确定ANDSF QoS策略以将接入点标识为优选的接入点;并且将ANDSF QoS策略传输至用户设备(UE)。
示例45可包括示例44的主题,并且进一步指定ANDSF服务器是包括多个UE的网络中的本地ANDSF服务器(L-ANDSF),该L-ANDSF服务器与少于全部多个UE的通信耦合。
示例46可包括示例44或45的主题,并且进一步指定空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集(BSS)负荷参数。
示例47可包括示例44或45的主题,并且进一步指定回程拥塞参数是包括无线接入网络(WAN)回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议(ANQP)参数。
示例48可包括示例44或45的主题,并且进一步指定ANDSF QoS策略包括基本服务集(BSS)负荷策略、等待时间策略、到第一字节的时间(TTFB)策略、下行链路带宽策略、上行链路带宽的策略、或位置策略。
示例49可包括示例44或45的主题,并且进一步指定在由ANDSF服务器执行指令时,该指令进一步使ANDSF服务器经由短消息服务(SMS)、网际协议(IP)级协议、或开放移动联盟设备管理(OMA-DM))将ANDSF QoS策略传输至UE。
示例50可包括示例44或45的主题,并且进一步指定ANDSF服务器是受访网络的服务器,该受访网络与UE的归属网络不同。
示例51可以是用于传输ANDSF服务质量(QoS)策略的接入网络发现和选择功能(ANDSF)服务器,该ANDSF服务器包括用于接收无线局域网(WLAN)中的接入点的空中接口拥塞参数和接入点的回程拥塞参数的装置;用于至少部分地基于空中接口拥塞参数或回程拥塞参数确定ANDSF QoS策略以将接入点标识为优选的接入点的装置;以及用于将ANDSF QoS策略传输至用户设备(UE)的装置。
示例52可包括示例51的主题,并且进一步指定ANDSF服务器是包括多个UE的网络中的本地ANDSF服务器(L-ANDSF),该L-ANDSF服务器与少于全部多个UE的通信耦合。
示例53可包括示例51或52的主题,并且进一步指定空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集(BSS)负荷参数。
示例54可包括示例51或52的主题,并且进一步指定回程拥塞参数是包括无线接入网络(WAN)回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议(ANQP)参数。
示例55可包括示例51或52的主题,并且进一步指定ANDSF QoS策略包括基本服务集(BSS)负荷策略、等待时间策略、到第一字节的时间(TTFB)策略、下行链路带宽策略、上行链路带宽的策略、或位置策略。
示例56可包括示例51或52的主题,并且进一步包括用于经由短消息服务(SMS)、网际协议(IP)级协议、或开放移动联盟设备管理(OMA-DM))将ANDSF QoS策略传输至UE的装置。
示例57可包括示例51或52的主题,并且进一步指定ANDSF服务器是受访网络的服务器,该受访网络与UE的归属网络不同。
虽然出于描述目的已在本文中说明和描述了某些实施例,但是本申请旨在包含本文所讨论的实施例的任何改编或变型。因此,明确地旨在仅由权利要求来限定本文所描述的实施例。
其中本公开列举“一”或“第一”元素或其等效元件,诸如本公开包括一个或多个这样的元件,既不要求也不排除两个或多个这种元件。此外,用于标识元件的序数指示符(例如,第一,第二或第三)用于在元件之间进行区分,并且不指示或暗示所需或有限数量的这样的元件,它们也不会指示这样的元件的特定位置或顺序,除非另有特别说明。
Claims (33)
1.一种用于标识接入点参数的用户设备UE,所述UE包括:
接收器,所述接收器用于:
接收无线局域网WLAN中的接入点的空中接口拥塞参数;以及
接收所述接入点的回程拥塞参数;
网络选择模块,所述网络选择模块与所述接收器耦合以至少部分地基于所述空中接口拥塞参数或所述回程拥塞参数与接入网络发现和选择功能ANDSF服务质量QoS策略的比较来标识所述接入点是优选的接入点;以及
发射器,所述发射器与所述网络选择模块耦合,以至少部分地基于将所述接入点作为优选的接入点的识别来将接入请求传输至所述接入点。
2.如权利要求1所述的UE,其特征在于,所述接收器进一步从ANDSF服务器接收所述ANDSF QoS策略。
3.如权利要求2所述的UE,其特征在于,所述ANDSF服务器是与包括多个UE的网络中的UE的子集通信耦合的本地ANDSF服务器L-ANDSF。
4.如权利要求1-3中任一项所述的UE,其特征在于,所述空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集BSS负荷参数。
5.如权利要求1-3中的任一项所述的UE,其特征在于,所述回程拥塞参数是包括无线接入网络WAN回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议ANQP参数。
6.如权利要求1-3中的任一项所述的UE,其特征在于,所述ANDSF QoS策略包括基本服务集BSS负荷策略、等待时间策略、到第一字节的时间TTFB策略、下行链路带宽策略、上行链路带宽策略、或位置策略。
7.如权利要求1-3中的任一项所述的UE,其特征在于,所述网络选择模块进一步至少部分地基于所述接入点的名称或位置来标识所述接入点是优选的接入点。
8.如权利要求1-3中的任一项所述的UE,其特征在于,进一步包括与所述UE耦合的电源。
9.一种用户设备UE,包括:
用于接收无线局域网WLAN中的接入点的空中接口拥塞参数或所述接入点的回程拥塞参数的装置;
用于接收接入网络发现和选择功能ANDSF服务质量QoS策略的装置;
用于将所述空中接口拥塞参数或所述回程拥塞参数与ANDSF QoS策略相比较的装置;
用于至少部分地基于所述空中接口拥塞参数或所述回程拥塞参数与所述ANDSF QoS策略的比较来标识所述接入点是优选的接入点的装置;以及
用于至少部分地基于将所述接入点作为优选的接入点的识别来将接入请求传输至所述接入点的装置。
10.如权利要求9所述的UE,其特征在于,进一步包括用于使所述UE从ANDSF服务器接收所述ANDSF QoS策略的装置。
11.如权利要求10所述的UE,其特征在于,所述UE是包括多个UE的网络中的UE,并且其中ANDSF服务器是与所述网络中的UE的子集通信耦合的本地ANDSF服务器L-ANDSF。
12.如权利要求9-11中的任一项所述的UE,其特征在于,所述空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集BSS负荷参数。
13.如权利要求9-11中的任一项所述的UE,其特征在于,所述回程拥塞参数是包括无线接入网络WAN回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议ANQP参数。
14.如权利要求9-11中的任一项所述的UE,其特征在于,所述ANDSF QoS策略包括基本服务集BSS负荷策略、等待时间策略、到第一字节的时间TTFB策略、下行链路带宽策略、上行链路带宽策略、或位置策略。
15.如权利要求9-11中的任一项所述的UE,其特征在于,进一步包括用于使所述UE至少部分地基于所述接入点的名称或位置来标识所述接入点是优选的接入点的装置。
16.一种用于传输ANDSF服务质量QoS策略的接入网络发现和选择功能ANDSF服务器,所述ANDSF服务器包括:
接收器,所述接收器用于接收无线局域网WLAN中的接入点的空中接口拥塞参数和所述接入点的回程拥塞参数;
ANDSF策略模块,所述ANDSF策略模块用于至少部分地基于所述空中接口拥塞参数或所述回程拥塞参数来确定ANDSF QoS策略以将所述接入点标识为优选的接入点;以及
发射器,所述发射器用于将所述ANDSF QoS策略传输至用户设备UE。
17.如权利要求16所述的ANDSF服务器,其特征在于,所述ANDSF服务器是包括多个UE的网络中的本地ANDSFL-ANDSF服务器,所述L-ANDSF服务器与少于全部所述多个UE通信耦合。
18.如权利要求16或17所述的ANDSF服务器,其特征在于,所述空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集BSS负荷参数。
19.如权利要求16或17所述的ANDSF服务器,其特征在于,所述回程拥塞参数是包括无线接入网络WAN回程链路的下行链路速度、所述WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或所述WAN连接的上行链路负荷的接入网络查询协议ANQP参数。
20.如权利要求16或17所述的ANDSF服务器,其特征在于,所述ANDSF QoS策略包括基本服务集BSS负荷策略、等待时间策略、到第一字节的时间TTFB策略、下行链路带宽策略、上行链路带宽策略、或位置策略。
21.如权利要求16或17所述的ANDSF服务器,其特征在于,所述发射器进一步经由短消息服务SMS、网际协议IP级协议、或开放移动联盟设备管理OMA-DM将所述ANDSF QoS策略传输至所述UE。
22.如权利要求16或17所述的ANDSF服务器,其特征在于,所述ANDSF服务器是受访网络的服务器,所述受访网络与所述UE的归属网络不同。
23.一种具有指令的计算机可读存储介质,所述指令在被执行时使机器用于:
接收无线局域网WLAN中的接入点的空中接口拥塞参数或所述接入点的回程拥塞参数;
接收接入网络发现和选择功能ANDSF服务质量QoS策略;
将所述空中接口拥塞参数或所述回程拥塞参数与ANDSF QoS策略相比较;
至少部分地基于所述空中接口拥塞参数或所述回程拥塞参数与所述ANDSF QoS策略的比较来标识所述接入点是优选的接入点;以及
至少部分地基于将所述接入点作为优选的接入点的识别来将接入请求传输至所述接入点。
24.如权利要求23所述的计算机可读存储介质,其特征在于,所述指令在被执行时进一步使机器用于:从ANDSF服务器接收所述ANDSF QoS策略。
25.如权利要求23-24中的任一项所述的计算机可读存储介质,其特征在于,所述空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集BSS负荷参数。
26.如权利要求23-24中的任一项所述的计算机可读存储介质,其特征在于,所述回程拥塞参数是包括无线接入网络WAN回程链路的下行链路速度、WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或WAN连接的上行链路负荷的接入网络查询协议ANQP参数。
27.如权利要求23-24中的任一项所述的计算机可读存储介质,其特征在于,所述ANDSFQoS策略包括基本服务集BSS负荷策略、等待时间策略、到第一字节的时间TTFB策略、下行链路带宽策略、上行链路带宽策略、或位置策略。
28.如权利要求23-24中的任一项所述的计算机可读存储介质,其特征在于,所述指令在被执行时进一步使机器用于:至少部分地基于所述接入点的名称或位置来标识所述接入点是优选的接入点的装置。
29.一种具有指令的计算机可读存储介质,所述指令在被执行时使机器用于:
接收无线局域网WLAN中的接入点的空中接口拥塞参数和所述接入点的回程拥塞参数;
至少部分地基于所述空中接口拥塞参数或所述回程拥塞参数来确定ANDSF QoS策略以将所述接入点标识为优选的接入点;以及
将所述ANDSF QoS策略传输至用户设备UE。
30.如权利要求29所述的计算机可读存储介质,其特征在于,所述空中接口拥塞参数是包括站计数、信道利用率、或可用准入容量的基本服务集BSS负荷参数。
31.如权利要求29所述的计算机可读存储介质,其特征在于,所述回程拥塞参数是包括无线接入网络WAN回程链路的下行链路速度、所述WAN回程链路的上行链路速度、WAN连接的下行链路负荷、或所述WAN连接的上行链路负荷的接入网络查询协议ANQP参数。
32.如权利要求29所述的计算机可读存储介质,其特征在于,所述ANDSF QoS策略包括基本服务集BSS负荷策略、等待时间策略、到第一字节的时间TTFB策略、下行链路带宽策略、上行链路带宽策略、或位置策略。
33.如权利要求29所述的计算机可读存储介质,其特征在于,所述指令在被执行时进一步使机器用于:经由短消息服务SMS、网际协议IP级协议、或开放移动联盟设备管理OMA-DM将所述ANDSF QoS策略传输至所述UE。
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