CN104604299B - 用于wlan和plmn选择的andsf策略 - Google Patents
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- CN104604299B CN104604299B CN201380045630.4A CN201380045630A CN104604299B CN 104604299 B CN104604299 B CN 104604299B CN 201380045630 A CN201380045630 A CN 201380045630A CN 104604299 B CN104604299 B CN 104604299B
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- andsf
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- GEIYZNFNTVEVJJ-KQYNXXCUSA-N 9-[(2r,3r,4s,5r)-5-(dihydroxyphosphinothioyloxymethyl)-3,4-dihydroxyoxolan-2-yl]-3h-purin-6-one Chemical compound O[C@@H]1[C@H](O)[C@@H](COP(O)(O)=S)O[C@H]1N1C(NC=NC2=O)=C2N=C1 GEIYZNFNTVEVJJ-KQYNXXCUSA-N 0.000 claims description 13
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Abstract
在实施例中,用户设备(UE)可能能够标识一个或多个接入网络发现和选择功能(ANDSF)策略,UE可使用该一个或多个接入网络发现和选择功能(ANDSF)策略来选择UE应当连接至的无线局域网(WLAN)和/或WLAN接入点(AP)。UE可然后能够使用所标识的ANDSF策略或多个策略来在通过UE选择UE应当连接至的WLAN公共陆地移动网(PLMN)之前选择WLAN和/或WLAN AP。
Description
相关申请的交叉引用
本申请要求2013年5月15日提交的题为“ANDSF POLICIES FOR WLAN AND PLMNSELECTION(用于WLAN和PLMN选择的ANDSF策略)”专利申请No.13/895,261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(先进的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。
技术领域
实施例涉及无线网络,并且更具体地,涉及用于利用这种无线网络中的接入网络发现和选择功能策略的装置、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。除非在本文中另外指出,本部分中所描述的方法不是本公开的权利要求的现有技术,也不通过被包括在本部分内的方式被承认是现有技术。
无线局域网(WLAN)公共陆地移动网(PLMN)选择被引入3GPP规范的版本6中以用于在第三代合作伙伴计划(3GPP)和WLAN系统之间互通作为在诸如TS 22.234、TS 23.234、TS24.234之类的3GPP技术规范(TS)中规定的互通WLAN(i-WLAN)架构的一部分。在这些技术规范中,可指导用户设备(UE)选择可向WLAN提供服务的服务提供商或PLMN。这些服务可包括诸如到因特网的基本连接之类的服务,或诸如网际协议(IP)多媒体系统服务(IMS)、IP语音(VoIP)、视频点播(VOD)、媒体/内容流等的其他服务。在3GPP规范的版本8中,引入可用于修改i-WLAN架构中指定的WLAN的PLMN选择的接入网络发现和选择功能(ANDSF)策略。
当前,为了允许由版本6和版本8引入的概念共存,可首先发生PLMN选择,然后可发生ANDSF策略的应用来选择i-WLAN架构中的WLAN或WLAN AP。然而,服务提供商/PLMN可仅连接至单个WLAN网络。因此,通过选择服务提供商/PLMN,可默认选择可例如由一个或多个服务集标识符(SSID)和/或WLAN AP标识的WLAN网络。
附图简述
通过下列具体实施方式和所附附图,可容易地理解实施例。为了便于描述,相同的参考标号指示相同的元件。在所附附图的图中以示例方式而不以限制方式说明实施例。
图1示意性地示出根据各实施例的包括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包括多个PLMN的网络拓扑的示例。
图3示出了根据各个实施例的用于选择WLAN网络的示例过程。
图4示出了根据各个实施例的构建ANDSF策略的示例。
图5示意性地示出可用于实施本文所描述的各实施例的示例系统。
具体实施方式
装置、方法和存储介质在本文中被描述用于在基于UE应当连接至的i-WLAN架构选择WLAN的期间允许UE考虑ANDSF策略。在实施例中,UE可能能够在WLAN的选择期间在不首先选择UE应当连接至的PLMN的情况下考虑ANDSF策略。在一些实施例中,UE可至少部分地基于ANDSF策略首先使用i-WLAN架构连接至WLAN网络,然后至少部分地基于所选择的WLAN网络选择UE应当连接至的PLMN。在其他实施例中,在选择WLAN网络之后,UE可不选择PLMN。
在以下具体实施方式中,参考了在此作为本说明书一部分的附图,在通篇中,相同的参考标号指示相同的部分,并且在具体实施方式中通过图示方式示出可实施的实施例。应当理解,也可利用其他实施例,并且也可对其他实施例作出结构或逻辑的改变而不背离本公开的范围。因此,下列具体实施方式不应当被认为是限制意义上的,并且实施例的范围由所附权利要求及其等效技术方案来定义。
各种操作能以最有助于理解所要求的主题的方式被描述成多个分立的动作或被描述成依次的操作。然而,所述描述的次序不应当被理解成暗示这些操作是必然地取决于次序的。尤其是,这些操作可不以所陈述的次序被执行。所描述的操作能以与所描述的实施例不同的次序被执行。可执行各种附加操作,并且/或者所描述的操作在附加实施例中可省略。
为本公开之目的,短语“A和/或B”意思是(A)、(B)或(A和B)。为本公开之目的,短语“A、B和/或C”意思是(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“在一实施例中”或“在诸实施例中”,其中每个可指相同或不同实施例中的一个或多个。此外,就本公开的实施例而言所使用的术语“包含”、“包括”、“具有”等是同义的。
图1示意性地示出根据各个实施例的无线通信网络100。无线通信网络100(下文中称为“网络100”)可以是蜂窝网络,例如,诸如演进型通用陆地无线电接入网(E-UTRAN)之类的3GPP长期演进(LTE)网络。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可包括基础设施节点105,例如,配置成与UE 110无线通信的增强的节点B(eNB)。在实施例中,基础设施节点105可以是属于按照i-WLAN架构与3GPP系统互通的WLAN网络的WLAN AP。如本文中所所使用的,除非另有说明,WLAN和WLAN AP可使用或基于上述i-WLAN架构。
如图1中所示,UE 110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,基础设施节点105)无线通信。天线125可由功率放大器130供电,该功率放大器130可以是如图1中所示的收发机模块120的组件,或者可以是UE 110的单独组件。在一个实施例中,功率放大器130为天线125上的所有传输提供功率。在其他实施例中,在UE 110上可以有多个功率放大器、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可被配置成选择UE 110应当连接至的一个或多个WLAN或WLAN AP。如果UE 110具有同时选择多个WLAN和/或WLAN AP的选项,则网络选择模块155可被配置成确定UE110应当连接WLAN和/或WLAN AP中的哪些。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。
而且,如图1所示,UE 110可包括如图1所示的通信模块160。在一些实施例中,通信模块160可以是收发机模块120的部分,而在其他实施例中,通信模块160可与收发机模块120分离。在实施例中,通信模块160可与网络选择模块155耦合,并且配置成使天线120传输或接收例如去往或来自基础设施节点105的无线信号。
基础设施节点105可包括与基础设施节点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。基础设施节点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为天线140上的所有传输提供功率。在其他实施例中,基础设施节点105上可能存在多个功率放大器、多个天线、或以上两者。
图2示出了网络拓扑的示例。在实施例中,可与以上描述的UE 100类似的UE 200在两个单独的PLMN——由UE的归属运营商210操作的归属PLMN(HPLMN)205和由访问运营商220操作的访问PLMN(VPLMN)215——的范围内。在实施例中,归属运营商210和/或访问运营商220可以是诸如电信或蜂窝公司之类的实体、诸如咖啡商店之类的商家、或一些其他类型的服务提供商或网络运营商。在实施例中,归属运营商210可以是UE 200与其具有订阅或其他类型的业务关系的实体。在实施例中,HPLMN205或归属运营商210可向UE 200提供可允许UE按照i-WLAN架构连接至HPLMN 205或由HPLMN操作的网络(诸如,WLAN网络)的证书。相比之下,访问运营商220可以是UE 200不与其具有订阅或或业务关系或证书的运营商。然而,UE 200可能能够基于由HPLMN 205提供的证书连接至HPLMN 205或VPLMN 215。
当连接至HPLMN 205时,UE 200可以说是在其“归属”网络上。当连接至VPLMN 215时,UE 200可以说是在其“漫游”或“访问”网络上。在一些实施例中,归属运营商210可具有与访问运营商220的协议或合同。例如,在一些实施例中,归属运营商210可具有与访问运营商220的协议,使得归属运营商210的UE(例如,UE 200)可接入VPLMN 215。例如,VPLMN 215或访问运营商220可在授权UE 200接入VPLMN 215之前验证UE 200与HPLMN 205或归属运营商210的证书。验证可包括确定UE 200是否具有由HPLMN 205和/或归属运营商210提供的证书,并且证书是否授权UE 200接入VPLMN 215。在实施例中,归属运营商210和访问运营商200可具有有关例如访问运营商220可对归属运营商210收费多少以授权UE 200接入VPLMN215的已存在关系。这些费用可以是在UE 200的用户和归属运营商210之间的原始订阅协议的元素。以这种方式,VPLMN215可基于归属运营商210和访问运营商220之间的协议被配置成处理HPLMN 205的溢出。
如图2所示,PLMN(诸如,HPLMN 205)可具有配置成按照i-WLAN互通架构与HPLMN205互通的多个WLAN 225。每一个WLAN 225可具有一个或多个WLAN AP(未示出)。PLMN(诸如,VPLMN 215)也可连接至配置成按照i-WLAN架构与VPLMN 215互通的WLAN 230。类似于WLAN 225,在实施例中,WLAN 230可具有一个或多个WLAN AP(未示出)。尽管HPLMN 205被示为具有两个WLAN 225,以及VPLMN 215被示为具有单个WLAN 230,但在其他实施例中,HPLMN205可连接至仅单个WLAN 225,或超过两个WLAN 225。类似地,VPLMN 215可连接至两个或多个WLAN 230。
为了连接至HPLMN 205,UE 200可被配置成连接至按照i-WLAN架构或一些其他架构与HPLMN 205互通的WLAN网络225的一个或多个WLAN AP。类似地,UE 200可被配置成连接至按照i-WLAN架构或一些其他架构与VPLMN 215互通的WLAN网络230的一个或多个WLANAP。在实施例中,对于UE 200,可基于SSID、WLAN特定标识符(WSID)、网络接入标识符(NAI)、组织唯一标识符(OUI)、或WLAN和/或WLAN的AP的一些其它标识符来标识WLAN 225或230的WLAN AP。如上所述,3GPP规范的版本6提供通过UE的PLMN选择的概念。在一些情况下,由3GPP规范的版本6规定的PLMN选择可使用WLAN中的AP的多个优选SSID的有序列表作为输入。然而,如上所述的,由3GPP规范的版本8引入的ANDSF策略可用于基于UE应当连接至的i-WLAN架构提供有关与PLMN互通的WLAN网络的选择的更详细的规则。例如,ANDSF策略可基于一天中的时间、UE的位置、网络上的负荷或一些其它参数基于WLAN选择策略来描述不同行为。
为了结合版本6PLMN选择规则和版本8ANDSF策略参数,当前WLAN网络选择过程可依赖于首先选择PLMN,然后使用ANDSF策略在所选择的PLMN内选择WLAN网络。例如,现有的PLMN和WLAN选择过程可如下。
1)UE可确定UE可连接至的每个WLAN,并基于WLAN中的WLAN AP的SSID或WSID确定每个WLAN的可能优先顺序。
2)对于所遇到的每个SSID/WSID,UE可确定哪个(哪些)PLMN连接至由该SSID/WSID标识的WLAN。
3)所标识的PLMN可按如下顺序被确定优先顺序:HPLMN、在可用的那些HPLMN之中的最高优先级等效的HPLMN、在UE的通用订户身份模块(USIM)中的“i-WLAN最后注册的PLMN”数据元素中的PLMN、在USIM/移动设备(ME)中的“用于i-WLAN接入的用户控制的PLMN选择器”数据文件中的多个PLMN、在USIM/ME中“用于i-WLAN接入的运营商控制的PLMN选择器”数据文件中的多个PLMN、和最后以随机顺序的任何其他PLMN。可通过UE选择根据以上描述的优先顺序具有最高优先级的PLMN。
4)一旦选择PLMN,UE可确定连接至该PLMN的多个WLAN或WLAN AP的多个SSID/WSID。UE然后可对WLAN和/或WLAN AP应用一个或多个ANDSF策略,并基于ANDSF策略确定UE应当连接至的WLAN和/或WLAN AP。特别地,在这些当前策略中,UE可仅对在之前所选择的PLMN中的WLAN网络和/或WLAN网络的WLAN AP应用ANDSF策略。然而,如以上关于图2所述的,PLMN(诸如,HPLMN 205和VPLMN 215)可仅连接至单个WLAN网络(例如,WLAN 230)。
5)一经成功认证并连接至所选择的WLAN或WLAN AP,UE可指示UE的用户UE选择和/或连接至哪个WLAN、WLAN AP和/或PLMN。UE可进一步将PLMN存储在UE的USIM/ME中。如果认证不成功,则UE的行为可依赖于实现。
如根据上述列表可以看出,在当前实现中,可能没有必要使用ANDSF策略。例如,如果PLMN仅连接至单个WLAN,则当UE选择PLMN时,可默认发生WLAN的选择。
图3描绘了可在UE(诸如,UE 200)中发生以更有效地使用ANDSF策略的过程的示例。在图3中的过程中,在300处,UE可首先标识一个或多个ANDSF策略。在一些实施例中,ANDSF策略可由网络运营商(诸如,归属运营商210和/或访问运营商220)构建并被提供至UE。在其他实施例中,UE可被预加载或预分配有一个或多个ANDSF策略。在一些实施例中,ANDSF策略可以是系统间移动策略(ISMP)和/或系统间路由策略(ISRP)。
在305处,UE还可接收UE可连接至的WLAN和/或WLAN AP的列表。例如,WLAN和/或WLAN AP的列表可以是UE扫描在UE的附近的SSID和/或WSID的结果。在310处,UE可然后应用一个或多个ANDSF策略以在所接收的WLAN和/或WLAN AP的列表中选择WLAN和/或WLAN AP。特别地,UE可能能够在不首先确定UE应当连接至的PLMN的情况下基于ANDSF策略选择WLAN和/或WLAN AP。
在实施例中,然后在315处,UE可接收PLMN的列表。PLMN的列表可以是确定连接至每个所标识的WLAN和/或WLAN AP支持的结果。在一些实施例中,在315处接收的PLMN的列表可出现在310基于ANDSF策略选择WLAN和/或WLAN AP之前。然而,在这些实施例中,基于ANDSF策略的WLAN和/或WLAN AP的选择可仍然在不首先选择UE应当连接至的PLMN的情况下发生。
在320处,UE可任选地选择在所标识的PLMN的列表之外的UE应当连接至的PLMN。在实施例中,PLMN的选择可基于基于ANDSF策略的WLAN和/或WLAN AP的选择。
作为当图3的过程可被触发的用例的示例,运营商(例如,UE的归属运营商)可能不向i-WLAN管理对象(MO)中的UE或UE的USIM提供任何WLAN信息(例如,WLAN中的WLAN AP的SSID的列表)。在一些实施例中,运营商甚至可能不向UE提供i-WLAN MO。因此,UE可使用图3的过程来确定UE应当连接至的WLAN、WLAN AP和/或PLMN。
应该认识到,上述过程可提供若干显著优点。具体而言,ANDSF策略可具有比用于选择PLMN和/或WLAN的当前过程更多的参数。因此,使用ANDSF策略可允许在UE的部分上的对WLAN、WLAN AP和/或PLMN的更环境敏感的选择。
作为示例用例,UE(例如,图2中的UE 200)可能能够接入连接至HPLMN 205的WLAN225的WLAN AP。此外,UE可能能够接入连接至VPLMN 215的WLAN 230的WLAN AP。在实施例中,UE 200可标识至少部分地基于WLAN选择参数(诸如,给定的时间窗口)指导UE 200连接至VPLMN 215的WLAN 230的ANDSF策略,例如从UE的归属运营商210提供的ANDSF策略。这种指导可附加地取决于另一WLAN选择参数,例如,UE 200的位置。使用上述当前PLMN选择过程,其中UE 200可首先选择PLMN和然后选择对应于该PLMN的WLAN和/或WLAN AP,与ANDSF策略的指导相反,UE 200可连接至HPLMN 205的WLAN 225。然而,使用图3中的上述过程,如由ANDSF策略指导的,UE 200将在给定的时间窗口期间改为连接至VPLMN 215的WLAN 230。
该用例可能是合适的,例如,如果归属运营商210具有与访问运营商220的用于VPLMN 215处理HPLMN 205的溢出的协议。归属运营商210可然后将ANDSF策略提供至UE200,或UE 200可预分配有ANDSF策略。该策略可指导UE 200与VPLMN 215耦合,从而减少HPLMN 205的负荷和拥塞。HPLMN 205负荷和拥塞可例如由于在市区中的交通高峰(其中在短时间周期期间存在大量涌入的UE)或例如当飞机到达机场时而引起的。
如以上关于图3所描述的,在315处接收PLMN的列表和在320处选择PLMN可能是可选的。在另一用例中,并且参照以上所示的图2,UE 200可能能够接入WLAN 225和230两者。一般而言,当UE 200激活其WLAN接口并且还没有在任何其他无线接入周期(例如,在上电期间或在从缺乏覆盖恢复之后)上选择PLMN时,当前可考虑PLMN选择。然而,在一些情况下,PLMN选择可不利地影响用户体验。例如,PLMN选择可阻碍IP流移动场景或妨碍运营商接入选择或转向策略的执行。因此,在这些情况下,PLMN选择可能不被需要或可能是以其他方式不合需要的。因此,在其中UE从运营商接收特定接入转向策略(例如,ANDSF策略)的实施例中,UE可能不执行PLMN选择。
虽然在一些实施例中,ANDSF策略可由归属运营商(诸如,UE 200的归属运营商)提供,但在一些实施例中,ANDSF策略可由访问运营商220提供。例如,在一些实施例中,归属运营商210可选择允许或禁止访问运营商220向UE 200提供ANDSF策略。归属运营商210可例如使用由2012年6月公布的3GPP技术规范24.234v11.3.0定义的“i-WLAN HPLMN优先级指示”标记来发信号通知该决策。如果归属运营商210允许访问运营商220提供ANDSF策略,则当UE仅能够连接至VPLMN 215的WLAN 230时,UE 200可遵循访问运营商220的ANDSF策略。然而,如果归属运营商210选择不允许UE 200使用访问运营商220的ANDSF策略,则UE 200可仅使用从归属运营商210提供的ANDSF策略,而不管UE 200是不是在漫游。
图4表示可由运营商(诸如,归属运营商210或访问运营商220)采取来构建ANDSF策略的过程的示例。在实施例中,在400处,运营商可首先构建包括WLAN和/或WLAN AP的SSID/WSID的ANDSF策略。在405处,运营商可然后建立与WLAN和/或WLAN AP的选择有关的附加参数。在实施例中,附加参数可包括诸如一天中的时间、位置、SSID/WSID优先级、或其他参数之类的参数。在410处,运营商可然后将该策略传输至UE。在一些实施例中,运营商还可将指令传输至UE以在UE可能已经接收的任何PLMN选择指令之前或作为其替代地遵循ANDSF策略。
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示意性地示出可用于实施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或200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础设施节点105的作用。在一些实施例中,系统500可包括具有指令和一个或多个处理器(例如,处理器505)的一个或多个计算机可读介质(如,系统存储器或NVM/存储520),所述一个或多个处理器与所述一个或多个计算机可读介质相耦合,并且被配置成执行指令,以将模块实现成执行本文所描述的动作。
针对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可包括用于提供去往系统存储器515的接口的存储器控制器模块530。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。
系统存储器515可用于例如为系统500加载和存储数据和/或指令。针对一个实施例的系统存储器515可包括例如诸如合适的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)。
针对一个实施例的系统控制模块510可包括用于提供去往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530可包括物理上作为系统500被安装于其上的设备的部分的存储资源,或者NVM/存储530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中的至少一个可与用于系统控制模块510的一个或多个控制器的逻辑(例如,存储器控制器模块530)封装在一起。对于一个实施例,处理器505中的至少一个可与用于系统控制模块510的一个或多个控制器的逻辑封装在一起,以形成封装中系统(SiP)。对于一个实施例,处理器505中的至少一个可集成在与系统控制模块510的一个或多个控制器的逻辑相同的管芯上。对于一个实施例,处理器505中的至少一个可集成在与系统控制模块510的一个或多个控制器的逻辑相同的管芯上,以形成芯片上系统(SoC)。
在各个实施例中,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可包括配置成选择无线局域网(WLAN)接入点(AP)的用户设备(UE),UE包括:网络选择模块,该网络选择模块访问接入网络发现和选择功能(ANDSF)策略;以及通信模块,该通信模块与网络选择模块耦合,该通信模块用于:接收与UE的访问公共陆地移动网(VPLMN)的访问运营商互通的WLAN的WLAN AP的指示;并传输用于至少部分地基于ANDSF策略将UE连接至与访问运营商互通的WLAN网络的WLANAP的请求。
示例2可包括示例1的主题,并且进一步指定ANDSF策略是UE的归属公共陆地移动网(HPLMN)的归属运营商的ANDSF策略。
示例3可包括示例1的主题,并且进一步指定ANDSF策略是访问运营商的ANDSF策略。
示例4可包括示例1的主题,并且进一步指定通信模块进一步传输用于至少部分地基于ANDSF策略连接至VPLMN的请求。
示例5可包括示例1-4中的任一个的主题,并且进一步指定ANDSF策略包括WLAN选择参数,该WLAN选择参数包括UE的位置、一天中的时间、或UE的归属公共陆地移动网(HPLMN)上的负荷。
示例6可包括示例1-4中的任一个的主题,并且进一步指定ANDSF策略包括系统间移动策略(ISMP)或系统间路由策略(ISRP)。
示例7可包括示例1-4中的任一个的主题,并且进一步指定UE进一步包括与网络选择模块耦合的电源。
示例8可包括选择无线局域网(WLAN)的方法,该方法包括:通过用户设备(UE)访问接入网络发现和选择功能(ANDSF)策略;通过UE接收WLAN的指示;通过UE并至少部分地基于ANDSF策略来选择WLAN作为所选择的WLAN;通过UE接收公共陆地移动网(PLMN)的指示;并且通过UE并且至少部分地基于所选择的WLAN来选择PLMN。
示例9可包括示例8的主题,并且进一步指定WLAN的指示是WLAN的接入点(AP)的服务集标识符(SSID)。
示例10可包括示例8或9的主题,并且进一步指定ANDSF策略包括WLAN选择参数,该WLAN选择参数包括UE的位置或一天中的时间。
示例11可包括示例8或9的主题,并且进一步指定ANDSF策略包括系统间移动策略(ISMP)或系统间路由策略(ISRP)。
示例11可包括示例8或9的主题,并且进一步指定ANDSF策略是第三代合作伙伴计划(3GPP)ANDSF策略。
示例13可包括示例8或9的主题,并且进一步包括通过UE从UE的归属网络的运营商接收ANDSF策略。
示例14可包括示例8或9的主题,并且进一步包括通过UE从UE的漫游网络的运营商接收ANDSF策略。
示例15可包括配置成选择无线局域网(WLAN)的装置,该装置包括:用于访问接入网络发现和选择功能(ANDSF)策略的装置;用于接收无线局域网WLAN的指示的装置;用于至少部分地基于ANDSF策略选择WLAN作为所选择的WLAN的装置;用于接收公共陆地移动网(PLMN)的指示的装置;和用于至少部分地基于所选择的WLAN选择PLMN的装置。
示例16可包括示例15的主题,并且进一步指定WLAN的指示是WLAN的接入点(AP)的服务集标识符(SSID)。
示例17可包括示例15或16的主题,并且进一步指定ANDSF策略包括WLAN选择参数,该WLAN选择参数包括UE的位置或一天中的时间。
示例18可包括示例15或16的主题,并且进一步指定ANDSF策略包括系统间移动策略(ISMP)或系统间路由策略(ISRP)。
示例19可包括示例15或16的主题,并且进一步指定ANDSF策略是第三代合作伙伴计划(3GPP)ANDSF策略。
示例20可包括示例15或16的主题,并且进一步包括用于从UE的归属网络的运营商接收ANDSF策略的装置。
示例21可包括示例15或16的主题,并且进一步包括用于从UE的漫游网络的运营商接收ANDSF策略的装置。
示例22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选择无线局域网(WLAN)的指令,一经由计算设备执行指令,该指令使计算设备:访问接入网络发现和选择功能(ANDSF)策略;接收WLAN的指示;至少部分地基于ANDSF策略选择WLAN作为所选择的WLAN;接收公共陆地移动网(PLMN)的指示;和至少部分地基于所选择的WLAN选择PLMN。
示例23可包括示例22的主题,并且进一步指定WLAN的指示是WLAN的接入点(AP)的服务集标识符(SSID)。
示例24可包括示例22或23的主题,并且进一步指定ANDSF策略包括WLAN选择参数,该WLAN选择参数包括UE的位置或一天中的时间。
示例25可包括示例22或23的主题,并且进一步指定ANDSF策略包括系统间移动策略(ISMP)或系统间路由策略(ISRP)。
示例26可包括示例22或23的主题,并且进一步指定ANDSF策略是第三代合作伙伴计划(3GPP)ANDSF策略。
示例27可包括示例22或23的主题,并且进一步指定一经由计算设备执行,指令进一步使计算设备从UE的归属网络的运营商接收ANDSF策略。
示例28可包括示例22或23的主题,并且进一步指定一经由计算设备执行,指令进一步使计算设备从UE的漫游网络的运营商接收ANDSF策略。
示例29可包括一个或多个计算机可读介质,一个或多个计算机可读介质包括用于构建接入网络发现和选择功能(ANDSF)策略的指令,一经由ANDSF服务器执行指令,该指令使ANDSF服务器:构建ANDSF策略,该ANDSF策略包括:多个无线局域网(WLAN)的多个接入点(AP)的多个服务集标识符(SSID);WLAN选择参数;和用于用户设备(UE)根据每个SSID的相应的优先级连接至与多个SSID中的SSID相关联的接入点的指令,并将ANDSF策略传输至UE。
示例30可包括示例29的主题,并且进一步指定ANDSF服务器是UE的归属网络的ANDSF服务器。
示例31可包括示例29的主题,并且进一步指定ANDSF服务器是UE的访问网络的ANDSF服务器。
示例32可包括示例29-31中的任一个的主题,并且进一步指定WLAN选择参数包括WLAN的位置、一天中的时间、或无线网络上的负荷。
示例33可包括示例29-31中的任一个的主题,并且进一步指定ANDSF策略是系统间移动策略(ISMP)或系统间路由策略(ISRP)。
示例34可包括示例29-31中的任一个的主题,并且进一步指定ANDSF策略是第三代合作伙伴计划(3GPP)ANDSF策略。
示例35可包括构建接入网络发现和选择功能(ANDSF)策略的方法,该方法包括:构建ANDSF策略,该ANDSF策略包括:多个无线局域网(WLAN)的多个接入点(AP)的多个服务集标识符(SSID);WLAN选择参数;和用于用户设备(UE)根据每个SSID的相应的优先级连接至与多个SSID的SSID相关联的接入点的指令,并将ANDSF策略传输至UE。
示例36可包括示例35的主题,并且进一步指定ANDSF服务器是UE的归属网络的ANDSF服务器。
示例37可包括示例35的主题,并且进一步指定ANDSF服务器是UE的访问网络的ANDSF服务器。
示例38可包括示例35-37中的任一个的主题,并且进一步指定WLAN选择参数包括WLAN的位置、一天中的时间、或无线网络上的负荷。
示例39可包括示例35-37中的任一个的主题,并且进一步指定ANDSF策略是系统间移动策略(ISMP)或系统间路由策略(ISRP)。
示例40可包括示例35-37中的任一个的主题,并且进一步指定ANDSF策略是第三代合作伙伴计划(3GPP)ANDSF策略。
示例41可包括构建接入网络发现和选择功能(ANDSF)策略的装置,该装置包括:用于构建ANDSF策略的装置,该ANDSF策略包括:多个无线局域网(WLAN)的多个接入点(AP)的多个服务集标识符(SSID);WLAN选择参数;和用于用户设备(UE)根据每个SSID的相应的优先级连接至与多个SSID中的SSID相关联的接入点的指令,以及用于将ANDSF策略传输至UE的装置。
示例42可包括示例41的主题,并且进一步指定ANDSF服务器是UE的归属网络的ANDSF服务器。
示例43可包括示例41的主题,并且进一步指定ANDSF服务器是UE的访问网络的ANDSF服务器。
示例44可包括示例41-43中的任一个的主题,并且进一步指定WLAN选择参数包括WLAN的位置、一天中的时间、或无线网络上的负荷。
示例45可包括示例41-43中的任一个的主题,并且进一步指定ANDSF策略是系统间移动策略(ISMP)或系统间路由策略(ISRP)。
示例46可包括示例41-43中的任一个的主题,并且进一步指定ANDSF策略是第三代合作伙伴计划(3GPP)ANDSF策略。
示例47可包括构建接入网络发现和选择功能(ANDSF)策略的装置,该装置包括:用于构建ANDSF策略的处理器,该ANDSF策略包括:多个无线局域网(WLAN)的多个接入点(AP)的多个服务集标识符(SSID);WLAN选择参数;和用于用户设备(UE)根据每个SSID的相应的优先级连接至与多个SSID中的SSID相关联的接入点的指令,并将ANDSF策略传输至UE。
示例48可包括示例47的主题,并且进一步指定ANDSF服务器是UE的归属网络的ANDSF服务器。
示例49可包括示例47的主题,并且进一步指定ANDSF服务器是UE的访问网络的ANDSF服务器。
示例50可包括示例47-49中的任一个的主题,并且进一步指定WLAN选择参数包括WLAN的位置、一天中的时间、或无线网络上的负荷。
示例51可包括示例47-49中的任一个的主题,并且进一步指定ANDSF策略是系统间移动策略(ISMP)或系统间路由策略(ISRP)。
示例52可包括示例47-49中的任一个的主题,并且进一步指定ANDSF策略是第三代合作伙伴计划(3GPP)ANDSF策略。
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。
其中本公开列举了“一个”或“第一”元件或其等同物,这种公开包括一个或多个这种元件,既不要求也不排除两个或多个这种元件。而且,所标识的元件的序数指示符(例如,第一,第二或第三)用于在元件之间进行区分,并且不指示或暗示必需或有限数量的这种元件,它们也不指示这种元件的特定位置或顺序,除非另有特别说明。
Claims (27)
1.一种用户设备UE,所述用户设备UE被配置成选择互通无线局域网WLAN接入点AP,所述UE包括:
网络选择模块,所述网络选择模块用于访问接入网络发现和选择功能ANDSF策略;以及
收发机模块,所述收发机模块与所述网络选择模块耦合,所述收发机模块用于:
接收与所述UE的访问公共陆地移动网VPLMN的访问运营商互通的WLAN的WLAN AP的指示;以及
传输用于至少部分地基于所述ANDSF策略将UE连接至与所述访问运营商互通的WLAN网络的WLAN AP的请求。
2.如权利要求1所述的UE,其特征在于,所述ANDSF策略是UE的归属公共陆地移动网HPLMN的归属运营商的ANDSF策略。
3.如权利要求1所述的UE,其特征在于,所述ANDSF策略是所述访问运营商的ANDSF策略。
4.如权利要求1所述的UE,其特征在于,所述收发机模块进一步传输用于至少部分地基于所述ANDSF策略将UE连接至VPLMN的请求。
5.如权利要求1-4中任一项所述的UE,其特征在于,所述ANDSF策略包括WLAN选择参数,所述WLAN选择参数包括UE的位置、一天中的时间、或UE的归属公共陆地移动网HPLMN上的负荷。
6.如权利要求1-4中任一项所述的UE,其特征在于,所述ANDSF策略包括系统间移动策略ISMP或系统间路由策略ISRP。
7.如权利要求1-4中任一项所述的UE,其特征在于,所述UE进一步包括与网络选择模块耦合的电源。
8.一种选择无线局域网WLAN的方法,所述方法包括:
通过用户设备UE访问接入网络发现和选择功能ANDSF策略;
通过UE接收WLAN的指示;
通过UE并至少部分地基于所述ANDSF策略来选择所述WLAN作为所选择的WLAN;
在选择了WLAN后,通过UE接收公共陆地移动网PLMN的指示;以及
通过UE并且至少部分地基于所选择的WLAN来选择PLMN。
9.如权利要求8所述的方法,其特征在于,所述WLAN的指示是WLAN的接入点AP的服务集标识符SSID。
10.如权利要求8或9所述的方法,其特征在于,所述ANDSF策略包括WLAN选择参数,所述WLAN选择参数包括UE的位置或一天中的时间。
11.如权利要求8或9所述的方法,其特征在于,所述ANDSF策略包括系统间移动策略ISMP或系统间路由策略ISRP。
12.如权利要求8或9所述的方法,其特征在于,所述ANDSF策略是第三代合作伙伴计划3GPP ANDSF策略。
13.如权利要求8或9所述的方法,其特征在于,进一步包括通过UE从所述UE的归属网络的运营商接收ANDSF策略。
14.如权利要求8或9所述的方法,其特征在于,进一步包括通过UE从所述UE的漫游网络的运营商接收ANDSF策略。
15.一种用于构建接入网络发现和选择功能ANDSF策略的设备,所述设备包括:
用于构建ANDSF策略的装置,所述ANDSF策略包括:
多个无线局域网WLAN的多个接入点AP的多个服务集标识符SSID;
WLAN选择参数;以及
用于用户设备UE根据每个SSID的相应的优先级连接至与多个SSID中的SSID相关联的接入点的指令;以及
用于将所述ANDSF策略传输至UE的装置。
16.如权利要求15所述的设备,其特征在于,所述ANDSF服务器是UE的归属网络的ANDSF服务器。
17.如权利要求15所述的设备,其特征在于,所述ANDSF服务器是UE的访问网络的ANDSF服务器。
18.如权利要求15-17中的任一项所述的设备,其特征在于,所述WLAN选择参数包括WLAN的位置、一天中的时间、或无线网络上的负荷。
19.如权利要求15-17中任一项所述的设备,其特征在于,所述ANDSF策略是第三代合作伙伴计划3GPP系统间移动策略ISMP或系统间路由策略ISRP。
20.一个或多个计算机可读介质,所述一个或多个计算机可读介质包括用于构建接入网络发现和选择功能ANDSF策略的指令,所述指令经由ANDSF服务器执行之后使所述ANDSF服务器:
构建ANDSF策略,所述ANDSF策略包括:
多个无线局域网WLAN的多个接入点AP的多个服务集标识符SSID;
WLAN选择参数;以及
用于用户设备UE根据每个SSID的相应的优先级连接至与多个SSID中的SSID相关联的接入点的指令;以及
将所述ANDSF策略传输至UE。
21.如权利要求20所述的一个或多个计算机可读介质,其特征在于,所述ANDSF服务器是UE的归属网络的ANDSF服务器。
22.如权利要求20所述的一个或多个计算机可读介质,其特征在于,所述ANDSF服务器是UE的访问网络的ANDSF服务器。
23.如权利要求20-22中的任一项所述的一个或多个计算机可读介质,其特征在于,所述WLAN选择参数包括WLAN的位置、一天中的时间、或无线网络上的负荷。
24.如权利要求20-22中任一项所述的一个或多个计算机可读介质,其特征在于,所述ANDSF策略是系统间移动策略ISMP或系统间路由策略ISRP。
25.如权利要求20-22中任一项所述的一个或多个计算机可读介质,其特征在于,所述ANDSF策略是第三代合作伙伴计划3GPP ANDSF策略。
26.一种计算机可读介质,其上存储有指令,所述指令当被处理器执行时使所述处理器执行如权利要求8-14中任一项所述的方法。
27.一种计算系统,包括多个装置以用于实现如权利要求8-14中任一项所述的方法中的对应步骤。
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