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公开(公告)号:US20180192368A1
公开(公告)日:2018-07-05
申请号:US15903284
申请日:2018-02-23
Applicant: Intel Corporation
Inventor: Joey Chou
IPC: H04W52/02 , H04W24/02 , H04L12/24 , H04L29/06 , H04L29/08 , H04L12/911 , H04L12/917 , H04W36/08 , H04W16/18 , H04W36/38 , H04W36/00 , H04W16/24 , H04B17/345 , H04W52/24
Abstract: Embodiments of systems and techniques are described for determining inter-radio access technology (inter-RAT) coverage for energy saving management (ESM). In some embodiments, a network management (NM) apparatus may determine that a source cell of a network of a first RAT is triggered to activate an energy saving state and that the source cell is partially overlapped by each of a plurality of cells of one or more networks of one or more RATs different from the first RAT. The NM apparatus may instruct the source cell to activate the energy saving state when a combination of the plurality of cells provides coverage of the source cell. Other embodiments may be described and claimed.
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公开(公告)号:US20180007572A1
公开(公告)日:2018-01-04
申请号:US15702089
申请日:2017-09-12
Applicant: Intel Corporation
Inventor: Joey Chou , Jorge Mena
IPC: H04W24/04 , H04L5/00 , H04L12/24 , H04W88/06 , H04W76/04 , H04W76/02 , H04W74/08 , H04W72/04 , H04W72/00 , H04W64/00 , H04W52/02 , H04W52/00 , H04W40/34 , H04W40/02 , H04B17/27 , H04W28/04 , H04W28/02 , H04W24/10 , H04W24/02 , H04W16/18 , H04W12/06 , H04W8/18 , H04W4/02 , H04W4/00 , H04N21/258 , H04N21/2343 , H04L29/08 , H04L29/06 , H04L12/807 , H04L12/703 , H04L12/26 , H04W36/00 , H04W16/28 , H04W36/14 , H04W88/12 , H04W92/18
CPC classification number: H04W24/04 , H04B17/27 , H04L1/1861 , H04L5/00 , H04L5/0035 , H04L5/0055 , H04L5/0057 , H04L41/0659 , H04L41/082 , H04L41/0836 , H04L43/0811 , H04L45/28 , H04L47/27 , H04L65/1006 , H04L65/4092 , H04L65/80 , H04L67/16 , H04L67/303 , H04L67/34 , H04L67/36 , H04N21/23439 , H04N21/25825 , H04W4/00 , H04W4/02 , H04W4/70 , H04W4/80 , H04W8/18 , H04W12/06 , H04W16/18 , H04W16/28 , H04W24/02 , H04W24/10 , H04W28/0221 , H04W28/0236 , H04W28/04 , H04W36/0072 , H04W36/14 , H04W40/02 , H04W40/34 , H04W52/00 , H04W52/0209 , H04W52/0212 , H04W52/0216 , H04W52/0229 , H04W52/0258 , H04W64/003 , H04W72/005 , H04W72/04 , H04W72/0406 , H04W72/0413 , H04W72/042 , H04W72/044 , H04W72/0446 , H04W74/0816 , H04W76/10 , H04W76/11 , H04W76/14 , H04W76/15 , H04W76/16 , H04W76/28 , H04W88/06 , H04W88/12 , H04W92/18 , Y02D70/00 , Y02D70/1222 , Y02D70/1224 , Y02D70/1242 , Y02D70/1244 , Y02D70/1246 , Y02D70/1262 , Y02D70/1264 , Y02D70/142 , Y02D70/144 , Y02D70/146 , Y02D70/164 , Y02D70/166 , Y02D70/21 , Y02D70/22 , Y02D70/23 , Y02D70/24 , Y02D70/25
Abstract: Embodiments of systems and techniques for coverage adjustment in evolved universal terrain radio access networks (E-UTRANs) are described. In some embodiments, a network management (NM) apparatus may receive data representative of first and second radio link failure (RLF) reports including information related to respective disconnections of first and second user equipment (UEs) from an E-UTRAN. The NM apparatus may identify a hole in a coverage area of the E-UTRAN based at least in part on the first and second RLF reports, and may perform an automated coverage and capacity optimization (CCO) action to reconfigure cell resources of the E-UTRAN based on the identified hole. Other embodiments may be described and claimed.
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公开(公告)号:US09794809B2
公开(公告)日:2017-10-17
申请号:US15356405
申请日:2016-11-18
Applicant: Intel Corporation
Inventor: Joey Chou , Jorge Mena
IPC: H04L12/26 , H04W24/04 , H04W28/02 , H04W52/00 , H04L5/00 , H04L12/24 , H04L12/807 , H04L29/06 , H04L29/08 , H04W4/00 , H04W8/18 , H04W28/04 , H04W36/00 , H04W40/34 , H04W52/02 , H04W72/00 , H04W72/04 , H04W76/02 , H04W24/02 , H04N21/2343 , H04N21/258 , H04W40/02 , H04W16/18 , H04W76/04 , H04W24/10 , H04W4/02 , H04W12/06 , H04W64/00 , H04W88/06 , H04L12/703 , H04B17/27 , H04W74/08 , H04W16/28 , H04W36/14 , H04W88/12 , H04W92/18
CPC classification number: H04W24/04 , H04B17/27 , H04L1/1861 , H04L5/00 , H04L5/0035 , H04L5/0055 , H04L5/0057 , H04L41/0659 , H04L41/082 , H04L41/0836 , H04L43/0811 , H04L45/28 , H04L47/27 , H04L65/1006 , H04L65/4092 , H04L65/80 , H04L67/16 , H04L67/303 , H04L67/34 , H04L67/36 , H04N21/23439 , H04N21/25825 , H04W4/00 , H04W4/02 , H04W4/70 , H04W4/80 , H04W8/18 , H04W12/06 , H04W16/18 , H04W16/28 , H04W24/02 , H04W24/10 , H04W28/0221 , H04W28/0236 , H04W28/04 , H04W36/0072 , H04W36/14 , H04W40/02 , H04W40/34 , H04W52/00 , H04W52/0209 , H04W52/0212 , H04W52/0216 , H04W52/0229 , H04W52/0258 , H04W64/003 , H04W72/005 , H04W72/04 , H04W72/0406 , H04W72/0413 , H04W72/042 , H04W72/044 , H04W72/0446 , H04W74/0816 , H04W76/10 , H04W76/11 , H04W76/14 , H04W76/15 , H04W76/16 , H04W76/28 , H04W88/06 , H04W88/12 , H04W92/18 , Y02D70/00 , Y02D70/1222 , Y02D70/1224 , Y02D70/1242 , Y02D70/1244 , Y02D70/1246 , Y02D70/1262 , Y02D70/1264 , Y02D70/142 , Y02D70/144 , Y02D70/146 , Y02D70/164 , Y02D70/166 , Y02D70/21 , Y02D70/22 , Y02D70/23 , Y02D70/24 , Y02D70/25
Abstract: Embodiments of systems and techniques for coverage adjustment in evolved universal terrain radio access networks (E-UTRANs) are described. In some embodiments, a network management (NM) apparatus may receive data representative of first and second radio link failure (RLF) reports including information related to respective disconnections of first and second user equipment (UEs) from an E-UTRAN. The NM apparatus may identify a hole in a coverage area of the E-UTRAN based at least in part on the first and second RLF reports, and may perform an automated coverage and capacity optimization (CCO) action to reconfigure cell resources of the E-UTRAN based on the identified hole. Other embodiments may be described and claimed.
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公开(公告)号:US20170070900A1
公开(公告)日:2017-03-09
申请号:US15356405
申请日:2016-11-18
Applicant: Intel Corporation
Inventor: Joey Chou , Jorge Mena
IPC: H04W24/04 , H04L12/703 , H04W24/02 , H04L12/24
CPC classification number: H04W24/04 , H04B17/27 , H04L1/1861 , H04L5/00 , H04L5/0035 , H04L5/0055 , H04L5/0057 , H04L41/0659 , H04L41/082 , H04L41/0836 , H04L43/0811 , H04L45/28 , H04L47/27 , H04L65/1006 , H04L65/4092 , H04L65/80 , H04L67/16 , H04L67/303 , H04L67/34 , H04L67/36 , H04N21/23439 , H04N21/25825 , H04W4/00 , H04W4/02 , H04W4/70 , H04W4/80 , H04W8/18 , H04W12/06 , H04W16/18 , H04W16/28 , H04W24/02 , H04W24/10 , H04W28/0221 , H04W28/0236 , H04W28/04 , H04W36/0072 , H04W36/14 , H04W40/02 , H04W40/34 , H04W52/00 , H04W52/0209 , H04W52/0212 , H04W52/0216 , H04W52/0229 , H04W52/0258 , H04W64/003 , H04W72/005 , H04W72/04 , H04W72/0406 , H04W72/0413 , H04W72/042 , H04W72/044 , H04W72/0446 , H04W74/0816 , H04W76/10 , H04W76/11 , H04W76/14 , H04W76/15 , H04W76/16 , H04W76/28 , H04W88/06 , H04W88/12 , H04W92/18 , Y02D70/00 , Y02D70/1222 , Y02D70/1224 , Y02D70/1242 , Y02D70/1244 , Y02D70/1246 , Y02D70/1262 , Y02D70/1264 , Y02D70/142 , Y02D70/144 , Y02D70/146 , Y02D70/164 , Y02D70/166 , Y02D70/21 , Y02D70/22 , Y02D70/23 , Y02D70/24 , Y02D70/25
Abstract: Embodiments of systems and techniques for coverage adjustment in evolved universal terrain radio access networks (E-UTRANs) are described. In some embodiments, a network management (NM) apparatus may receive data representative of first and second radio link failure (RLF) reports including information related to respective disconnections of first and second user equipment (UEs) from an E-UTRAN. The NM apparatus may identify a hole in a coverage area of the E-UTRAN based at least in part on the first and second RLF reports, and may perform an automated coverage and capacity optimization (CCO) action to reconfigure cell resources of the E-UTRAN based on the identified hole. Other embodiments may be described and claimed.
Abstract translation: 描述了在演进的通用地形无线电接入网络(E-UTRAN)中的覆盖调整的系统和技术的实施例。 在一些实施例中,网络管理(NM)装置可以接收代表第一和第二无线电链路故障(RLF)报告的数据,所述报告包括与来自E-UTRAN的第一和第二用户设备(UE)的相应断开有关的信息。 NM装置可以至少部分地基于第一和第二RLF报告来识别E-UTRAN的覆盖区域中的一个孔,并且可以执行自动覆盖和容量优化(CCO)动作,以重新配置E-UTRAN的小区资源, UTRAN基于所识别的孔。 可以描述和要求保护其他实施例。
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公开(公告)号:US09538413B2
公开(公告)日:2017-01-03
申请号:US14843547
申请日:2015-09-02
Applicant: Intel Corporation
Inventor: Joey Chou , Jorge Mena
IPC: H04W4/00 , H04W24/10 , H04W24/04 , H04W28/02 , H04W52/00 , H04L5/00 , H04L12/24 , H04L12/26 , H04L12/807 , H04L29/06 , H04L29/08 , H04W8/18 , H04W28/04 , H04W36/00 , H04W40/34 , H04W52/02 , H04W72/00 , H04W72/04 , H04W76/02 , H04W24/02 , H04N21/2343 , H04N21/258 , H04W40/02 , H04W16/18 , H04W76/04 , H04W4/02 , H04W12/06 , H04W64/00 , H04W88/06 , H04L12/703 , H04B17/27 , H04W74/08 , H04W16/28 , H04W36/14 , H04W88/12 , H04W92/18
CPC classification number: H04W24/04 , H04B17/27 , H04L1/1861 , H04L5/00 , H04L5/0035 , H04L5/0055 , H04L5/0057 , H04L41/0659 , H04L41/082 , H04L41/0836 , H04L43/0811 , H04L45/28 , H04L47/27 , H04L65/1006 , H04L65/4092 , H04L65/80 , H04L67/16 , H04L67/303 , H04L67/34 , H04L67/36 , H04N21/23439 , H04N21/25825 , H04W4/00 , H04W4/02 , H04W4/70 , H04W4/80 , H04W8/18 , H04W12/06 , H04W16/18 , H04W16/28 , H04W24/02 , H04W24/10 , H04W28/0221 , H04W28/0236 , H04W28/04 , H04W36/0072 , H04W36/14 , H04W40/02 , H04W40/34 , H04W52/00 , H04W52/0209 , H04W52/0212 , H04W52/0216 , H04W52/0229 , H04W52/0258 , H04W64/003 , H04W72/005 , H04W72/04 , H04W72/0406 , H04W72/0413 , H04W72/042 , H04W72/044 , H04W72/0446 , H04W74/0816 , H04W76/10 , H04W76/11 , H04W76/14 , H04W76/15 , H04W76/16 , H04W76/28 , H04W88/06 , H04W88/12 , H04W92/18 , Y02D70/00 , Y02D70/1222 , Y02D70/1224 , Y02D70/1242 , Y02D70/1244 , Y02D70/1246 , Y02D70/1262 , Y02D70/1264 , Y02D70/142 , Y02D70/144 , Y02D70/146 , Y02D70/164 , Y02D70/166 , Y02D70/21 , Y02D70/22 , Y02D70/23 , Y02D70/24 , Y02D70/25
Abstract: Embodiments of systems and techniques for coverage adjustment in evolved universal terrain radio access networks (E-UTRANs) are described. In some embodiments, a network management (NM) apparatus may receive data representative of first and second radio link failure (RLF) reports including information related to respective disconnections of first and second user equipment (UEs) from an E-UTRAN. The NM apparatus may identify a hole in a coverage area of the E-UTRAN based at least in part on the first and second RLF reports, and may perform an automated coverage and capacity optimization (CCO) action to reconfigure cell resources of the E-UTRAN based on the identified hole. Other embodiments may be described and claimed.
Abstract translation: 描述了在演进的通用地形无线电接入网络(E-UTRAN)中的覆盖调整的系统和技术的实施例。 在一些实施例中,网络管理(NM)装置可以接收代表第一和第二无线电链路故障(RLF)报告的数据,所述报告包括与来自E-UTRAN的第一和第二用户设备(UE)的相应断开有关的信息。 NM装置可以至少部分地基于第一和第二RLF报告来识别E-UTRAN的覆盖区域中的一个孔,并且可以执行自动覆盖和容量优化(CCO)动作,以重新配置E-UTRAN的小区资源, UTRAN基于所识别的孔。 可以描述和要求保护其他实施例。
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36.
公开(公告)号:US09516628B2
公开(公告)日:2016-12-06
申请号:US14165311
申请日:2014-01-27
Applicant: Intel Corporation
Inventor: Joey Chou
IPC: H04W24/02 , H04W72/04 , H04N21/414 , H04N21/6408 , H04W4/06 , H04L5/00 , H04L5/14 , H04L1/18 , H04W74/08 , H04L12/18 , H04L29/06 , H04N21/258 , H04N21/6405 , H04W24/00 , H04W28/02 , H04W72/08 , H04W76/04 , H04L1/00 , H04L1/16 , H04L12/28 , H04W52/24 , H04W52/02 , H04W52/14 , H04W72/12
CPC classification number: H04L5/1446 , H04J11/0073 , H04L1/0033 , H04L1/1635 , H04L1/1812 , H04L1/1819 , H04L1/1825 , H04L1/1854 , H04L1/1864 , H04L1/1877 , H04L1/1887 , H04L1/189 , H04L1/1896 , H04L5/001 , H04L5/0053 , H04L5/0055 , H04L5/0073 , H04L5/14 , H04L5/1438 , H04L5/1469 , H04L12/189 , H04L12/2854 , H04L47/283 , H04L65/601 , H04L67/02 , H04L67/2842 , H04N21/25841 , H04N21/41407 , H04N21/6405 , H04N21/6408 , H04W4/06 , H04W24/00 , H04W24/02 , H04W28/0236 , H04W28/0268 , H04W28/0278 , H04W52/02 , H04W52/0206 , H04W52/0209 , H04W52/0229 , H04W52/0235 , H04W52/143 , H04W52/243 , H04W72/04 , H04W72/0406 , H04W72/0413 , H04W72/042 , H04W72/0426 , H04W72/0446 , H04W72/048 , H04W72/082 , H04W72/1205 , H04W72/1242 , H04W72/1268 , H04W72/1273 , H04W72/1284 , H04W74/085 , H04W76/27 , H04W76/28 , Y02D70/00 , Y02D70/1224 , Y02D70/1242 , Y02D70/1244 , Y02D70/1246 , Y02D70/1262 , Y02D70/1264 , Y02D70/142 , Y02D70/144 , Y02D70/146 , Y02D70/164 , Y02D70/21 , Y02D70/22 , Y02D70/23 , Y02D70/24
Abstract: A network management device and method for coordination of self-optimization functions in a wireless network. A network management device for coordination of self-optimization functions includes one or more processors and an interface. The interface communicates with a plurality of enhanced node Bs (eNodeBs). The interface is arranged to receive a request to change a coverage or a capacity of an enhanced node B (eNodeB). The interface is further arranged to transmit a query to the eNodeB to obtain a self-optimizing network (SON) coordination state of the eNodeB. The one or more processors are arranged to determine whether to grant or deny the request based on a coordination policy and the SON coordination state.
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公开(公告)号:US09154978B2
公开(公告)日:2015-10-06
申请号:US14634626
申请日:2015-02-27
Applicant: Intel Corporation
Inventor: Joey Chou , Jorge Mena
CPC classification number: H04W24/04 , H04B17/27 , H04L1/1861 , H04L5/00 , H04L5/0035 , H04L5/0055 , H04L5/0057 , H04L41/0659 , H04L41/082 , H04L41/0836 , H04L43/0811 , H04L45/28 , H04L47/27 , H04L65/1006 , H04L65/4092 , H04L65/80 , H04L67/16 , H04L67/303 , H04L67/34 , H04L67/36 , H04N21/23439 , H04N21/25825 , H04W4/00 , H04W4/02 , H04W4/70 , H04W4/80 , H04W8/18 , H04W12/06 , H04W16/18 , H04W16/28 , H04W24/02 , H04W24/10 , H04W28/0221 , H04W28/0236 , H04W28/04 , H04W36/0072 , H04W36/14 , H04W40/02 , H04W40/34 , H04W52/00 , H04W52/0209 , H04W52/0212 , H04W52/0216 , H04W52/0229 , H04W52/0258 , H04W64/003 , H04W72/005 , H04W72/04 , H04W72/0406 , H04W72/0413 , H04W72/042 , H04W72/044 , H04W72/0446 , H04W74/0816 , H04W76/10 , H04W76/11 , H04W76/14 , H04W76/15 , H04W76/16 , H04W76/28 , H04W88/06 , H04W88/12 , H04W92/18 , Y02D70/00 , Y02D70/1222 , Y02D70/1224 , Y02D70/1242 , Y02D70/1244 , Y02D70/1246 , Y02D70/1262 , Y02D70/1264 , Y02D70/142 , Y02D70/144 , Y02D70/146 , Y02D70/164 , Y02D70/166 , Y02D70/21 , Y02D70/22 , Y02D70/23 , Y02D70/24 , Y02D70/25
Abstract: Embodiments of systems and techniques for coverage adjustment in evolved universal terrain radio access networks (E-UTRANs) are described. In some embodiments, a network management (NM) apparatus may receive data representative of first and second radio link failure (RLF) reports including information related to respective disconnections of first and second user equipment (UEs) from an E-UTRAN. The NM apparatus may identify a hole in a coverage area of the E-UTRAN based at least in part on the first and second RLF reports, and may perform an automated coverage and capacity optimization (CCO) action to reconfigure cell resources of the E-UTRAN based on the identified hole. Other embodiments may be described and claimed.
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公开(公告)号:US20150189521A1
公开(公告)日:2015-07-02
申请号:US14634626
申请日:2015-02-27
Applicant: Intel Corporation
Inventor: Joey Chou , Jorge Mena
CPC classification number: H04W24/04 , H04B17/27 , H04L1/1861 , H04L5/00 , H04L5/0035 , H04L5/0055 , H04L5/0057 , H04L41/0659 , H04L41/082 , H04L41/0836 , H04L43/0811 , H04L45/28 , H04L47/27 , H04L65/1006 , H04L65/4092 , H04L65/80 , H04L67/16 , H04L67/303 , H04L67/34 , H04L67/36 , H04N21/23439 , H04N21/25825 , H04W4/00 , H04W4/02 , H04W4/70 , H04W4/80 , H04W8/18 , H04W12/06 , H04W16/18 , H04W16/28 , H04W24/02 , H04W24/10 , H04W28/0221 , H04W28/0236 , H04W28/04 , H04W36/0072 , H04W36/14 , H04W40/02 , H04W40/34 , H04W52/00 , H04W52/0209 , H04W52/0212 , H04W52/0216 , H04W52/0229 , H04W52/0258 , H04W64/003 , H04W72/005 , H04W72/04 , H04W72/0406 , H04W72/0413 , H04W72/042 , H04W72/044 , H04W72/0446 , H04W74/0816 , H04W76/10 , H04W76/11 , H04W76/14 , H04W76/15 , H04W76/16 , H04W76/28 , H04W88/06 , H04W88/12 , H04W92/18 , Y02D70/00 , Y02D70/1222 , Y02D70/1224 , Y02D70/1242 , Y02D70/1244 , Y02D70/1246 , Y02D70/1262 , Y02D70/1264 , Y02D70/142 , Y02D70/144 , Y02D70/146 , Y02D70/164 , Y02D70/166 , Y02D70/21 , Y02D70/22 , Y02D70/23 , Y02D70/24 , Y02D70/25
Abstract: Embodiments of systems and techniques for coverage adjustment in evolved universal terrain radio access networks (E-UTRANs) are described. In some embodiments, a network management (NM) apparatus may receive data representative of first and second radio link failure (RLF) reports including information related to respective disconnections of first and second user equipment (UEs) from an E-UTRAN. The NM apparatus may identify a hole in a coverage area of the E-UTRAN based at least in part on the first and second RLF reports, and may perform an automated coverage and capacity optimization (CCO) action to reconfigure cell resources of the E-UTRAN based on the identified hole. Other embodiments may be described and claimed.
Abstract translation: 描述了在演进的通用地形无线电接入网络(E-UTRAN)中的覆盖调整的系统和技术的实施例。 在一些实施例中,网络管理(NM)装置可以接收代表第一和第二无线电链路故障(RLF)报告的数据,所述报告包括与来自E-UTRAN的第一和第二用户设备(UE)的相应断开有关的信息。 NM装置可以至少部分地基于第一和第二RLF报告来识别E-UTRAN的覆盖区域中的一个孔,并且可以执行自动覆盖和容量优化(CCO)动作,以重新配置E-UTRAN的小区资源, UTRAN基于所识别的孔。 可以描述和要求保护其他实施例。
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公开(公告)号:US20240250887A1
公开(公告)日:2024-07-25
申请号:US18443074
申请日:2024-02-15
Applicant: Intel Corporation
IPC: H04L43/06 , G06N5/04 , G06N20/00 , H04L41/0631 , H04L41/147 , H04L41/16 , H04L41/5009 , H04L41/5067 , H04L43/04
CPC classification number: H04L43/06 , G06N5/04 , G06N20/00 , H04L41/0631 , H04L41/147 , H04L41/5009 , H04L43/04 , H04L41/16 , H04L41/5067
Abstract: Disclosed embodiments are related to Management Data Analytics (MDA) relation with Self-Organizing Network (SON) functions and coverage issues analysis use case. An MDA Service (MDAS) obtains input data related to one or more managed networks and services from one or more data sources; generates an analytics report based on analysis of the input data; and sends an analytics report to a Self-Organizing Network (SON) function for root cause analysis of ongoing issues, prevention of potential issues, and/or prediction of network or service demands. The analytics report may describe an identified network or cell coverage issue related to the SON function. Other embodiments may be described and/or claimed.
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公开(公告)号:US11973641B2
公开(公告)日:2024-04-30
申请号:US18091632
申请日:2022-12-30
Applicant: Intel Corporation
IPC: H04L41/0803 , H04W24/02 , H04W84/04
CPC classification number: H04L41/0803 , H04W24/02 , H04W84/042
Abstract: Techniques discussed herein can facilitate edge computing in connection with a variety of deployment scenarios. Various embodiments can facilitate one or more of: deploying UPF(s) (User Plane Function(s)) to support edge computing; removing UPF(s) not needed for edge computing; deploying local DN(s) (Data Network(s)); E2E (Edge-to-Edge) OSS (Operations Support System) deployment scenarios; and providing RAN (Radio Access Network) condition data to support various applications (e.g., autonomous driving).
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