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公开(公告)号:US12075254B1
公开(公告)日:2024-08-27
申请号:US17548282
申请日:2021-12-10
发明人: Diwakar Gupta , Kaixiang Hu , Benjamin Wojtowicz , Upendra Bhalchandra Shevade , Shane Ashley Hall
CPC分类号: H04W12/37 , H04L63/1416 , H04L63/20
摘要: Disclosed are various embodiments for configurable security policies in radio-based networks. In one embodiment, a security event detection rule or a security event mitigation rule for a radio-based network is accessed. The radio-based network includes a radio access network and an associated core network. At least a portion of the radio-based network is operated by a cloud provider on behalf of an organization. A security event is detected based at least in part on the security event detection rule. At least one action is performed in response to the security event based at least in part on the security event mitigation rule.
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公开(公告)号:US20230208729A1
公开(公告)日:2023-06-29
申请号:US18179050
申请日:2023-03-06
发明人: Diwakar Gupta , Igor A. Kostic , Kiran Kumar Edara , Kaixiang Hu , Shane Ashley Hall , Ishwardutt Parulkar
CPC分类号: H04L41/5096 , H04L41/5054 , H04L67/10 , H04W36/14 , H04W84/045 , H04W84/18 , H04L47/2475
摘要: Disclosed are various embodiments for managing radio-based private networks. In one embodiment, a request is received from an organization for a provider to provision a radio-based private network to cover a site of the organization. Equipment is preconfigured to implement the radio-based private network before shipping the equipment to the organization. A core network is provisioned for the organization.
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公开(公告)号:US20230164113A1
公开(公告)日:2023-05-25
申请号:US17535564
申请日:2021-11-24
发明人: Diwakar Gupta , Kaixiang Hu , Benjamin Wojtowicz , Upendra Bhalchandra Shevade , Shane Ashley Hall
IPC分类号: H04L61/5007 , H04L101/695 , H04L12/46
CPC分类号: H04L61/2007 , H04L61/6095 , H04L12/4641 , H04L12/4633
摘要: Disclosed are various embodiments for extending cloud-based virtual private networks to user equipment on radio-based networks. In one embodiment, a request is received from a client device for service from a radio-based network. The client device is provided with access to a virtual private cloud network through the radio-based network in response to receiving the request from the client device for service from the radio-based network. Encapsulated network traffic is forwarded from the client device to the virtual private cloud network via a network link between the radio-based network and a cloud provider network that hosts one or more resources on the virtual private cloud network.
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公开(公告)号:US11627472B2
公开(公告)日:2023-04-11
申请号:US17118570
申请日:2020-12-10
发明人: Diwakar Gupta , Kiran Kumar Edara , Igor A. Kostic , Kaixiang Hu , Shane Ashley Hall , Ishwardutt Parulkar
摘要: Disclosed are various embodiments for automated deployment of radio-based networks. In one embodiment, a request to provision a radio-based network for a customer by a provider according to a network plan is received via an application programming interface (API) of a cloud provider network. An arrangement of a plurality of cells for the customer is determined. Respective antennas and radio units for individual ones of the plurality of cells are preconfigured to implement the radio-based network before shipping the respective antennas and the radio units to the customer.
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公开(公告)号:US20190222636A1
公开(公告)日:2019-07-18
申请号:US16362192
申请日:2019-03-22
发明人: Tobias Lars-Olov Holgers , Kevin Christopher Miller , Andrew Bruce Dickinson , David Carl Salyers , Xiao Zhang , Shane Ashley Hall , Christopher Ian Hendrie , Aniket Deepak Divecha , Ralph William Flora
CPC分类号: H04L67/10 , G06F9/45533 , H04L67/42
摘要: A control-plane component of a virtual network interface (VNI) multiplexing service assigns one or more VNIs as members of a first interface group. A first VNI of the interface group is attached to a first compute instance. Network traffic directed to a particular endpoint address associated with the first interface group is to be distributed among members of the first interface group by client-side components of the service. The control-plane component propagates membership metadata of the first interface group to the client-side components. In response to a detection of an unhealthy state of the first compute instance, the first VNI is attached to a different compute instance by the control-plane component.
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公开(公告)号:US20240171983A1
公开(公告)日:2024-05-23
申请号:US18518851
申请日:2023-11-24
发明人: Diwakar Gupta , Leslie Andrew Prock , Kaixiang Hu , Upendra Bhalchandra Shevade , Shane Ashley Hall , Sahil Mansukhlal Koladiya , lshwardutt Parulkar
IPC分类号: H04W16/02 , G06Q10/0833 , H04W4/50
CPC分类号: H04W16/02 , G06Q10/0833 , H04W4/50
摘要: Disclosed are various embodiments for interfaces for creating radio-based private networks. In one embodiment, a request is received via an interface to create a radio-based private network for a customer. The request indicates a quantity of wireless devices that will connect to the radio-based private network. A quantity of radio units to serve the radio-based private network is determined based at least in part on the quantity of wireless devices. The radio units are preconfigured to implement a radio access network for the radio-based private network. A shipment is initiated to the customer of the radio units that have been preconfigured. Resources in a cloud provider network are provisioned to function as a core network for the radio-based private network.
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公开(公告)号:US11886315B2
公开(公告)日:2024-01-30
申请号:US17118574
申请日:2020-12-10
发明人: Diwakar Gupta , Kiran Kumar Edara , Igor A. Kostic , Kaixiang Hu , Shane Ashley Hall , Ishwardutt Parulkar
CPC分类号: G06F11/3409 , G06F9/5072 , H04L67/10
摘要: Disclosed are various embodiments for managing computing capacity in radio-based networks and associated core networks. In one embodiment, it is determined that a set of computing hardware implementing a radio-based network for a customer has an excess capacity. At least one action is implemented to reallocate the excess capacity of the computing hardware.
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公开(公告)号:US11658936B2
公开(公告)日:2023-05-23
申请号:US17459946
申请日:2021-08-27
发明人: Benjamin David Strauss , John D. Bomkamp , Steven Gerard Betten , Aniket Deepak Divecha , Mingxue Zhao , George Wickersham , Mahmoud Ali Abuelela , Shane Ashley Hall
IPC分类号: G06F15/16 , H04L61/50 , H04L61/5007 , G06F9/50 , H04L69/16
CPC分类号: H04L61/50 , H04L61/5007 , G06F9/5077 , H04L69/161
摘要: Virtual networks may be launched in a provider network with an initial IP address space (e.g., an IPv4 CIDR block). Methods are described that allow additional IP address spaces to be added to a virtual network. A new IP address space for a virtual network may be specified via an API. The specified space may be checked to insure that it does not overlap with IP spaces that are associated with the virtual network. If there are no overlaps, the space is added to the network, for example by adding the space to the network's route tables.
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公开(公告)号:US20220188211A1
公开(公告)日:2022-06-16
申请号:US17118574
申请日:2020-12-10
发明人: Diwakar Gupta , Kiran Kumar Edara , Igor A. Kostic , Kaixiang Hu , Shane Ashley Hall , Ishwardutt Parulkar
摘要: Disclosed are various embodiments for managing computing capacity in radio-based networks and associated core networks. In one embodiment, it is determined that a set of computing hardware implementing a radio-based network for a customer has an excess capacity. At least one action is implemented to reallocate the excess capacity of the computing hardware.
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公开(公告)号:US20190356587A1
公开(公告)日:2019-11-21
申请号:US16530881
申请日:2019-08-02
发明人: Kevin Christopher Miller , Andrew Bruce Dickinson , Eric Wayne Schultze , Ian Roger Searle , Shane Ashley Hall , Deepak Mohan , David Brian Lennon
IPC分类号: H04L12/713 , H04L29/06 , H04L12/741
摘要: Methods and apparatus that allow clients to connect resource instances to virtual networks in provider network environments via private IP. Via private IP linking methods and apparatus, a client of a provider network can establish private IP communications between the client's resource instances on the provider network and the client's resource instances provisioned in the client's virtual network via links from the private IP address space of the virtual network to the private IP address space of the provider network. The provider network client resource instances remain part of the client's provider network implementation and may thus also communicate with other resource instances on the provider network and/or with entities on external networks via public IP while communicating with the virtual network resource instances via private IP.
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