Patent classifications
H04L61/5014
Systems, methods and apparatus for geofence networks
Systems and methods are disclosed for enforcing at least one rule associated with a geofence. At least one device is constructed and configured in network communication with a server platform and a database. The server platform defines at least one geofence for a region of interest and specifies at least one rule associated with the at least one geofence, thereby creating a rule-space model for the region of interest. The at least one geofence comprises a multiplicity of geographic designators with each geographic designator assigned with a unique IPv6 address. The at least one device receives at least one notification signal regarding the at least one rule from the at least one server platform and implements the at least one rule when the at least one device is within a predetermined distance from the at least one geofence for the region of interest.
Method for configuring a wireless communication coverage extension system and a wireless communication coverage extension system implementing said method
A method for configuring a wireless communication coverage extension system is described. The latter comprises a backhaul subnetwork in tree form comprising a plurality of interconnected nodes. At least two nodes directly connected to an internet access gateway are identified among the nodes of the backhaul subnetwork. A single node is selected from the at least two identified nodes to be the node through which a configuration of the wireless communication coverage extension system is defined. The configuration of the wireless communication coverage extension system defined is then sent from the selected node to all the other nodes of the backhaul subnetwork.
Method for configuring a wireless communication coverage extension system and a wireless communication coverage extension system implementing said method
A method for configuring a wireless communication coverage extension system is described. The latter comprises a backhaul subnetwork in tree form comprising a plurality of interconnected nodes. At least two nodes directly connected to an internet access gateway are identified among the nodes of the backhaul subnetwork. A single node is selected from the at least two identified nodes to be the node through which a configuration of the wireless communication coverage extension system is defined. The configuration of the wireless communication coverage extension system defined is then sent from the selected node to all the other nodes of the backhaul subnetwork.
System and method of acquiring network-centric information for customer premises equipment (CPE) management
A method, device, and computer-readable medium are provided for sending, by a customer-premises equipment (CPE) device to a wireless access device via a CPE network interface, an Internet protocol (IP) address lease request, wherein the wireless access device terminates a wireless backhaul connection to a service provider network; receiving, responsive to the IP address lease request, an acknowledge message that includes a requested IP address and a protocol configuration option (PCO) providing identification information for the wireless access device; connecting, via the wireless access device and using the requested IP address, to a bootstrap server device associated with the service provider network; receiving, via the wireless access device, attachment information associated with a network management server and the service provider network; and sending, via the wireless access device, the identification information to the network management server in an attachment procedure using the attachment information.
System and method of acquiring network-centric information for customer premises equipment (CPE) management
A method, device, and computer-readable medium are provided for sending, by a customer-premises equipment (CPE) device to a wireless access device via a CPE network interface, an Internet protocol (IP) address lease request, wherein the wireless access device terminates a wireless backhaul connection to a service provider network; receiving, responsive to the IP address lease request, an acknowledge message that includes a requested IP address and a protocol configuration option (PCO) providing identification information for the wireless access device; connecting, via the wireless access device and using the requested IP address, to a bootstrap server device associated with the service provider network; receiving, via the wireless access device, attachment information associated with a network management server and the service provider network; and sending, via the wireless access device, the identification information to the network management server in an attachment procedure using the attachment information.
ADDRESS ROTATION AWARE DYNAMIC HOST CONTROL PROTOCOL
A method comprises, at a wireless network controller of wireless access points through which wireless client devices that are wireless communicate with the controller: upon receiving, from a wireless client device, a dynamic host configuration protocol (DHCP) request having a media access control (MAC) address, determining whether the wireless client device rotated its MAC address from a previous MAC address to the MAC address; when the wireless client device rotated its MAC address, forwarding, to a DHCP service, the DHCP request with a notification of a MAC address rotation to cause the DHCP service to reassign a previously assigned Internet Protocol (IP) address to the wireless client device; and upon receiving, from the DHCP service, a DHCP offer asserting the previously assigned IP address, forwarding the DHCP offer to the wireless client device.
ADDRESS ROTATION AWARE DYNAMIC HOST CONTROL PROTOCOL
A method comprises, at a wireless network controller of wireless access points through which wireless client devices that are wireless communicate with the controller: upon receiving, from a wireless client device, a dynamic host configuration protocol (DHCP) request having a media access control (MAC) address, determining whether the wireless client device rotated its MAC address from a previous MAC address to the MAC address; when the wireless client device rotated its MAC address, forwarding, to a DHCP service, the DHCP request with a notification of a MAC address rotation to cause the DHCP service to reassign a previously assigned Internet Protocol (IP) address to the wireless client device; and upon receiving, from the DHCP service, a DHCP offer asserting the previously assigned IP address, forwarding the DHCP offer to the wireless client device.
COLLABORATIVE DEVICE ADDRESS ROTATION
Embodiments are presented for collaborative device address generation between a wireless client device and a network infrastructure component, such as a wireless access point. The wireless client device and network infrastructure component share information to facilitate collaborative generation of a sequence of device addresses. This shared information includes, in some embodiments, key information and moving factor information. The key information and moving factor information is used to generate a token. A sequence of tokens is generated by updating the moving factor as each token is generated. A corresponding sequence of device addresses are then derived based on the sequence of tokens. Since the wireless client device and the network infrastructure device apply equivalent methods to generate respective sequences of addresses, the network infrastructure is able to efficiently identify a source wireless client device when observing a new device address on a wireless network.
ENCRYPTED NONCES AS ROTATED DEVICE ADDRESSES
Rotation of a wireless client device address is based on an encryption key and a nonce value. Key information and nonce value information are shared between a wireless client device and a network infrastructure component over a secure communication channel. The wireless client device encrypts the nonce value using the key information and encodes the encrypted value as a device address. The wireless client device then identifies itself via a source address value in a message transmitted over a wireless network. Upon receiving the message, the network infrastructure component decrypts information derived from the source address value and compares the resulting data to the nonce value. If a match is identified, the network infrastructure identifies the wireless client device as a source of the message. In some embodiments, the nonce value is updated with each rotation to provide for improved entropy of generated device addresses.
METHOD AND APPARATUS FOR LOCAL APPLICATION SERVER DISCOVERY IN MOBILE EDGE COMPUTING
A method and apparatus for local application server discovery in edge computing. A method at a network node comprises determining whether one or more domain name system (DNS) servers in an edge computing of a network are available for a user equipment (UE) based on at least one of local configuration information, the UE's current location, the UE's capability or the UE's user subscription. The edge computing is close to the UE. The method further comprises in response to a positive determination, sending, to the UE, a first message including respective address of the one or more DNS servers in the edge computing of the network.