Abstract:
Methods and apparatus for the automated updating of forwarding preferences for communications in a telecommunications network. In one embodiment, the network includes a wireless (e.g., cellular) network with user mobile user devices configured to detect a change to their configuration (such as a user changing out SIM cards or virtual access clients). In response, the device causes an update to its associated communication forwarding preferences to reflect the change. If the configuration alteration meets certain criteria (e.g., changes the phone number at which the device may be reached), the device sends a forwarding message instructing a network entity (e.g., routing server) to direct communications addressed to the old phone number to the new phone number. Thus, a user with two or more user profiles (such as two different carrier accounts) may be reached at any number associated with any of the profiles, even if only one profile is currently active.
Abstract:
Apparatus and method for maintaining hardware history profiles for a software-based emulator. In one embodiment, the disclosed software-based emulator monitors the history of the actual hardware device in a secondary device history, the history of the emulated hardware is presented within a primary device history. However, the primary device history is linked to the secondary device history, and receives the device wear history therefrom. In another aspect of the present invention, wear-leveling strategies are disclosed for handling various update sizes. Unlike existing solutions which are optimized for a single SIM that receives small data updates; various embodiments of the present invention are suitable for handling varying data sizes.
Abstract:
Apparatus and methods for distributing access control clients. In one exemplary embodiment, a network infrastructure is disclosed that enables delivery of electronic subscriber identity modules (eSIMs) to secure elements (e.g., electronic Universal Integrated Circuit Cards (eUICCs), etc.) The network architecture includes one or more of: (i) eSIM appliances, (ii) secure eSIM storages, (iii) eSIM managers, (iv) eUICC appliances, (v) eUICC managers, (vi) service provider consoles, (vii) account managers, (viii) Mobile Network Operator (MNO) systems, (ix) eUICCs that are local to one or more devices, and (x) depots. Moreover, each depot may include: (xi) eSIM inventory managers, (xii) system directory services, (xiii) communications managers, and/or (xiv) pending eSIM storages. Functions of the disclosed infrastructure can be flexibly partitioned and/or adapted such that individual parties can host portions of the infrastructure. Exemplary embodiments of the present invention can provide redundancy, thus ensuring maximal uptime for the overall network (or the portion thereof).
Abstract:
A method performed by a provisioning server, the method including receiving registration data from a client station, transmitting activation data to a telephony service provider, the activation data generated as a function of the registration data, the activation data being used to generate telephony data for the user, the telephony data including access data to utilize a telephony network of the telephony service provider and transmitting the telephony data to the client station, wherein select portions of the telephony data and select portions of the activation data verify the client station as an authenticated device to utilize the telephony network.
Abstract:
Apparatus and method for maintaining hardware history profiles for a software-based emulator. In one embodiment, the disclosed software-based emulator monitors the history of the actual hardware device in a secondary device history, the history of the emulated hardware is presented within a primary device history. However, the primary device history is linked to the secondary device history, and receives the device wear history therefrom. In another aspect of the present invention, wear-leveling strategies are disclosed for handling various update sizes. Unlike existing solutions which are optimized for a single SIM that receives small data updates; various embodiments of the present invention are suitable for handling varying data sizes.
Abstract:
Described are call handling methods performed by a carrier network or client stations. A method performed by a carrier network includes designating rules for call handling for an account, receiving first and second voice calls for the account, wherein the voice calls may be either an incoming calls or originated calls and handling the first and second voice calls for the account based on the rules. A method performed by a client station includes receiving a first invitation to a first call, responding to the first invitation causing the first call to be active, receiving a second invitation to a second call while the first call remains active and responding to the second invitation causing the second call to be active and the first call to be on hold, the client station is prevented from originating a call when one call is active and one call is on hold.