Abstract:
A method is provided for making policy-based decisions in a network. The method can include receiving data values from a sensor at multiple time instances. The method can also include selecting a policy associated with the received data values, where the policy includes a condition and an action. The method can also include determining whether a data value among the received data values satisfies the condition at one or more time instances. The method can also include performing the action of the policy if the condition of the policy is satisfied at one or more time instances. The method can also include determining a pattern from the received data values based on changes in the received data values as a function of time. The method can also include preparing adjustments to the policy based on the determined pattern.
Abstract:
A method for managing and reconfiguring multiple devices of a network includes registering a digital birth certificate based on a private key to a device of the plurality of devices. Authenticating and validating the device may be performed based on the private key. The device can be reconfigurable, and reconfiguration of the device includes one of a physical reconfiguration, a logical reconfiguration, or reconfiguration of a mode of operation of the device.
Abstract:
A proxy device for a network of devices may include memory, a device status module, a data intercept module, a network interface, and an emulation module. The memory may be configured to store an emulation policy for emulating a device in a network, where the policy includes a status criterion that indicates a status of the device for which the policy applies. The device status module may be configured to monitor the status of the device. The data intercept module may be configured to intercept action requests directed to the device. The network interface may be configured to forward the intercepted action requests to the device when the status of the device fails to satisfy the status criterion. The emulation module may be configured to emulate the device, and respond to the action request without accessing the device, when the status of the device satisfies the status criterion.
Abstract:
Aspects of a method and system for enterprise level management in a multi-femtocell network are provided. In this regard, one or more endpoint devices may receive traffic management information from a hybrid network controller for enabling handoff of calls and/or communication sessions among femtocells and/or access points. The received traffic management information may comprise set-up instructions, handoff instructions, transmit power, neighbor list information, signal quality thresholds, frequency assignments, transmission time, code assignments and/or antenna pattern assignments. The endpoint device may control handoffs between a communication device external to the communication system and the femtocells, access points and/or end-point devices.
Abstract:
A universal network interface controller (UNIC) is provided for interfacing a host computer to a switch fabric, a packet network, or both. The UNIC includes encapsulation logic configured to encapsulate a CBP communication for transmission as switch fabric data on the switch fabric. Finally, the UNIC includes transmit logic configured to transmit the encapsulated CBP communication to the remote CBP device using the switch fabric.
Abstract:
Embodiments are directed to saving power consumption in packet processing devices. A method for controlling power consumption of a packet processing device includes determining a power-save link utilization based upon one or more power-save enabled links of the packet processing device, determining an aggregate minimum processing bandwidth for the packet processing device based at least upon the determined power-save link utilization, and adjusting a processing capacity of the packet processing device based upon the determined aggregate minimum processing bandwidth, wherein the power consumption is changed by the adjusting. System and computer program product embodiments are also disclosed.
Abstract:
A system for hierarchical management of devices may include memory and a processor. The processor may configure first devices of a first network with device operating policies to perform operations based at least on attributes of the first devices, where the operating policies prevent device interference. The processor may discover a second network of second devices managed by a second management entity and may negotiate with the second management entity to determine a primary management entity for the networks. The processor may receive device operating policies and attributes of the second devices when the second management entity is not the primary management entity. The processor may provide an adjusted device operating policy for a second device to the second management entity when the second device causes interference with a first device, the adjusted second device operating policy being based at least on attributes of the second device.
Abstract:
A proxy device for a network of devices may include memory, a device status module, a data intercept module, a network interface, and an emulation module. The memory may be configured to store an emulation policy for emulating a device in a network, where the policy includes a status criterion that indicates a status of the device for which the policy applies. The device status module may be configured to monitor the status of the device. The data intercept module may be configured to intercept action requests directed to the device. The network interface may be configured to forward the intercepted action requests to the device when the status of the device fails to satisfy the status criterion. The emulation module may be configured to emulate the device, and respond to the action request without accessing the device, when the status of the device satisfies the status criterion.
Abstract:
An architecture for transporting radio samples, compressed samples or pre-processed radio samples in symbol form across a communication network, including a packet switched network such as Ethernet. Further, the conversion of the radio samples from streaming data to a packetized format can also be performed. Processing of radio samples can be performed in a centralized location, where the centralized location can service multiple radio heads that are located across a large geographical area. This centralized processing can be referred to as Cloud-RAN. The radio heads can also perform pre-processing to reduce effective data rates across the communication network. Further, one or more of the components of the communication network can perform timing synchronization utilizing, for example, Synchronous Ethernet (SyncE) and/or IEEE 1588.