Abstract:
A method is provided. The method includes determining, in a determination by an electronic testing device, one or more locations in a cellular network where a test case is to be executed, a time at which the test case is to be executed at the one or more locations, a number of times the test case is to be executed at the one or more locations, or a type of a test equipment on which the test case is to be executed. A test context for testing a user equipment is determined based on a result of the determination. An optimal test case is determined from a test case repository, based on the test context, and the optimal test case is executed.
Abstract:
Embodiments herein provide a method and a system for context aware scheduling of resources. The method includes performing a cell search in based on a context database, the context database including temporal parameters, location parameters and network parameters, identifying a first cell corresponding to the network parameters in the database based on the cell search, and performing a connected mode procedure with the identified first cell.
Abstract:
A system, transceiver, computer programming product, and method of regulating transmission of a packet from a transceiver are provided. The method includes measuring, by the transceiver, the electronic magnetic radiation (EMR) for an allocated uplink (UL) grant at a transmission time interval (TTI), detecting, by the transceiver, if the measured EMR exceeds an EMR threshold; and regulating, at the transceiver, a transmission of the packet to reduce the EMR.
Abstract:
A method and system for providing power management in a system employing a Central Processing Unit (CPU) and an operating system are provided. The method includes monitoring idle times of the CPU; predicting an idle pattern based on the monitored idle times; and determining a selective sleep of a peripheral device based on the predicted CPU idle pattern.
Abstract:
A method and system for providing small cell deployment and access in a green 3GPP LTE system are disclosed. The method includes establishing, by a UE, an RRC connection with a macro cell, receiving, by the macro cell, an RRC connection establishment message from the UE, wherein the RRC connection establishment message includes an IE including an identity of a list of small cells on which the UE can initiate a connection, determining by the macro cell, at least one small cell for data transfer, verifying, by the macro, if the at least one small cell is in a sleep mode or not, triggering, by the macro cell, a connection setup message for initiating a connection between the UE and the at least one small cell if the small cell is in a wake up mode, sending, by the UE, an SRS for initial timing alignment and allocating by the at least one small cell, an uplink/downlink resource to the UE for communication with the at least one small cell.