Abstract:
A method, apparatus, and computer program product are described that receive an indication of power levels at the base station in a wireless communications system from each user equipment of user equipments served by the base station and determine whether at least one user equipment of those user equipments is capable to overlap at least one same time-frequency resource as at least one user equipment of a remainder of those user equipments. In response to the determination that at least one user equipment is capable to overlap with at least one user equipment of the remainder, then such overlap is scheduled. Based on the overlap being scheduled, packets from the one or more user equipments received are then decoded using an advanced receiver process.
Abstract:
Various communication systems may benefit from identification of and communication of coverage shortfall. For example, certain communication systems that employ machine type communication devices may benefit from having such shortfall communicated from the devices to a base station. For example, a method can include determining an amount of coverage shortfall of a device. The method can also include transmitting an indication of the amount of coverage shortfall.
Abstract:
A method includes allocating only a single PUCCH region in each subframe of multiple subframes to be used by UEs for uplink control information transmission. Information is signaled, where the information is defined to configure a UE that is equipped for machine type communication to be able to determine PUCCH regions to be used for uplink control information transmission for data received at the UE. The uplink control information is received, over the plurality of subframes, from the UE in the single PUCCH region per subframe. A UE that is configured for machine type communication receives the signaled information and determines, using the signaled information, a single PUCCH region to use for each subframe to transmit the uplink control information for received data and transmits, over the multiple subframes, the uplink control information from in the determined single PUCCH region per subframe. Apparatus, software, and computer program products are also disclosed.
Abstract:
A technique is provided for receiving a resource request by a first base station (BS) of a first Radio Access Technology (RAT) from one or more user devices, selecting resources, from a group of resources shared by BSs of a plurality of different RATs, to be scheduled for the one or more requesting user devices, scheduling, by the first BS, the selected resources for the one or more user devices, and sending, from the first BS, a resource scheduling announcement identifying the scheduled resources to one or more other BSs including at least a second BS of a second RAT. Another example technique may include receiving a resource scheduling request from a first base station (BS) implementing a first RAT, confirming an availability of the requested resources, and sending a first resource scheduling announcement to one or more BSs implementing other RATs.
Abstract:
At a wireless node in a wireless network, multiple interference estimation resources are received in a time-frequency resource space. The multiple interference estimation resources are resource elements in an assigned physical shared channel of the time-frequency resource space that do not contain physical shared channel data for the wireless node. An interference covariance matrix is determined from received signals on the multiple interference estimation resources. Symbol estimates are determined for a desired signal based in part by using the interference covariance matrix. Methods, computer programs and products and apparatus are disclosed. The techniques may be used for uplink, downlink, or D2D communications.
Abstract:
A method comprises determining in a first network element how much of a received uplink transmission is to be transmitted to a second network element, said first and second network elements both receiving said uplink transmission; and causing at least part of said received uplink transmission to be transmitted to said second network element.
Abstract:
Systems, methods, apparatuses, and computer program products for paging of low complexity UE and/or UE in coverage enhancement mode are provided. One method includes producing a machine type communication (MTC) physical downlink control channel (M-PDCCH) configuration by configuring separate M-PDCCH subsets for paging. One of the subsets may be for low complexity user equipment, and another one of the subsets may be for user equipment operating in coverage enhancement mode.
Abstract:
A method and apparatus may include receiving, by a machine type communication user equipment, parameters for frequency hopping in downlink or uplink. The parameters comprise an “X,” “Y,” and “Z” parameters, “X” corresponds to a duration for which the same physical resource blocks are used for transmission. “Y” corresponds to a frequency hopping period, and “Z” corresponds to a frequency hopping pattern indication. The method may also include performing frequency hopping in accordance with the parameters.
Abstract:
The exemplary embodiments of the invention provide at least a method and an apparatus to determine a beacon signal for a network node, where the network node is configured to connect with a cluster of access points in a wireless communication network, and where the beacon signal identifies the cluster; and send the beacon signal towards the wireless communication network. Further, the exemplary embodiments of the invention provide at least a method and an apparatus to determine a dominant access point of a cluster of access points based on signaling from at least one access point associated with the cluster of access points; and in response to the determining, direct communications towards the dominant access point of the cluster of access points.
Abstract:
Systems, methods, apparatuses, and computer program products for random access procedure are provided. One method includes selecting, by a user equipment, a subframe for a first transmission of a preamble based on a configuration broadcast by an evolved node B (eNB). The method may also include repeating the preamble within a preamble repetition period based on a configuration broadcast by the eNB.