Abstract:
A method, a system, and a computer program for performing beam space compression. At least one signal is received at a first communication device. The first communication device is communicatively coupled to a second communication device using at least one communication interface. One or more beamforming coefficients are generated for transmission of the received at least one signal to the second communication device using one or more first antenna ports of the first communication device. One or more multi-dimensional, multi-domain compression is applied to the generated one or more beamforming coefficients. The received signal is transmitted using one or more first antenna ports associated with the one or more compressed beamforming coefficients to the second communication device.
Abstract:
A method, system, and computer program product for transmission of data in a wireless communications system. A first downlink data is transmitted to a user equipment using a first downlink frequency. A first uplink data is received from the user equipment utilizing a first uplink frequency. A second downlink data is transmitted to the user equipment using a second downlink frequency. A second uplink data is received using the first uplink frequency.
Abstract:
A system, a method, a device, and a computer program product for transmission of data between a user device and a server. A first data received from the user device and a second data received from the server are processed. A determination is made whether to store at least a portion of the second data in at least one memory. The stored portion of the second data is provided to the user device in response to receiving the first data.
Abstract:
A method, an apparatus and a computer program for providing end-to-end slicing in wireless communications systems. Profiles of a plurality of network slices of a wireless communications system are determined. Each network slice in the plurality of network slices has one or more communication components logically isolated from one or more communication components of another network slice in the plurality of network slices. Based on the determined profiles and a request received from the user device, a network slice in the plurality of network slices is selected for transmission of data associated with the user device. Using the selected network slice, data associated with the user device is transmitted.
Abstract:
A method, a system, an apparatus, and a computer program product for providing an inter-site carrier aggregation in a wireless communication system are disclosed. Control channel resources at a primary cell in a wireless communication system are determined. The determined control channel resources are provided to a secondary cell communicatively coupled to the primary cell. At least one data packet is transmitted based on the determination of control channel resources using the secondary cell.
Abstract:
A device, a method, a system, and a computer program product for transmitting data packets are disclosed. A communication link between a first device and a second device is established in accordance with a transmission control protocol for transmission of a data packet between the first device and the second device. The communication link is monitored during transmission of the data packet from the second device to the first device. Based on the monitoring, at least one correction of the communication link is performed during transmission of an acknowledgement of a receipt of the data packet by the first device to the second device.
Abstract:
Data characterizing a first signal transmitted in an orthogonal frequency-division multiplexing (OFDM) system by a transmitter with one or more transmit antennas through an in-band channel and received by a receiver with a plurality of receive antennas can be received. The first signal can include one or more in-band pilot pulses. A channel quality for an out-of-band channel can be predicted based on the received data and a cross-correlation between an in-band channel and one or more out-of-band channels. Data characterizing the predicted channel quality for the out-of-band channel can be provided. Related apparatus, systems, techniques, and articles are also described.
Abstract:
A base station, system, method, and computer program product are disclosed for transmitting data packets received by the base station. According to one aspect, the base station includes a first buffer configured to store data packets received by the base station, a second buffer configured to store data packets that are scheduled for transmission by the base station, and a computer processor, operatively coupled to the first buffer and the second buffer. The computer processor is configured to inspect a data packet to determine an application type of the data packet, determine a delay tolerance associated with the data packet based on the determined application type, determine a channel condition of a communication session with the user device, move the data packet from the first buffer to the second buffer based on the determined delay tolerance and the determined channel condition, and transmit data packets stored in the second buffer.
Abstract:
A method, a system, and a computer program product for selecting fronthaul links in a wireless communication system. One or more link delays are determined. The link delays are associated with one or more communication links in the plurality of communication links communicatively coupling a first communication device and a second communication device. Using the determined link delays, a communication link transmission priority of the communication links for transmission of one or more data packets is determined. A listing of prioritized communication links is generated. At least one communication link in the prioritized communication links is selected for transmission of data packets between the first and second communication devices. Using the selected communication link, the data packets are transmitted between the first and second communication devices.
Abstract:
A method, an apparatus and a computer program product for enhancing reception of signals in a wireless communication system. A signal containing a frame including a plurality of symbols is received on an uplink communication channel. An angular position of at least one symbol in the plurality of symbols in a constellation of symbols is detected. The plurality of symbols include equalized symbols. An angular difference corresponding a phase error between the detected angular position of the symbol and an expected reference angular position in the constellation of symbols corresponding to an expected reference symbol corresponding to the received frame is determined. Using the determined phase error, a phase of the symbol is compensated.