Abstract:
According to an example implementation, a wireless communication in which user devices belonging to a service group use a first half-duplex time domain resource for sending and receiving messages in the service group and a second time domain resource is used for relaying collided messages.
Abstract:
There is provided a method, comprising: applying, by a first node operating under a time division duplex communication scheme, a frame structure comprising an extended transmission part, wherein the extended transmission part at least partially overlaps in time domain with a reception part of a frame structure applied by at least one second node operating at least partially under the same transmission/reception pattern as the first node; and causing specific signaling to the at least one second node in the extended transmission part.
Abstract:
A technique may include sending, by a base station to at least one user device, a signal indicating a configuration of at least one guard period, wherein the at least one guard period is provided between subframe portions of a same link direction. According to an example implementation, the at least one guard period may include one or more of: at least one first guard period provided between subframe portions of a same link direction within a subframe, and at least one second guard period provided between subframe portions of a same link direction of different subframes.
Abstract:
Coexistence of OFDM transmissions with different sampling rates, subcarrier spacing, symbol duration, bandwidths, but a constant FFT size, all with the same integer ratio (downclocking or upclocking) N=2, 4, 8 . . . Now called different numerology. Problem of Time alignment due to the presence of alternating long CP and short CPs in a slot. At the slot level the transmissions are aligned, but not at the symbol level. The application proposes to send after the first symbol for N=1 a so-called Time Alignment Period of same duration for each transmission in order allegedly to allow the network nodes to synchronize their timings or clocks without interfering with the transmission or reception of any symbols or CPs of other transmissions.
Abstract:
A frame or a subframe including control information and data is transmitted using orthogonal frequency division multiple access (OFDMA). At least one different OFDMA parameter and/or format is applied to said control information than to said data. At a receiver the frame or subframe is processed by taking into account the application of the at least one different OFDMA parameter and/or format.
Abstract:
There is provided a method comprising providing, in dependence on a first subcarrier spacing of a first subframe structure, a second subcarrier spacing of a second subframe structure, wherein the first subframe structure has a first subframe length and at least one first cyclic prefix length and providing a second subframe length of the second subframe structure, the second subframe length comprising m symbols, wherein each symbol contains a second cyclic prefix, the second cyclic prefix length modified by a length variant.
Abstract:
A technique may include sending, by a base station to at least one user device, a signal indicating a configuration of at least one guard period, wherein the at least one guard period is provided between subframe portions of a same link direction. According to an example implementation, the at least one guard period may include one or more of: at least one first guard period provided between subframe portions of a same link direction within a subframe, and at least one second guard period provided between subframe portions of a same link direction of different subframes.
Abstract:
It is described a method for controlling a modulation and coding scheme for a transmission between a base station and a user equipment, wherein the modulation and coding scheme is selectable based on a first modulation and coding scheme table including entries corresponding to a plurality of modulation and coding schemes with a first maximum modulation order or based on a second modulation and coding scheme table including entries corresponding to a plurality of modulation and coding schemes with a second maximum modulation order. The method comprises selecting, by the base station, the first modulation and coding scheme table or the second modulation and coding scheme table, and controlling, by the base station, the modulation and coding scheme for the transmission between the base station and the user equipment based on the selected modulation and coding scheme table.