Wireless communications device, infrastructure equipment and methods
Abstract
Mixture of implicit and explicit signaling of the Synchronization Signal Block (SSB) time index for 5G New Radio. In NR, multiple SSBs (each containing PSS, SSS and PBCH) are sent on different beams, and on multiple time occurrences. The UE when detecting the SSB has therefore to identify the SSB time instance and the beam ID used by the gNB. This detection is allowed by said SSB time index. If sent on the PBCH, this prevents soft combining between PBCH time instances. It is therefore proposed to send the SSB time index via the DMRS interleaved with the PBCH. Problem: overhead would be too high for DMRS solution only. Solution: Part of the bits (the LSBs) of the SSB time index are signaled implicitly via the relative position of PSS, SSS and PBCH within a SSB. The other bits are explicitly sent using DMRS scrambling.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . Circuitry for a wireless communications device for transmitting or receiving data via a wireless communications network, the wireless communications device comprising
transmitter circuitry configured to transmit radio signals via a wireless access interface to an infrastructure equipment forming a radio network part of the wireless communications network, receiver circuitry configured to receive radio signals transmitted from the infrastructure equipment via the wireless access interface, and controller circuitry configured to control the transmitter circuitry and the receiver circuitry to transmit data carried by the radio signals to the infrastructure equipment and to receive data carried by the radio signals from the infrastructure equipment, the controller circuitry being configured with the receiver circuitry to detect a plurality of synchronisation signal blocks transmitted by the infrastructure equipment via the wireless access interface, each synchronisation signal block comprising one or more first Orthogonal Frequency Division Multiplexed, OFDM, symbols carrying a primary synchronisation signal, one or more second OFDM symbols carrying a secondary synchronisation signal and one or more third OFDM symbols carrying information of a physical broadcast channel of the wireless access interface, each of the OFDM symbols of the synchronisation block being formed by a plurality of frequency domain sub-carrier signals each being transmitted over the duration of the OFDM symbol as a resource element of the wireless access interface, each OFDM symbol of the synchronisation signal block having the same sub-carrier spacing, and each of the third OFDM symbols being arranged to include demodulation reference symbols, each synchronisation signal block being transmitted through one beam of a plurality of beams, each beam being formed using a plurality of antennas, and an antenna weight vector used to form each beam is the same for the first OFDM symbols, the second OFDM symbols and the third OFDM symbols, to decode each of the detected synchronisation signal blocks to recover a synchronisation signal block time index representing a cardinal number of the detected synchronisation signal block, each cardinal number being associated with a beam of the plurality of beams used to transmit the detected synchronisation signal blocks, and to determine, based on the recovered synchronisation signal block time index, which of the beams was used to transmit the each of the detected synchronisation signal blocks.
2 . Circuitry for an infrastructure equipment for forming part of a radio network part of a wireless communications network, the infrastructure equipment comprising
transmitter circuitry configured to transmit radio signals via a wireless access interface formed by the infrastructure equipment to one or more wireless communications devices, receiver circuitry configured to receive radio signals transmitted from the one or more wireless communications devices via the wireless access interface, and controller circuitry configured to control the transmitter circuitry and the receiver circuitry to transmit data carried by the radio signals to the one or more wireless communications devices and to receive data carried by the radio signals from the one or more wireless communications devices, the controller circuitry being configured with the receiver circuitry to form a plurality of synchronisation signal blocks each comprising one or more first Orthogonal Frequency Division Multiplexed, OFDM, symbols carrying a primary synchronisation signal, one or more second OFDM symbols carrying a secondary synchronisation signal and one or more third OFDM symbols carrying information of a physical broadcast channel of the wireless access interface, each of the OFDM symbols of the synchronisation block being formed by a plurality of frequency domain sub-carrier signals each being transmitted over the duration of the OFDM symbol as a resource element of the wireless access interface, each OFDM symbol of the synchronisation signal block having the same sub-carrier spacing, and each of the third OFDM symbols being arranged to include demodulation reference symbols, each synchronisation signal block being transmitted through one beam of a plurality of beams, each beam being formed using a plurality of antennas, and an antenna weight vector used to form each beam is the same for the first OFDM symbols, the second OFDM symbols and the third OFDM symbols, and to transmit the synchronisation signal blocks to the one or more wireless communications devices for receiving the broadcast information provided by the physical broadcast channel, wherein each of the synchronisation signal blocks comprise an indication of a synchronisation signal block time index representing a cardinal number of the each of the synchronisation signal blocks, each cardinal number being associated with a beam of the plurality of beams used to transmit the each of the synchronisation signal blocks.
3 . A wireless communications device for transmitting or receiving data via a wireless communications network, the wireless communications device comprising
transmitter circuitry configured to transmit radio signals via a wireless access interface to an infrastructure equipment forming a radio network part of the wireless communications network, receiver circuitry configured to receive radio signals transmitted from the infrastructure equipment via the wireless access interface, and controller circuitry configured to control the transmitter circuitry and the receiver circuitry to transmit data carried by the radio signals to the infrastructure equipment and to receive data carried by the radio signals from the infrastructure equipment, the controller circuitry being configured with the receiver circuitry to detect a plurality of synchronisation signal blocks transmitted by the infrastructure equipment via the wireless access interface, each synchronisation signal block comprising one or more first Orthogonal Frequency Division Multiplexed, OFDM, symbols carrying a primary synchronisation signal, one or more second OFDM symbols carrying a secondary synchronisation signal and one or more third OFDM symbols carrying information of a physical broadcast channel of the wireless access interface, each of the OFDM symbols of the synchronisation block being formed by a plurality of frequency domain sub-carrier signals each being transmitted over the duration of the OFDM symbol as a resource element of the wireless access interface, each OFDM symbol of the synchronisation signal block having the same sub-carrier spacing, and each of the third OFDM symbols being arranged to include demodulation reference symbols, each synchronisation signal block being transmitted through one beam of a plurality of beams, each beam being formed using a plurality of antennas, and an antenna weight vector used to form each beam is the same for the first OFDM symbols, the second OFDM symbols and the third OFDM symbols, to decode each of the detected synchronisation signal blocks to recover a synchronisation signal block time index representing a cardinal number of the detected synchronisation signal block, each cardinal number being associated with a beam of the plurality of beams used to transmit the detected synchronisation signal blocks, to determine, based on the recovered synchronisation signal block time index, which of the beams was used to transmit the each of the detected synchronisation signal blocks, and to demodulate payload data carried by the physical broadcast channel, the payload data having been modulated using signal space diversity by the infrastructure equipment.Join the waitlist — get patent alerts
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