Network Architecture, Methods, and Devices for a Wireless Communications Network
US-2017331577-A1 · Nov 16, 2017 · US
US11356202B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11356202-B2 |
| Application number | US-201716336803-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 28, 2017 |
| Priority date | Sep 28, 2016 |
| Publication date | Jun 7, 2022 |
| Grant date | Jun 7, 2022 |
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A method for transmitting system information on a PBCH is described herein. A transmission/reception point (TRP) may generate a concatenated master information block (MIB) transport block that includes information bits associated with system bandwidth information, timing information, system frame number (SFN), a beam sweeping configuration, and a control resource set (CORESET). The TRP may then attach at least 16 cyclic redundancy check (CRC) bits to the concatenated MIB and then prioritize the concatenated MIB and the at least 16 CRC bits based on content. The TRP may then perform channel coding of the prioritized concatenated MIB and the at least 16 CRC bits to produce coded bits using at least one polar encoder with a coding rate that is less than ⅓, perform rate matching via repetition on the coded bits, and then transmit the rate matched, coded bits on the PBCH of a radio frame.
Opening claim text (preview).
What is claimed is: 1. A method for use in a base station, the method comprising: performing channel coding of a plurality of bits to produce coded bits using polar encoding, wherein the polar encoding provides at least a portion of the plurality of bits to bit channels based on content of the at least the portion of the plurality of bits and based on a reliability of the bit channels, wherein the plurality of bits includes bits of a master information block (MIB) transport block, other bits, and cyclic redundancy check (CRC) bits, wherein the plurality of bits indicates each of timing information and a system frame number (SFN); performing rate matching via repetition on the coded bits; and sending the rate matched coded bits in a physical broadcast channel (PBCH) transmission. 2. The method of claim 1 , further comprising polar encoding and sending bits associated with a synchronization signal (SS) block index in the PBCH transmission. 3. The method of claim 1 , wherein the other bits include beam information bits. 4. The method of claim 1 , further comprising: polar encoding and sending control resource set information in the PBCH transmission. 5. The method of claim 1 , wherein the bits that indicate timing information and the CRC bits are provided to reliable bit channels. 6. The method of claim 1 , further comprising: prioritizing the bits of the MIB transport block, the other information bits, and the CRC bits in the plurality of bits for channel encoding based on content. 7. The method of claim 1 , wherein the other bits include bits that indicate the SFN. 8. A base station comprising: a processor configured to perform channel coding of a plurality of bits to produce coded bits using polar encoding, wherein the polar encoding provides at least a portion of the plurality of bits to bit channels based on content of the at least the portion of the plurality of bits and based on a reliability of the bit channels, wherein the plurality of bits includes bits of a master information block (MIB) transport block, other bits, and cyclic redundancy check (CRC) bits, wherein the plurality of bits indicates each of timing information and a system frame number (SFN); the processor further configured to perform rate matching via repetition on the coded bits; and a transmitter configured to send the rate matched coded bits in a physical broadcast channel (PBCH) transmission. 9. The base station of claim 8 , wherein the processor is further configured to polar encode a synchronization signal (SS) block index and the transmitter is further configured to send the SS block index in the PBCH transmission. 10. The base station of claim 8 , wherein the other bits include beam information bits. 11. The base station of claim 8 , wherein the processor further is configured to polar encode control resource set information and the transmitter is further configured to send the control resource set information in the PBCH transmission. 12. The base station of claim 8 , wherein the bits that indicate timing information and the CRC bits are provided to reliable bit channels. 13. The base station of claim 8 , wherein the processor is further configured to prioritize the bits of the MIB transport block, the other information bits, and the CRC bits in the plurality of bits for channel encoding based on content. 14. The base station of claim 8 , wherein the other bits include bits that indicate the SFN. 15. A wireless transmit/receive unit (WTRU) comprising: a transceiver; and a processor, wherein the transceiver and the processor are configured to receive and decode a signal on a physical broadcast channel (PBCH) to recover a plurality of polar encoded bits wherein at least a portion of the plurality of bits is provided to bit channels based on content of the at least the portion of the plurality of bits and based on a reliability of the bit channels, wherein the plurality of bits includes bits of a master information block (MIB) transport block, other bits, and cyclic redundancy (CRC) bits, wherein the plurality of bits indicates each of timing information and a system frame number (SFN), and the signal has the polar encoded bits rate matched by repetition. 16. The WTRU of claim 15 , wherein the transceiver and the processor are further configured to receive and decode bits associated with a synchronization signal (SS) block index from the PBCH. 17. The WTRU of claim 15 , wherein the other bits include beam information bits. 18. The WTRU of claim 15 , wherein the transceiver and the processor are further configured to receive and decode control resource set information from the PBCH. 19. The WTRU of claim 15 , wherein the bits that indicate timing information and the CRC bits are provided to reliable bit channels. 20. The WTRU of claim 15 , wherein the other bits include bits that indicate the SFN.
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