Encrypted tag generation device, search query generation device, and searchable encryption system
US-2021173957-A1 · Jun 10, 2021 · US
US11617148B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11617148-B2 |
| Application number | US-202015929362-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 28, 2020 |
| Priority date | May 3, 2019 |
| Publication date | Mar 28, 2023 |
| Grant date | Mar 28, 2023 |
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A method and apparatus of a first network entity in a wireless communication system is provide. The method and apparatus comprises: identifying at least one set of bit strings to generate a ranging scrambled timestamp sequence (STS); identifying at least one initialization vector (IV) field corresponding to the at least one set of bit strings, wherein the at least one IV field comprises a 4-octet string; generating a ranging STS key and IV information element (RSKI IE) that includes the at least one IV field to convey and align a seed that is used to generate the ranging STS; and transmitting, to a second network entity, the generated RSKI IE for updating the ranging STS of the second network entity.
Opening claim text (preview).
What is claimed is: 1. A first network entity in a wireless communication system, the first network entity comprising: a processor configured to: identify at least one bit to indicate whether a bit range of seed data used to generate a ranging scrambled timestamp sequence (STS) is included in a ranging STS key and data information element, identify at least one field, wherein the at least one field comprises a 4-octet string to set bits of the bit range of the seed data in case that the bit range of the seed data is included in the ranging STS key and data information element, and generate the ranging STS key and data information element that includes the at least one field to convey and align the seed data used to generate the ranging STS; and a transceiver operably connected to the processor, the transceiver configured to transmit, to a second network entity, the ranging STS key and data information element, wherein the first and the second network entity are aligned, via a higher layer signaling, to transmit and receive, respectively, the ranging STS key and data information element. 2. The first network entity of claim 1 , wherein the processor is further configured to generate the ranging STS key and data information element to include a counter present (CP) field indicating whether a counter field is included in the ranging STS key and data information element. 3. The first network entity of claim 2 , wherein the counter field includes a 4-octet string comprising information to set a counter. 4. The first network entity of claim 1 , wherein the processor is further configured to generate the ranging STS key and data information element to include a SKP field indicating whether a STS key field is present in the ranging STS key and data information element. 5. The first network entity of claim 1 , wherein the at least one bit includes: a V1P field indicating whether a V1 field is included in the ranging STS key and data information element; a V2P field indicating whether a V2 field is included in the ranging STS key and data information element; and a V3P field indicating whether a V3 field is included in the ranging STS key and data information element. 6. The first network entity of claim 5 , wherein: the V1 field includes a 4-octet string that is used to set bits 32 to 63 of the seed data; the V2 field includes a 4-octet string that is used to set bits 64 to 95 of the seed data; and the V3 field includes a 4-octet string that is used to set bits 96 to 127 of the seed data. 7. The first network entity of claim 1 , wherein the ranging STS key and data information element further includes a CP field indicating whether a counter field is present. 8. A second network entity in a wireless communication system, the second network entity comprising: a transceiver configured to receive, from a first network entity, a ranging scrambled timestamp sequence (STS) key and data information element, wherein the first and the second network entity are aligned, via a higher layer signaling, to transmit and receive, respectively, the ranging STS key and data information element; and a processor operably connected to the transceiver, the processor configured to: identify the ranging STS key and data information element that includes at least one field to be used to convey and align seed data used to generate a ranging STS; identify the at least one field, wherein the at least one field comprises a 4-octet string to set bits of a bit range of the seed data in case that the bit range of the seed data is included in the ranging STS key and data information element; and identify at least one bit of the bit range to identify the ranging STS. 9. The second network entity of claim 8 , wherein the processor is further configured to generate the ranging STS key and data information element to include a counter present (CP) field indicating whether a counter field is included in the ranging STS key and data information element. 10. The second network entity of claim 9 , wherein the counter field includes a 4-octet string comprising information to set a counter. 11. The second network entity of claim 8 , wherein the processor is further configured to generate the ranging STS key and data information element to include a SKP field indicating whether a STS Key field is present in the ranging STS key and data information element. 12. The second network entity of claim 8 , wherein the at least one bit includes: a V1P field indicating whether a V1 field is included in the ranging STS key and data information element; a V2P field indicating whether a V2 field is included in the ranging STS key and data information element; and a V3P field indicating whether a V3 field is included in the ranging STS key and data information element. 13. The second network entity of claim 12 , wherein: the V1 field includes a 4-octet string that is used to set bits 32 to 63 of the seed data; the V2 field includes a 4-octet string that is used to set bits 64 to 95 of the seed data; and the V3 field includes a 4-octet string that is used to set bits 96 to 127 of the seed data. 14. The second network entity of claim 8 , wherein the ranging STS key and data information element further includes a CP field indicating whether a counter field is present. 15. A method of a first network entity in a wireless communication system, the method comprising: identifying at least one bit to indicate whether a bit range of seed data used to generate a ranging scrambled timestamp sequence (STS) is included in a ranging STS key and data information element; identifying at least one field, wherein the at least one field comprises a 4-octet string to set bits of the bit range of the seed data in case that the bit range of the seed data is included in the ranging STS key and data information element; and generating the ranging STS key and data information element that includes the at least one field to convey and align the seed data used to generate the ranging STS; and transmitting, to a second network entity, the ranging STS key and data information element, wherein the first and the second network entity are aligned, via a higher layer signaling, to transmit and receive, respectively, the ranging STS key and data information element. 16. The method of claim 15 , further comprising generating the ranging STS key and data information element to include a counter present (CP) field indicating whether a counter field is included in the ranging STS key and data information element. 17. The method of claim 16 , wherein the counter field includes a 4-octet string comprising information to set a counter. 18. The method of claim 15 , further comprising generating the ranging STS key and data information element to include a SKP field indicating whether a STS Key field is present in the ranging STS key and data information element. 19. The method of claim 15 , wherein the at least one bit includes: a V1P field indicating whether a V1 field is included in the ranging STS key and data information element; a V2P field indicating whether a V2 field is included in the ranging STS key and data information element; a V3P field indicating whether a V3 field is included in the ranging STS key and data information element; the V1 field includes a 4-octet string that is used to set bits 32 to 63 of the seed data; the V2 field includes a 4-octet string that is used to set bits 64 to 95 of the seed data; and the V3 field includes a 4-octet string that is used to set bits 96 to 127
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