IP Library › Granted Patent US 10,659,120
Granted Patent B2
US 10,659,120 · App. 16/156,485 · Granted May 19, 2020

Communication apparatus and communication method

Inventors: Hiroyuki Motozuka (Kanagawa, JP); Masataka Irie (Kanagawa, JP); Takenori Sakamoto (Kanagawa, JP); Naganori Shirakata (Kanagawa, JP); Yao Huang Gaius Wee (Singapore, SG); Michael Hong Cheng Sim (Singapore, SG); Lei Huang (Singapore, SG)
Assignee: Panasonic Intellectual Property Corporation of America
H04B7/0491H03M13/09H04B7/0617H04B7/0682H04B7/0695H04B7/088H04L1/0041H04L1/0061H04W48/16H04W84/12H04W88/02H04L1/08
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Quick Facts
Patent No.
US 10,659,120
App. No.
16/156,485
Granted
May 19, 2020
Kind
B2
Abstract

A communication apparatus includes a PHY frame generating circuit that generates a PHY frame including either of a short Sector Sweep frame and a Sector Sweep frame; and an array antenna that selects, based on the PHY frame, any sector from among a plurality of sectors and transmits the PHY frame. In a case where, in the PHY frame including the short Sector Sweep frame, a Direction field of the short Sector Sweep frame indicates Initiator Sector Sweep, the PHY frame generating circuit replaces a Short Sector Sweep Feedback field indicating a number of a selected best short Sector Sweep with a Short Scrambled Basic Service Set ID field indicating an abbreviated address generated from an address of a destination communication apparatus.

Claims (32)

1. A communication apparatus comprising:

a frame generating circuit, which, in operation, generates a frame including a Header and a Short Sector Sweep Payload (Short SSW Payload) field, wherein the Header includes a Scrambler Initialization field; and

a transmitter which, in operation, transmits the generated frame, wherein

in a case of a Transmission Sector Sweep by an Initiator, the Short SSW Payload field includes a Short Scrambled Basic Service Set ID (Short Scrambled BSSID) subfield, in which a Short Scrambled BSSID is set, wherein the Short Scrambled BSSID is generated by dividing a plurality of bits that form a BSSID into a plurality of words, scrambling each of the plurality of words by using a value of the Scrambler Initialization field as a seed, applying Cyclic Redundancy Check (CRC) encoding to a consecutive concatenation of the plurality of scrambled words, and taking upper bits of a bit sequence generated by the CRC encoding.

2. The communication apparatus according to claim 1 , wherein the generation of the Short Scrambled BSSID includes discarding lower bits of the bit sequence generated by the CRC encoding.

3. The communication apparatus according to claim 1 , wherein the scrambling is performed by multiplying the value of the Scrambler Initialization field with a certain value, limiting a number of bits of the multiplication result to generate a scrambling pattern, and adding the scramble pattern to each of the plurality of words.

4. The communication apparatus according to claim 1 , wherein

the plurality of bits that form the BSSID are 48 bits; and

the Short Scrambled BSSID is generated by dividing the 48 bits into three words, each consisting of 16 bits, and adding a scramble pattern to each of the three words, wherein the scramble pattern is generated by using the value of the Scrambler Initialization field.

5. The communication apparatus according to claim 4 , wherein the scramble pattern is generated by multiplying the value of the Scrambler Initialization field with a certain value and limiting a number of bits of the multiplication result.

6. The communication apparatus according to claim 1 , wherein the upper bits of the bit sequence generated by the CRC encoding are upper 10 bits among 16 bits generated by the CRC encoding.

7. The communication apparatus according to claim 1 , wherein

the Short SSW Payload field includes a Direction subfield for indicating a transmission direction;

when the Direction subfield indicates a Transmission Sector Sweep by a Responder, the Short SSW Payload field includes a Short Sector Sweep Feedback subfield; and

when the Direction subfield indicates a Transmission Sector Sweep by the Initiator, the Short SSW Payload field includes the Short Scrambled BSSID subfield and a Reserved subfield instead of the Short Sector Sweep Feedback subfield.

8. The communication apparatus according to claim 1 , wherein the Short SSW Payload field includes a Packet Type subfield for indicating whether the Short SSW Payload is a Short Sector Sweep packet or not.

9. A communication method comprising;

generating a frame including a Header and a Short Sector Sweep Payload (Short SSW Payload) field, wherein the Header includes a Scrambler Initialization field; and

transmitting the generated frame, wherein

in a case of a Transmission Sector Sweep by an Initiator, the Short SSW Payload field includes a Short Scrambled Basic Service Set ID (Short Scrambled BSSID) subfield, in which a Short Scrambled BSSID is set, wherein the Short Scrambled BSSID is generated by dividing a plurality of bits that form a BSSID into a plurality of words, scrambling each of the plurality of words by using a value of the Scrambler Initialization field as a seed, applying Cyclic Redundancy Check (CRC) encoding to a consecutive concatenation of the plurality of scrambled words, and taking upper bits of a bit sequence generated by the CRC encoding.

10. The communication method according to claim 9 , wherein the generation of the Short Scrambled BSSID includes discarding lower bits of the bit sequence generated by the CRC encoding.

11. The communication method according to claim 9 , wherein the scrambling is performed by multiplying the value of the Scrambler Initialization field with a certain value, limiting a number of bits of the multiplication result to generate a scrambling pattern, and adding the scramble pattern to each of the plurality of words.

12. The communication method according to claim 9 , wherein

the plurality of bits that form the BSSID are 48 bits; and

the Short Scrambled BSSID is generated by dividing the 48 bits into three words, each consisting of 16 bits, and adding a scramble pattern to each of the three words, wherein the scramble pattern is generated by using the value of the Scrambler Initialization field.

13. The communication method according to claim 12 , wherein the scramble pattern is generated by multiplying the value of the Scrambler Initialization field with a certain value and limiting a number of bits of the multiplication result.

14. The communication method according to claim 9 , wherein the upper bits of the bit sequence generated by the CRC encoding are upper 10 bits among 16 bits generated by the CRC encoding.

15. The communication method according to claim 9 , wherein

the Short SSW Payload field includes a Direction subfield for indicating a transmission direction;

when the Direction subfield indicates a Transmission Sector Sweep by a Responder, the Short SSW Payload field includes a Short Sector Sweep Feedback subfield; and

when the Direction subfield indicates a Transmission Sector Sweep by the Initiator, the Short SSW Payload field includes the Short Scrambled BSSID subfield and a Reserved subfield instead of the Short Sector Sweep Feedback subfield.

16. The communication method according to claim 9 , wherein the Short SSW Payload field includes a Packet Type subfield for indicating whether the Short SSW Payload is a Short Sector Sweep packet or not.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2019
From: MOTOZUKA, HIROYUKI; IRIE, MASATAKA; SAKAMOTO, TAKENORI; SHIRAKATA, NAGANORI; WEE, YAO HUANG GAIUS; SIM, MICHAEL HONG CHENG; HUANG, LEI
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 048017/0230 →
Priority Claims (6)
JP 2016-082154 · Apr 15, 2016 · national
JP 2016-112661 · Jun 6, 2016 · national
JP 2016-138493 · Jul 13, 2016 · national
JP 2016-143578 · Jul 21, 2016 · national
JP 2016-158834 · Aug 12, 2016 · national
JP 2016-171220 · Sep 1, 2016 · national
Continuity (2)
Continuation PCTJP2017013900 · Apr 3, 2017
Related Publication 20190052327A1 · Feb 14, 2019