IP Library Granted Patent US 11,700,560
Granted Patent B2
US 11,700,560 · App. 17/619,663 · Granted Jul 11, 2023

Wireless communication system, wireless communication method and terminal device

Inventors: Ryota Shiina (Musashino, JP); Kazutaka Hara (Musashino, JP); Tomohiro Taniguchi (Musashino, JP); Tomoki Murakami (Musashino, JP); Toshiro Nakahira (Musashino, JP)
Assignee: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
H04W36/08H04B10/0795H04B10/112
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Quick Facts
Patent No.
US 11,700,560
App. No.
17/619,663
Granted
Jul 11, 2023
Kind
B2
Abstract

The present disclosure aims to enable communication to be performed with stable quality even when a user uses a terminal while moving. In the wireless communication system according to the present disclose, a switching control unit 15 sets switching illuminance p th for maintaining illuminance of an optical signal received by a terminal 91 at requested illuminance corresponding to throughput or higher during the time until connection switching between the communication with an optical wireless access point 92 and the communication with an RF wireless access point 93 is completed, and when the received illuminance p becomes lower than the switching illuminance p th during connection with the optical wireless access point 92 , the switching control unit 15 performs connection switching from the optical wireless communication to the RF wireless communication.

Claims (76)

1. A wireless communication system comprising:

an optical wireless access point;

a radio frequency (RF) wireless access point; and

a terminal device having a switching control unit that performs a communication process with the optical wireless access point and the RF wireless access point, wherein

assuming that illuminance of an optical signal for performing communication at a throughput set for communication with the optical wireless access point is requested illuminance, the switching control unit sets switching illuminance for maintaining illuminance of an optical signal received by the terminal device at the requested illuminance or higher during a time until connection switching between communication with the optical wireless access point and communication with the RF wireless access point is completed, measures received illuminance of an optical signal transmitted from the optical wireless access point during connection with the optical wireless access point, and compares measured received illuminance with the switching illuminance, and

when the received illuminance becomes lower than the switching illuminance during the connection with the optical wireless access point, the switching control unit performs connection switching from the communication with the optical wireless access point to the communication with the RF wireless access point.

2. The wireless communication system according to claim 1 , wherein

the switching control unit

sets reference illuminance for received illuminance higher than the switching illuminance,

measures the received illuminance of the optical signal transmitted from the optical wireless access point during connection with the RF wireless access point, and compares the measured received illuminance with the reference illuminance, and

when the received illuminance becomes equal to or higher than the reference illuminance during the connection with the RF wireless access point, performs connection switching from the communication with the RF wireless access point to the communication with the optical wireless access point.

3. The wireless communication system according to claim 1 , wherein

the switching control unit

acquires a distance between the terminal device and the optical wireless access point, and a moving velocity of the terminal device, and

sets the switching illuminance using the distance and the moving velocity acquired.

4. The wireless communication system according to claim 3 , wherein the switching control unit derives the switching illuminance using a following expression:

[

Math

.

C1

]

p

th

=

Δ

t

"\[LeftBracketingBar]"

-

nv

L

cos

n

+

1

α

sin

α

"\[RightBracketingBar]"

maximized

+

p

req

(

C1

)

where

α=tan −1 vt/L , 0≤α≤π/2

p th : switching illuminance

Δt: channel switching time

n: predetermined coefficient

v: moving velocity of terminal device

L: distance between terminal device and optical wireless access point p req : requested illuminance.

5. The wireless communication system according to claim 4 , wherein

the channel switching time is a time calculated by eliminating a time required for an authentication process at the RF wireless access point from a time required for channel switching from the optical wireless access point to the RF wireless access point, or a time calculated by eliminating a time required for an authentication process at the optical wireless access point from a time required for channel switching from the RF wireless access point to the optical wireless access point.

6. A terminal device comprising:

an optical wireless communication unit that performs communication with an optical wireless access point, and an RF wireless communication unit that performs communication with a radio frequency (RF) wireless access point; and

a switching control unit that,

assuming that illuminance of an optical signal for performing communication at a throughput set for the communication with the optical wireless access point is requested illuminance, sets switching illuminance for maintaining illuminance of an optical signal received by the terminal device at the requested illuminance or higher during a time until connection switching between communication with the optical wireless access point and communication with the RF wireless access point is completed,

measures received illuminance of an optical signal transmitted from the optical wireless access point during connection with the optical wireless access point, and compares measured received illuminance with the switching illuminance, and

when the received illuminance becomes lower than the switching illuminance during the connection with the optical wireless access point, performs connection switching from the communication with the optical wireless access point to the communication with the RF wireless access point.

7. A wireless communication method comprising:

by a switching control unit provided to a terminal device, assuming that illuminance of an optical signal for performing communication at a throughput set for communication with the optical wireless access point is requested illuminance, setting switching illuminance for maintaining illuminance of an optical signal received by the terminal device at the requested illuminance or higher during a time until connection switching between communication with the optical wireless access point and communication with the radio frequency (RF) wireless access point is completed;

measuring received illuminance of an optical signal transmitted from the optical wireless access point during connection with the optical wireless access point, and comparing measured received illuminance with the switching illuminance; and

when the received illuminance becomes lower than the switching illuminance during the connection with the optical wireless access point, performing connection switching from the communication with the optical wireless access point to the communication with the RF wireless access point.

8. The wireless communication method according to claim 7 , further comprising:

by the optical wireless communication unit, performing an authentication process with the optical wireless access point, and by the RF wireless communication unit, performing an authentication process with the RF wireless access point; and

after a connection process by the optical wireless communication unit and the RF wireless communication unit, by the switching control unit, comparing the received illuminance with the switching illuminance.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 4, 2023
From: SHIINA, RYOTA; HARA, KAZUTAKA; TANIGUCHI, TOMOHIRO; MURAKAMI, TOMOKI; NAKAHIRA, TOSHIRO
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 062275/0219 →
Continuity (1)
Related Publication 20220361070A1 · Nov 10, 2022
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