IP Library › Granted Patent US 9,066,356
Granted Patent B2
US 9,066,356 · App. 13/718,024 · Granted Jun 23, 2015

Wireless communication system provided in aircraft for communicating using plural wireless channels

Inventor: Masaaki Higashida (Osaka, JP)
Assignee: Panasonic Intellectual Property Management Co., Ltd.
H04W74/0816H04B7/18506H04H20/62H04W84/005
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Quick Facts
Patent No.
US 9,066,356
App. No.
13/718,024
Granted
Jun 23, 2015
Kind
B2
Abstract

In a wireless communication system including a plurality of wireless stations provided in a structure having a radio wave shield arranged at a fixed position, at least one of two wireless stations using an identical wireless channel and two wireless stations using wireless channels adjacent to each other are allocated on both sides of the radio wave shield, respectively. In this case, the structure is an aircraft, and the two wireless stations are allocated on different aisles of the aircraft, respectively. In addition, the two wireless stations are allocated to be apart from each other in a longitudinal direction of the aircraft.

Claims (12)

1. A wireless communication system comprising a plurality of wireless stations provided in an aircraft having a radio wave shield arranged at a fixed position,

wherein at least one range of wireless channel set is provided in the aircraft, the wireless channel set including a plurality of wireless channels of wireless stations provided on both sides of the radio wave shield, the plurality of wireless channels included in the wireless channel set being different from each other,

wherein, in the range of the wireless channel set, two wireless stations using wireless channels adjacent to each other are allocated on both sides of the radio wave shield at different positions sandwiching a seat group at a center of an airframe of the aircraft, respectively, and

wherein the two wireless stations are allocated to be apart from each other in a longitudinal direction of the aircraft, such that (i) the two wireless stations do not face each other and (ii) the two wireless stations sandwich at least one further wireless station having a wireless channel different from the wireless channels of the two wireless stations in the longitudinal direction of the aircraft.

2. The wireless communication system as claimed in claim 1 ,

wherein each of the wireless stations includes a radiation pattern having a main beam in a direction substantially parallel to a width direction of the aircraft.

3. A wireless channel allocation method for use in a wireless communication system including a plurality of wireless stations provided in an aircraft having a radio wave shield arranged at a fixed position, the wireless channel allocation method including;

providing at least one range of wireless channel set in the aircraft, the wireless channel set including a plurality of wireless channels of wireless stations provided on both sides of the radio wave shield, the plurality of wireless channels included in the wireless channel set being different from each other;

allocating, in the range of the wireless channel set, two wireless stations using wireless channels adjacent to each other on both sides of the radio wave shield at different positions sandwiching a seat group at a center of an airframe of the aircraft, respectively; and

allocating the two wireless stations to be apart from each other in a longitudinal direction of the aircraft, such that (i) the two wireless stations do not face each other and (ii) the two wireless stations sandwich at least one further wireless station having a wireless channel different from the wireless channels of the two wireless stations in the longitudinal direction of the aircraft.

4. The wireless channel allocation method as claimed in claim 3 ,

wherein each of the wireless stations includes a radiation pattern having a main beam in a direction substantially parallel to a width direction of the aircraft.

Priority Claims (1)
JP 2006-184057 · Jul 4, 2006 · national
Continuity (2)
Division 12162636
Related Publication 20130170448A1 · Jul 4, 2013