IP Library Patent Application 11835666
Patent Application
App. No. 11/835,666

METHOD AND SYSTEM FOR WIRELESS COMMUNICATION IN MULTIPLE OPERATING ENVIRONMENTS

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Quick Facts
Patent No.
US None
App. No.
11/835,666
Filed
Aug 8, 2007
Art Unit
2647
USPC
455/552.1
Abstract

A wireless communication method and system are provided. A first wireless communication numerology, e.g., OFDM operating parameters, corresponding to a first operational mode is established. A second wireless communication numerology corresponding to a second operational mode is also established. The first wireless communication numerology is different than the second wireless communication numerology. One of the first operational mode and the second operational mode is selected. One of the first wireless communication numerology and the second wireless communication numerology corresponding the selected operational mode is used in which communication in the first operational mode and the second operational mode use substantially similar synchronization channels. The present invention also uses the same superframe structure for the first and second operational modes for Ultra-Mobile Broadband (“UMB”) networks and the same frame structure for the first and second operational modes for Long Term Evolution (“LTE”) networks.

Claims (36)

1 . A wireless communication method, comprising:

establishing a first wireless communication numerology corresponding to a first operational mode;

establishing a second wireless communication numerology corresponding to a second operational mode, the first wireless communication numerology being different than the second wireless communication numerology;

selecting one of the first operational mode and the second operational mode;

using one of the first wireless communication numerology and the second wireless communication numerology corresponding the selected operational mode, communication in the first operational mode and the second operational mode using substantially similar initial access channels.

2 . The wireless communication method of claim 1 , wherein the first operational mode corresponds to indoor wireless terminal operation and the second operational mode corresponds to outdoor wireless terminal operation.

3 . The wireless communication method of claim 1 , wherein the first operational mode corresponds to wireless terminal operation using frequency division duplex communication and the second operational mode corresponds to wireless terminal operation using time division duplex communication.

4 . The wireless communication method of claim 1 , wherein the first wireless communication numerology includes a first fast fourier transform (“FFT”) size and a first cyclic prefix (“CP”) value and the second wireless communication numerology includes second FFT size and a second CP value, at least one of the first FFT size and the second FFT size, and the first CP value and the second CP value being different.

5 . The wireless communication method of claim 1 , wherein communication in the first operational mode and the second operational mode use a same primary broadcast (“pBCH”) channel.

6 . The wireless communication method of claim 5 , wherein communication in the first operational mode and the second operational mode use different secondary broadcast (“sBCH”) channels.

7 . The wireless communication method of claim 1 , wherein a frame structure for wireless communication in the first operational mode is the same as the frame structure for wireless communication in the second operational mode.

8 . The wireless communication method of claim 1 , wherein a sampling frequency for communication in the first operational mode is the same as the sampling frequency for communication in the second operational mode.

9 . The wireless communication method of claim 1 , wherein the first operational mode is a time division duplex (“TDD”) mode having a first downlink to uplink transmission ratio and the second operational mode is a time division duplex mode having a second downlink to uplink transmission ratio, a TDD frame duration being the same for operation in the first operational mode and the second operational mode.

10 . The wireless communication method of claim 9 , wherein the TDD frame is comprised of a plurality of TDD slots arranged into uplink TDD slots and downlink TDD slots, the TDD frame having a synchronous transmission period in which the boundaries of downlink transmission and uplink transmission TDD slots are aligned among base stations and an asynchronous transmission period in which each base station selects a type of TDD uplink and downlink transmission slot arrangement from all available channel allocation schemes. 1.

A wireless communication method, comprising:

establishing a first wireless communication numerology corresponding to a first operational mode;

establishing a second wireless communication numerology corresponding to a second operational mode, the first wireless communication numerology being different than the second wireless communication numerology;

selecting one of the first operational mode and the second operational mode;

using one of the first wireless communication numerology and the second wireless communication numerology corresponding the selected operational mode, communication in the first operational mode and the second operational mode using substantially similar initial access channels.

11 . A wireless communication system, the system comprising:

a base station, the base station:

storing a first wireless communication numerology corresponding to a first operational mode;

storing a second wireless communication numerology corresponding to a second operational mode, the first wireless communication numerology being different than the second wireless communication numerology;

selecting one of the first operational mode and the second operational mode; and

using one of the first wireless communication numerology and the second wireless communication numerology corresponding the selected operational mode, communication in the first operational mode and the second operational mode using substantially similar initial access channels.

12 . The wireless communication system of claim 11 , wherein the first operational mode corresponds to indoor wireless terminal operation and the second operational mode corresponds to outdoor wireless terminal operation.

13 . The wireless communication system of claim 11 , wherein the first operational mode corresponds to wireless terminal operation using frequency division duplex communication and the second operational mode corresponds to wireless terminal operation using time division duplex communication.

14 . The wireless communication system of claim 11 , wherein the first wireless communication numerology includes a first fast fourier transform (“FFT”) size and a first cyclic prefix (“CP”) value and the second wireless communication numerology includes second FFT size and a second CP value, at least one of the first FFT size and the second FFT size, and the first CP value and the second CP value being different.

15 . The wireless communication system of claim 11 , wherein communication in the first operational mode and the second operational mode use a same primary broadcast (“pBCH”) channel.

16 . The wireless communication system of claim 15 , wherein communication in the first operational mode and the second operational mode use different secondary broadcast (“sBCH”) channels.

17 . The wireless communication system of claim 11 , wherein a frame structure for wireless communication in the first operational mode is the same as the frame structure for wireless communication in the second operational mode.

18 . The wireless communication system of claim 11 , wherein a sampling frequency for communication in the first operational mode is the same as the sampling frequency for communication in the second operational mode.

19 . The wireless communication system of claim 11 , wherein the first operational mode is a time division duplex (“TDD”) mode having a first downlink to uplink transmission ratio and the second operational mode is a time division duplex mode having a second downlink to uplink transmission ratio, a TDD frame duration being the same for operation in the first operational mode and the second operational mode.

20 . A method for wireless communication using a time division duplex (“TDD”) frame having a plurality of TDD slots for TDD communication, the method comprising:

arranging the plurality of TDD slots into uplink TDD slots and downlink TDD slots, the TDD frame having a synchronous transmission period in which the boundaries of downlink transmission and uplink transmission TDD slots are aligned among base stations and an asynchronous transmission period; and

selecting, for transmission during the asynchronous transmission period, a type of TDD uplink and downlink transmission slot arrangement from all available channel allocation schemes.

Assignments (5)
CHANGE OF NAME Recorded Oct 16, 2014
From: RESEARCH IN MOTION LIMITED
To: BLACKBERRY LIMITED
Reel/Frame 034012/0031 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2012
From: ROCKSTAR BIDCO, LP
To: 2256355 ONTARIO LIMITED
Reel/Frame 028018/0848 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2012
From: 2256355 ONTARIO LIMITED
To: RESEARCH IN MOTION LIMITED
Reel/Frame 028020/0474 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2011
From: NORTEL NETWORKS LIMITED
To: ROCKSTAR BIDCO, LP
Reel/Frame 027143/0717 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2007
From: MA, JIANGLEI; FONG, MO-HAN; ZHANG, HANG; LI, JUN; JIA, MING; ZHU, PEIYING; TONG, WEN
To: NORTEL NETWORKS LIMITED
Reel/Frame 019844/0731 →