IP Library Granted Patent US 9,621,250
Granted Patent B2
US 9,621,250 · App. 13/501,493 · Granted Apr 11, 2017

Femto access point operable with different spatial characteristic antenna patterns

Inventors: Andrzej Waz-Ambrozewicz (Wroclaw, PL); Maciej Pakulski (Czernica, PL)
Assignee: Nokia Solutions and Networks Oy
H04B7/0695H04B7/063H04B7/088H04W72/046H04W84/045
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Quick Facts
Patent No.
US 9,621,250
App. No.
13/501,493
Granted
Apr 11, 2017
Kind
B2
Abstract

It is described a femto access point for providing wireless access for a user equipment to a femto cell of a telecommunication network. The femto access point includes an antenna which is adapted to operate with different spatial characteristic antenna patterns, and a transceiver unit, which is coupled to the antenna and which is adapted to activate at least one of the different spatial characteristic antenna patterns. It is further described a method for providing wireless access for a user equipment to a femto cell of a telecommunication network via a femto access point. The method includes activating at least one spatial characteristic antenna pattern of an antenna of a femto access point, wherein the antenna is adapted to operate with different spatial characteristic antenna patterns.

Claims (41)

1. An apparatus, comprising: a femto access point for providing wireless access for a user equipment to a femto cell of a telecommunication network, the femto access point comprising,

a controller for controlling an antenna adapted to operate with different spatial characteristic antenna patterns for communication with one or more stationary wireless devices located within a pre-determined access range of the femto access point, wherein the antenna comprises at least two antenna elements and the different spatial characteristic antenna patterns are achievable by varying a phase shift between the antenna elements, and the phase shift is applied both when the femto access point is transmitting and receiving a radio signal wherein the transmission to and reception from the antenna is enhanced for wireless communication in the pre-determined access range of the femto access point, and wherein the different spatial characteristic antenna patterns includes antenna patterns optimized for the transmission and reception of wireless communication between the femto access point and the one or more stationary wireless devices located within the pre-determined access range, and

a transceiver unit, coupled to the antenna and adapted to activate at least one of the different spatial characteristic antenna patterns, wherein

the transceiver unit comprises a learning system for user equipment including a memory for storing spatial characteristic antenna patterns obtained during a training session, which, after having been successfully trained, is adapted to select an appropriate spatial characteristic antenna pattern from the memory for non-mobile user equipment.

2. The apparatus as claimed in claim 1 , wherein

the antenna elements are patch elements, which are arranged in an antenna array.

3. The apparatus as claimed in claim 1 , wherein

the antenna is a flat panel multi beam antenna.

4. The apparatus as claimed in claim 1 , further comprising

a sensor system for sensing the environment of the femto access point, wherein the sensor system is adapted to provide the transceiver unit information which can be taken into account to activate an appropriate spatial characteristic antenna pattern.

5. The apparatus as claimed in claim 1 , wherein

the femto access point is adapted

(a) to receive neighbor information about neighboring access points and

(b) to assign appropriate frequency and/or scrambling codes used for communication between the femto access point and the user equipment based on the received neighbor information.

6. A method, comprising providing wireless access for a user equipment to a femto cell of a telecommunication network via a femto access point, in particular via a femto access point as set forth in any one of the preceding claims, the method comprising

activating at least one spatial characteristic antenna pattern of an antenna of a femto access point, wherein the antenna is adapted to operate with different spatial characteristic antenna patterns for communication with one or more stationary wireless devices located within a pre-determined access range of the femto access point, and wherein the antenna comprises at least two antenna elements and the different spatial characteristic antenna patterns are achievable by varying a phase shift between the antenna elements, and the phase shift is applied both when the femto access point is transmitting and receiving a radio signal wherein the transmission to and reception from the antenna is enhanced for wireless communication in the pre-determined access range of the femto access point, and wherein the different spatial characteristic antenna patterns includes antenna patterns optimized for the transmission and reception of wireless communication between the femto access point and the one or more stationary wireless devices located within the pre-determined access range; and

carrying out a learning phase for user equipment, wherein a memory is used for storing spatial characteristic antenna patterns obtained during a training session, and where for activating the at least one spatial characteristic antenna pattern results obtained by the learning phase and stored in the memory are taken into account for non-mobile user equipment.

7. The method as claimed in claim 6 , wherein carrying out the learning phase comprises

successively selecting the different spatial characteristic antenna patterns for radiating a radio signal by the femto access point,

receiving the radio signal for each selected spatial characteristic antenna pattern by a receiving communication device,

measuring the level of each received radio signal, and

reporting to the femto access point which spatial characteristic antenna pattern allows for the best radio link between the femto access point and the receiving communication device.

8. The method as claimed in claim 6 , wherein

for each successively selected spatial characteristic antenna pattern the radio signal is received and the respective signal strength is measured by at least two macro base stations being assigned to a macro telecommunication network and

each of the at least two macro base stations reports about the influence of at least one selected spatial characteristic antenna pattern on the performance of the macro telecommunication network.

9. The method as claimed in claim 8 , wherein

each of the at least two macro base stations report to a dedicated functionality which spatial characteristic antenna pattern allows for the best performance of the macro telecommunication network and

the dedicated functionality compares the reports of the at least two macro base stations and informs the femto access point about a specific spatial characteristic antenna pattern, which allows for the best performance of the macro telecommunication network.

10. A computer program product embodied on a non-transitory computer-readable medium in which a computer program is stored that, when being executed by a computer, is configured to provide instruction to control or carry out: activating at least one spatial characteristic antenna pattern of an antenna of a femto access point, wherein the antenna is adapted to operate with different spatial characteristic antenna patterns for communication with one or more stationary wireless devices located within a pre-determined access range of the femto access point, and wherein the antenna comprises at least two antenna elements and the different spatial characteristic antenna patterns are achievable by varying a phase shift between the antenna elements, and the phase shift is applied both when the femto access point is transmitting and receiving a radio signal wherein the transmission to and reception from the antenna is enhanced for wireless communication in the pre-determined access range of the femto access point, and wherein the different spatial characteristic antenna patterns includes antenna patterns optimized for the transmission and reception of wireless communication between the femto access point and the one or more stationary wireless devices located within the pre-determined access range; and

carrying out a learning phase for user equipment, wherein a memory is used for storing spatial characteristic antenna patterns obtained during a training session, and where for activating the at least one spatial characteristic antenna pattern results obtained by the learning phase and stored in the memory are taken into account for non-mobile user equipment.

11. The computer program product as claimed in claim 10 , wherein carrying out the learning phase comprises

successively selecting the different spatial characteristic antenna patterns for radiating a radio signal by the femto access point,

receiving the radio signal for each selected spatial characteristic antenna pattern by a receiving communication device,

measuring the level of each received radio signal, and

reporting to the femto access point which spatial characteristic antenna pattern allows for the best radio link between the femto access point and the receiving communication device.

12. The computer program product as claimed in claim 11 , wherein

for each successively selected spatial characteristic antenna pattern the radio signal is received and the respective signal strength is measured by at least two macro base stations being assigned to a macro telecommunication network and

each of the at least two macro base stations reports about the influence of at least one selected spatial characteristic antenna pattern on the performance of the macro telecommunication network.

13. The computer program product as claimed in claim 12 , wherein

each of the at least two macro base stations report to a dedicated functionality which spatial characteristic antenna pattern allows for the best performance of the macro telecommunication network and

the dedicated functionality compares the reports of the at least two macro base stations and informs the femto access point about a specific spatial characteristic antenna pattern, which allows for the best performance of the macro telecommunication network.

Assignments (12)
PATENT SECURITY AGREEMENT Recorded Aug 6, 2024
From: RPX CORPORATION; RPX CLEARINGHOUSE LLC
To: BARINGS FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 068328/0674 →
RELEASE OF LIEN ON PATENTS Recorded Aug 5, 2024
From: BARINGS FINANCE LLC
To: RPX CORPORATION
Reel/Frame 068328/0278 →
PATENT SECURITY AGREEMENT Recorded Apr 22, 2023
From: RPX CORPORATION
To: BARINGS FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 063429/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 28, 2021
From: PROVENANCE ASSET GROUP LLC
To: RPX CORPORATION
Reel/Frame 059352/0001 →
RELEASE OF SECURITY INTEREST Recorded Nov 30, 2021
From: NOKIA US HOLDINGS INC.
To: PROVENANCE ASSET GROUP HOLDINGS LLC; PROVENANCE ASSET GROUP LLC
Reel/Frame 058363/0723 →
RELEASE OF SECURITY INTEREST Recorded Nov 30, 2021
From: CORTLAND CAPITAL MARKETS SERVICES LLC
To: PROVENANCE ASSET GROUP HOLDINGS LLC; PROVENANCE ASSET GROUP LLC
Reel/Frame 058983/0104 →
ASSIGNMENT AND ASSUMPTION AGREEMENT Recorded Feb 14, 2019
From: NOKIA USA INC.
To: NOKIA US HOLDINGS INC.
Reel/Frame 048370/0682 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2017
From: NOKIA TECHNOLOGIES OY; NOKIA SOLUTIONS AND NETWORKS BV; ALCATEL LUCENT SAS
To: PROVENANCE ASSET GROUP LLC
Reel/Frame 043877/0001 →
SECURITY INTEREST Recorded Sep 13, 2017
From: PROVENANCE ASSET GROUP HOLDINGS, LLC; PROVENANCE ASSET GROUP, LLC
To: CORTLAND CAPITAL MARKET SERVICES, LLC
Reel/Frame 043967/0001 →
SECURITY INTEREST Recorded Sep 13, 2017
From: PROVENANCE ASSET GROUP HOLDINGS, LLC; PROVENANCE ASSET GROUP LLC
To: NOKIA USA INC.
Reel/Frame 043879/0001 →
CHANGE OF NAME Recorded Nov 19, 2014
From: NOKIA SIEMENS NETWORKS OY
To: NOKIA SOLUTIONS AND NETWORKS OY
Reel/Frame 034294/0603 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2012
From: PAKULSKI, MACIEJ
To: NOKIA SIEMENS NETWORKS OY
Reel/Frame 028933/0594 →
Continuity (1)
Related Publication 20130045692A1 · Feb 21, 2013