Patents by Inventor Joel Kauppo

Joel Kauppo has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11978962
    Abstract: An antenna array that utilizes ground guard rings and metamaterial structures is disclosed. In certain embodiments, the antenna array is constructed from a plurality of antenna unit cells, wherein each antenna unit cell is identical. The antenna unit cell comprises a top surface, that contains a patch antenna and a ground guard ring. A reactive impedance surface (RIS) layer is disposed beneath the top surface and contains the metamaterial structures. The metamaterial structures are configured to present an inductance to the patch antennas, thereby allowing the patch antennas to be smaller than would otherwise be possible. In some embodiments, the metamaterial structures comprise hollow square frames. An antenna array constructed using this antenna unit cell has less coupling than conventional antenna arrays, which results in better performance. Furthermore, this new antenna array also requires less space than conventional antenna arrays.
    Type: Grant
    Filed: June 22, 2022
    Date of Patent: May 7, 2024
    Assignee: Silicon Laboratories Inc.
    Inventors: Attila Zólomy, Ádám Süle, Joel Kauppo, Terry Lee Dickey, Jeffrey Tindle
  • Patent number: 11963037
    Abstract: A wireless locator that facilitates determining a location of a nearby wireless asset including an antenna array with multiple antennas, at least one wireless transceiver that receives a location signal from the nearby wireless asset and that takes multiple samples from the location signal including a set of samples for each antenna, and a processor that compresses the samples to generate location information associated with the nearby wireless asset. The wireless locator may be part of a wireless location system including multiple wireless locators distributed in the area and a central processing system. Various compression methods are disclosed, including averaging of the samples, bit reduction of the samples, converting the samples to corresponding phase values, and combining corresponding samples of multiple sample supplemental sets. Combinations of the various compression methods are also disclosed.
    Type: Grant
    Filed: May 13, 2021
    Date of Patent: April 16, 2024
    Assignee: Silicon Laboratories Inc.
    Inventors: Antonio Torrini, Joel Kauppo, Sauli Johannes Lehtimaki
  • Publication number: 20240061115
    Abstract: A system and method for determine the spatial position of a network device is disclosed. A locator device having an antenna array is used to perform an AoX calculation to find the direction to the network device. The AoX calculation utilizes a plurality of the antennas in the antenna array. The locator device also performs a high accuracy distance measurement (HADM). In certain embodiments, only one antenna in the antenna array is used for the HADM calculation. Using the direction and the distance to the network device, the locator is able to determine the spatial position of the network device. In some embodiments, the antenna array may a rotational symmetry array having a plurality of outer antenna elements and one central antenna element.
    Type: Application
    Filed: August 22, 2022
    Publication date: February 22, 2024
    Inventors: Attila Zólomy, Terry Lee Dickey, Sauli Johannes Lehtimaki, Ádám Süle, Joel Kauppo, Mika Tapio Länsirinne
  • Publication number: 20230420869
    Abstract: An antenna array that utilizes ground guard rings and metamaterial structures is disclosed. In certain embodiments, the antenna array is constructed from a plurality of antenna unit cells, wherein each antenna unit cell is identical. The antenna unit cell comprises a top surface, that contains a patch antenna and a ground guard ring. A reactive impedance surface (RIS) layer is disposed beneath the top surface and contains the metamaterial structures. The metamaterial structures are configured to present an inductance to the patch antennas, thereby allowing the patch antennas to be smaller than would otherwise be possible. In some embodiments, the metamaterial structures comprise hollow square frames. An antenna array constructed using this antenna unit cell has less coupling than conventional antenna arrays, which results in better performance. Furthermore, this new antenna array also requires less space than conventional antenna arrays.
    Type: Application
    Filed: June 22, 2022
    Publication date: December 28, 2023
    Inventors: Attila Zólomy, Ádám Süle, Joel Kauppo, Terry Lee Dickey, Jeffrey Tindle
  • Patent number: 11456530
    Abstract: A system and method for determining a position or a movable device is disclosed. The present system utilizes a movable device equipped with a locator device that has an antenna array such that it may determine the angle of arrival of a plurality of incoming beacon signals. In certain embodiments, the movable device is also able to measure its distance travelled. By knowing its distance moved and the angle of arrival from each beacon, the locator device is able to calculate its position as well as the position of each beacon. This procedure may be executed at regular intervals so that the movable device accurately determines its position.
    Type: Grant
    Filed: June 16, 2020
    Date of Patent: September 27, 2022
    Assignee: Silicon Laboratories Inc.
    Inventors: Sauli Johannes Lehtimaki, Mika Tapio Länsirinne, Jere Knaappila, Joel Kauppo
  • Patent number: 11415657
    Abstract: A system and method of determining the angle of arrival or departure using a neural network is disclosed. The system collects a plurality of I and Q samples as a packet containing a constant tone extension is being received. The I and Q samples are used to form I and Q arrays, which are used as the input to the neural network. The neural network produces a first output representative of the azimuth angle and a second output representative of the elevation angle. In certain embodiments, the neural network is capable of detecting a plurality of angles, where, for each angle, there are three outputs, a first output representative of the azimuth angle, a second output representative of the elevation angle and a third output representative of the relative amplitude. In some embodiments, the neural network is configured to determine the carrier frequency offset of an incoming signal as well.
    Type: Grant
    Filed: September 30, 2019
    Date of Patent: August 16, 2022
    Assignee: Silicon Laboratories Inc.
    Inventors: Antonio Torrini, Sebastian Ahmed, Joel Kauppo, Sauli Johannes Lehtimaki
  • Publication number: 20220137175
    Abstract: A system and method for determining a position or a movable device is disclosed. The present system utilizes a movable device equipped with a locator device that has an antenna array such that it may determine the angle of arrival of a plurality of incoming beacon signals. In certain embodiments, the movable device is also able to measure its distance travelled. By knowing its distance moved and the angle of arrival from each beacon, the locator device is able to calculate its position as well as the position of each beacon. This procedure may be executed at regular intervals so that the movable device accurately determines its position.
    Type: Application
    Filed: January 20, 2022
    Publication date: May 5, 2022
    Inventors: Sauli Johannes Lehtimaki, Mika Tapio Länsirinne, Jere Knaappila, Joel Kauppo
  • Patent number: 11262430
    Abstract: A system and method for determining a position or a movable device is disclosed. The present system utilizes a movable device equipped with a locator device that has an antenna array such that it may determine the angle of arrival of a plurality of incoming beacon signals. In certain embodiments, the movable device is also able to measure its distance travelled. By knowing its distance moved and the angle of arrival from each beacon, the locator device is able to calculate its position as well as the position of each beacon. This procedure may be executed at regular intervals so that the movable device accurately determines its position.
    Type: Grant
    Filed: June 16, 2020
    Date of Patent: March 1, 2022
    Assignee: Silicon Laboratories Inc.
    Inventors: Sauli Johannes Lehtimaki, Mika Tapio Länsirinne, Jere Knaappila, Joel Kauppo
  • Publication number: 20210389406
    Abstract: A system and method for determining a position or a movable device is disclosed. The present system utilizes a movable device equipped with a locator device that has an antenna array such that it may determine the angle of arrival of a plurality of incoming beacon signals. In certain embodiments, the movable device is also able to measure its distance travelled. By knowing its distance moved and the angle of arrival from each beacon, the locator device is able to calculate its position as well as the position of each beacon. This procedure may be executed at regular intervals so that the movable device accurately determines its position.
    Type: Application
    Filed: June 16, 2020
    Publication date: December 16, 2021
    Inventors: Sauli Johannes Lehtimaki, Mika Tapio Länsirinne, Jere Knaappila, Joel Kauppo
  • Publication number: 20210391648
    Abstract: A system and method for determining a position or a movable device is disclosed. The present system utilizes a movable device equipped with a locator device that has an antenna array such that it may determine the angle of arrival of a plurality of incoming beacon signals. In certain embodiments, the movable device is also able to measure its distance travelled. By knowing its distance moved and the angle of arrival from each beacon, the locator device is able to calculate its position as well as the position of each beacon. This procedure may be executed at regular intervals so that the movable device accurately determines its position.
    Type: Application
    Filed: June 16, 2020
    Publication date: December 16, 2021
    Inventors: Sauli Johannes Lehtimaki, Mika Tapio Länsirinne, Jere Knaappila, Joel Kauppo
  • Publication number: 20210266790
    Abstract: A wireless locator that facilitates determining a location of a nearby wireless asset including an antenna array with multiple antennas, at least one wireless transceiver that receives a location signal from the nearby wireless asset and that takes multiple samples from the location signal including a set of samples for each antenna, and a processor that compresses the samples to generate location information associated with the nearby wireless asset. The wireless locator may be part of a wireless location system including multiple wireless locators distributed in the area and a central processing system. Various compression methods are disclosed, including averaging of the samples, bit reduction of the samples, converting the samples to corresponding phase values, and combining corresponding samples of multiple sample supplemental sets. Combinations of the various compression methods are also disclosed.
    Type: Application
    Filed: May 13, 2021
    Publication date: August 26, 2021
    Inventors: Antonio Torrini, Joel Kauppo, Sauli Johannes Lehtimaki
  • Patent number: 11044631
    Abstract: A wireless locator that facilitates determining a location of a nearby wireless asset including an antenna array with multiple antennas, at least one wireless transceiver that receives a location signal from the nearby wireless asset and that takes multiple samples from the location signal including a set of samples for each antenna, and a processor that compresses the samples to generate location information associated with the nearby wireless asset. The wireless locator may be part of a wireless location system including multiple wireless locators distributed in the area and a central processing system. Various compression methods are disclosed, including averaging of the samples, bit reduction of the samples, converting the samples to corresponding phase values, and combining corresponding samples of multiple sample supplemental sets. Combinations of the various compression methods are also disclosed.
    Type: Grant
    Filed: December 21, 2018
    Date of Patent: June 22, 2021
    Assignee: Silicon Laboratories Inc.
    Inventors: Antonio Torrini, Joel Kauppo, Sauli Johannes Lehtimaki
  • Publication number: 20210096207
    Abstract: A system and method of determining the angle of arrival or departure using a neural network is disclosed. The system collects a plurality of I and Q samples as a packet containing a constant tone extension is being received. The I and Q samples are used to form I and Q arrays, which are used as the input to the neural network. The neural network produces a first output representative of the azimuth angle and a second output representative of the elevation angle. In certain embodiments, the neural network is capable of detecting a plurality of angles, where, for each angle, there are three outputs, a first output representative of the azimuth angle, a second output representative of the elevation angle and a third output representative of the relative amplitude. In some embodiments, the neural network is configured to determine the carrier frequency offset of an incoming signal as well.
    Type: Application
    Filed: September 30, 2019
    Publication date: April 1, 2021
    Inventors: Antonio Torrini, Sebastian Ahmed, Joel Kauppo, Sauli Johannes Lehtimaki
  • Publication number: 20200309891
    Abstract: An optimized system and method for determining an angle of arrival or angle of departure is disclosed. A coarse pre-search is performed to identify the general location of the incoming signal. Based on this information, a high-resolution search is performed at the general location identified in the coarse pre-search. This multi-stage approach significantly reduces the number of computations that must be performed by the device, and also reduces the amount of memory that is required to store the results of the computations. For example, a full scan may require the computations to be performed over 32,000 times. Through use of this approach, the number of computations may be reduced by over 97%. This is a similar reduction in computation time and in the amount of memory consumed by this method.
    Type: Application
    Filed: March 26, 2019
    Publication date: October 1, 2020
    Inventors: Joel Kauppo, Sauli Johannes Lehtimaki, Antonio Torrini
  • Patent number: 10700901
    Abstract: A system and method for detecting and compensating for carrier frequency offset is disclosed. This system compensates for CFO and calculates a corrected phase. This corrected phase may be used by, for example, an AoX algorithm, such as MUSIC, to more accurately determine the angle of arrival or angle of departure of a signal. In certain embodiments, the system oversamples the incoming signal to create a plurality of samples. The system then determines the phase of each of the plurality of samples and calculates the carrier frequency based on the time derivative of the phase. In certain embodiments, a particular portion of an incoming packet is used to determine the carrier frequency offset. In other embodiments, the system calculates the carrier frequency offset throughout an entirety of the incoming packet. Once the carrier frequency offset is determined, it can be used to adjust the received signals. These adjusted signals are then used to determine the angle of arrival or angle of departure.
    Type: Grant
    Filed: September 30, 2019
    Date of Patent: June 30, 2020
    Assignee: Silicon Laboratories, Inc.
    Inventors: Antonio Torrini, Joel Kauppo, Sauli Johannes Lehtimaki
  • Publication number: 20200205032
    Abstract: A wireless locator that facilitates determining a location of a nearby wireless asset including an antenna array with multiple antennas, at least one wireless transceiver that receives a location signal from the nearby wireless asset and that takes multiple samples from the location signal including a set of samples for each antenna, and a processor that compresses the samples to generate location information associated with the nearby wireless asset. The wireless locator may be part of a wireless location system including multiple wireless locators distributed in the area and a central processing system. Various compression methods are disclosed, including averaging of the samples, bit reduction of the samples, converting the samples to corresponding phase values, and combining corresponding samples of multiple sample supplemental sets. Combinations of the various compression methods are also disclosed.
    Type: Application
    Filed: December 21, 2018
    Publication date: June 25, 2020
    Inventors: ANTONIO TORRINI, Joel Kauppo, Sauli Johannes Lehtimaki