Patents by Inventor Kalle-Rasmus VOLKOV

Kalle-Rasmus VOLKOV 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: 11989028
    Abstract: A mobile robot is configured to navigate on a sidewalk and deliver a delivery to a predetermined location. The robot has a body and an enclosed space within the body for storing the delivery during transit. At least two cameras are mounted on the robot body and are adapted to take visual images of an operating area. A processing component is adapted to extract straight lines from the visual images taken by the cameras and generate map data based at least partially on the images. A communication component is adapted to send and receive image and/or map data. A mapping system includes at least two such mobile robots, with the communication component of each robot adapted to send and receive image data and/or map data to the other robot. A method involves operating such a mobile robot in an area of interest in which deliveries are to be made.
    Type: Grant
    Filed: February 13, 2023
    Date of Patent: May 21, 2024
    Assignee: Starship Technologies OÜ
    Inventors: Ahti Heinla, Kalle-Rasmus Volkov, Lindsay Roberts, Indrek Mandre
  • Patent number: 11747822
    Abstract: A mobile delivery robot has at least one memory component containing at least map data; at least two cameras adapted to take visual images; and at least one processing component. The at least one processing component is adapted to at least extract straight lines from the visual images taken by the at least two cameras and compare them to the map data to at least localize the robot. The mobile robot employs a localization method which involves taking visual images with at least two cameras; extracting straight lines from the individual visual images with at least one processing component; comparing the extracted features with existing map data; and outputting a location hypothesis based on said comparison.
    Type: Grant
    Filed: June 10, 2021
    Date of Patent: September 5, 2023
    Assignee: STARSHIP TECHNOLOGIES OÜ
    Inventors: Ahti Heinla, Kalle-Rasmus Volkov, Lindsay Roberts, Indrek Mandre
  • Publication number: 20230195131
    Abstract: A mobile robot is configured to navigate on a sidewalk and deliver a delivery to a predetermined location. The robot has a body and an enclosed space within the body for storing the delivery during transit. At least two cameras are mounted on the robot body and are adapted to take visual images of an operating area. A processing component is adapted to extract straight lines from the visual images taken by the cameras and generate map data based at least partially on the images. A communication component is adapted to send and receive image and/or map data. A mapping system includes at least two such mobile robots, with the communication component of each robot adapted to send and receive image data and/or map data to the other robot. A method involves operating such a mobile robot in an area of interest in which deliveries are to be made.
    Type: Application
    Filed: February 13, 2023
    Publication date: June 22, 2023
    Applicant: STARSHIP TECHNOLOGIES OÜ
    Inventors: AHTI HEINLA, KALLE-RASMUS VOLKOV, LINDSAY ROBERTS, INDREK MANDRE
  • Patent number: 11579623
    Abstract: A mobile robot is configured to navigate on a sidewalk and deliver a delivery to a predetermined location. The robot has a body and an enclosed space within the body for storing the delivery during transit. At least two cameras are mounted on the robot body and are adapted to take visual images of an operating area. A processing component is adapted to extract straight lines from the visual images taken by the cameras and generate map data based at least partially on the images. A communication component is adapted to send and receive image and/or map data. A mapping system includes at least two such mobile robots, with the communication component of each robot adapted to send and receive image data and/or map data to the other robot. A method involves operating such a mobile robot in an area of interest in which deliveries are to be made.
    Type: Grant
    Filed: June 10, 2021
    Date of Patent: February 14, 2023
    Assignee: STARSHIP TECHNOLOGIES OÜ
    Inventors: Ahti Heinla, Kalle-Rasmus Volkov, Lindsay Roberts, Indrek Mandre
  • Publication number: 20230023807
    Abstract: A mobile robot configured for vending consumable items. A system configured for vending consumable items comprising a mobile robot, a vending terminal, and a server communicating with each of the other two. A method for vending consumable items using a mobile robot. A method for on-demand consumable item delivery by a mobile robot.
    Type: Application
    Filed: August 10, 2022
    Publication date: January 26, 2023
    Applicant: STARSHIP TECHNOLOGIES OÜ
    Inventors: Ahti HEINLA, Anti VEERANNA, Antti MAKELA, Imre TERAS, Kalle-Rasmus VOLKOV, Kitty MAMERS, Lauri VAIN, Madis MERILA, Markus ZIMMERMANN, Vahur LAAS, Kadri PARIKAS
  • Patent number: 11442419
    Abstract: A mobile robot is configured for vending consumable items. The robot includes a mobile base; a body comprising an item space; a plurality of support elements located in the item space and configured to support consumable items; an item sensor configured to detect presence of one or more consumable items supported by each of the support elements; and an insert configured to removably fit into the item space, and wherein the insert comprises the support elements and the item sensor. A method for vending consumable items uses the mobile robot.
    Type: Grant
    Filed: March 11, 2020
    Date of Patent: September 13, 2022
    Assignee: STARSHIP TECHNOLOGIES OÜ
    Inventors: Ahti Heinla, Anti Veeranna, Antti Makela, Imre Teras, Kalle-Rasmus Volkov, Kitty Mamers, Lauri Vain, Madis Merila, Markus Zimmermann, Vahur Laas, Kadri Parikas
  • Publication number: 20220050473
    Abstract: A method and system for modifying images captured by mobile robots. The method includes capturing at least one image via at least one visual sensor of a mobile robot; converting the at least one image into image data; storing image data; detecting at least one identifier present in the image data; applying an obfuscation to the at least one detected identifier in the image data to gain obfuscated image data; and providing the obfuscated image data to at least one authorized agent. The system includes at least one capturing component wherein the capturing component is configured to capture at least one image at any positioning of the mobile robots; a converting component wherein the converting component is configured to convert at least one image into image data; a storing component for storing the image data; a processing component.
    Type: Application
    Filed: September 18, 2019
    Publication date: February 17, 2022
    Inventors: Rao PÄRNPUU, Kristjan KORJUS, Vahur LAAS, Kalle-Rasmus VOLKOV, Lauri VÄIN, Sergii KHARAGORGIIEV, Joonatan SAMUEL
  • Publication number: 20220028023
    Abstract: A delivery method includes providing a system with at least one server, at least one robot, and at least one delivery terminal. The method includes communicating a request for at least one delivery from the at least one delivery terminal to the at least one server and/or to the at least one robot; providing instructions from the at least one server to the at least one robot about the at least one delivery, the instructions comprising information about a final delivery location; loading the at least one robot with the at least one delivery to be transported; transporting the at least one delivery in the at least one robot to the final delivery location; and providing access to the at least one delivery in the at least one robot, preferably upon arrival at the delivery location.
    Type: Application
    Filed: October 5, 2021
    Publication date: January 27, 2022
    Applicant: STARSHIP TECHNOLOGIES OÜ
    Inventors: Ahti HEINLA, Allan MARTINSON, Kalle-Rasmus VOLKOV, Andrew MACKS, Lindsay ROBERTS, Indrek MANDRE, Märt LIIVIK, Tiit LIIVIK, Ivo LIIVIK
  • Patent number: 11164273
    Abstract: A delivery method operates in a system with at least one server, at least one robot, and at least one delivery terminal. The method includes communicating a request for at least one delivery from the at least one delivery terminal to the at least one server and/or to the at least one robot; providing instructions from the at least one server to the at least one robot about the at least one delivery, the instructions comprising information about a final delivery location; loading the at least one robot with the at least one delivery to be transported; transporting the at least one delivery in the at least one robot to the final delivery location; and providing access to the at least one delivery in the at least one robot, preferably upon arrival at the delivery location.
    Type: Grant
    Filed: April 9, 2018
    Date of Patent: November 2, 2021
    Assignee: STARSHIP TECHNOLOGIES OÜ
    Inventors: Ahti Heinla, Allan Martinson, Kalle-Rasmus Volkov, Andrew Macks, Lindsay Roberts, Indrek Mandre, Märt Liivik, Tiit Liivik, Ivo Liivik
  • Publication number: 20210302989
    Abstract: A mobile robot is configured to navigate on a sidewalk and deliver a delivery to a predetermined location. The robot has a body and an enclosed space within the body for storing the delivery during transit. At least two cameras are mounted on the robot body and are adapted to take visual images of an operating area. A processing component is adapted to extract straight lines from the visual images taken by the cameras and generate map data based at least partially on the images. A communication component is adapted to send and receive image and/or map data. A mapping system includes at least two such mobile robots, with the communication component of each robot adapted to send and receive image data and/or map data to the other robot. A method involves operating such a mobile robot in an area of interest in which deliveries are to be made.
    Type: Application
    Filed: June 10, 2021
    Publication date: September 30, 2021
    Applicant: STARSHIP TECHNOLOGIES OÜ
    Inventors: AHTI HEINLA, KALLE-RASMUS VOLKOV, LINDSAY ROBERTS, INDREK MANDRE
  • Publication number: 20210302990
    Abstract: A mobile delivery robot has at least one memory component containing at least map data; at least two cameras adapted to take visual images; and at least one processing component. The at least one processing component is adapted to at least extract straight lines from the visual images taken by the at least two cameras and compare them to the map data to at least localize the robot. The mobile robot employs a localization method which involves taking visual images with at least two cameras; extracting straight lines from the individual visual images with at least one processing component; comparing the extracted features with existing map data; and outputting a location hypothesis based on said comparison.
    Type: Application
    Filed: June 10, 2021
    Publication date: September 30, 2021
    Applicant: STARSHIP TECHNOLOGIES OÜ
    Inventors: AHTI HEINLA, KALLE-RASMUS VOLKOV, LINDSAY ROBERTS, INDREK MANDRE
  • Patent number: 11048267
    Abstract: A mobile robot is configured to navigate on a sidewalk and deliver a delivery to a predetermined location. The robot has a body and an enclosed space within the body for storing the delivery during transit. At least two cameras are mounted on the robot body and are adapted to take visual images of an operating area. A processing component is adapted to extract straight lines from the visual images taken by the cameras and generate map data based at least partially on the images. A communication component is adapted to send and receive image and/or map data. A mapping system includes at least two such mobile robots, with the communication component of each robot adapted to send and receive image data and/or map data to the other robot. A method involves operating such a mobile robot in an area of interest in which deliveries are to be made.
    Type: Grant
    Filed: June 22, 2020
    Date of Patent: June 29, 2021
    Assignee: Starship Technologies OÜ
    Inventors: Ahti Heinla, Kalle-Rasmus Volkov, Lindsay Roberts, Indrek Mandre
  • Patent number: 11042165
    Abstract: A mobile delivery robot has at least one memory component containing at least map data; at least two cameras adapted to take visual images; and at least one processing component. The at least one processing component is adapted to at least extract straight lines from the visual images taken by the at least two cameras and compare them to the map data to at least localize the robot. The mobile robot employs a localization method which involves taking visual images with at least two cameras; extracting straight lines from the individual visual images with at least one processing component; comparing the extracted features with existing map data; and outputting a location hypothesis based on said comparison.
    Type: Grant
    Filed: July 30, 2019
    Date of Patent: June 22, 2021
    Assignee: Starship Technologies OÜ
    Inventors: Ahti Heinla, Kalle-Rasmus Volkov, Lindsay Roberts, Indrek Mandre
  • Publication number: 20200319654
    Abstract: A mobile robot is configured to navigate on a sidewalk and deliver a delivery to a predetermined location. The robot has a body and an enclosed space within the body for storing the delivery during transit. At least two cameras are mounted on the robot body and are adapted to take visual images of an operating area. A processing component is adapted to extract straight lines from the visual images taken by the cameras and generate map data based at least partially on the images. A communication component is adapted to send and receive image and/or map data. A mapping system includes at least two such mobile robots, with the communication component of each robot adapted to send and receive image data and/or map data to the other robot. A method involves operating such a mobile robot in an area of interest in which deliveries are to be made.
    Type: Application
    Filed: June 22, 2020
    Publication date: October 8, 2020
    Inventors: Ahti HEINLA, Kalle-Rasmus VOLKOV, Lindsay ROBERTS, Indrek MANDRE
  • Patent number: 10732641
    Abstract: A mobile robot is configured to navigate on a sidewalk and deliver a delivery to a predetermined location. The robot has a body and an enclosed space within the body for storing the delivery during transit. At least two cameras are mounted on the robot body and are adapted to take visual images of an operating area. A processing component is adapted to extract straight lines from the visual images taken by the cameras and generate map data based at least partially on the images. A communication component is adapted to send and receive image and/or map data. A mapping system includes at least two such mobile robots, with the communication component of each robot adapted to send and receive image data and/or map data to the other robot. A method involves operating such a mobile robot in an area of interest in which deliveries are to be made.
    Type: Grant
    Filed: May 2, 2018
    Date of Patent: August 4, 2020
    Assignee: STARSHIP TECHNOLOGIES OÜ
    Inventors: Ahti Heinla, Kalle-Rasmus Volkov, Lindsay Roberts, Indrek Mandre
  • Publication number: 20200209821
    Abstract: A mobile robot configured for vending consumable items. A system configured for vending consumable items comprising a mobile robot, a vending terminal, and a server communicating with each of the other two. A method for vending consumable items using a mobile robot. A method for on-demand consumable item delivery by a mobile robot.
    Type: Application
    Filed: March 11, 2020
    Publication date: July 2, 2020
    Applicant: STARSHIP TECHNOLOGIES OÜ
    Inventors: Ahti HEINLA, Anti VEERANNA, Antti MAKELA, Imre TERAS, Kalle-Rasmus VOLKOV, Kitty MAMERS, Lauri VAIN, Madis MERILA, Markus ZIMMERMANN, Vahur LAAS, Kadri PARIKAS
  • Publication number: 20190354110
    Abstract: A mobile delivery robot has at least one memory component containing at least map data; at least two cameras adapted to take visual images; and at least one processing component. The at least one processing component is adapted to at least extract straight lines from the visual images taken by the at least two cameras and compare them to the map data to at least localize the robot. The mobile robot employs a localization method which involves taking visual images with at least two cameras; extracting straight lines from the individual visual images with at least one processing component; comparing the extracted features with existing map data; and outputting a location hypothesis based on said comparison.
    Type: Application
    Filed: July 30, 2019
    Publication date: November 21, 2019
    Inventors: AHTI HEINLA, Kalle-Rasmus VOLKOV, Lindsay ROBERTS, Indrek MANDRE
  • Patent number: 10386850
    Abstract: A mobile delivery robot has at least one memory component containing at least map data; at least two cameras adapted to take visual images; and at least one processing component. The at least one processing component is adapted to at least extract straight lines from the visual images taken by the at least two cameras and compare them to the map data to at least localize the robot. The mobile robot employs a localization method which involves taking visual images with at least two cameras; extracting straight lines from the individual visual images with at least one processing component; comparing the extracted features with existing map data; and outputting a location hypothesis based on said comparison.
    Type: Grant
    Filed: May 2, 2018
    Date of Patent: August 20, 2019
    Assignee: Starship Technologies OÜ
    Inventors: Ahti Heinla, Kalle-Rasmus Volkov, Lindsay Roberts, Indrek Mandre
  • Publication number: 20180253107
    Abstract: A mobile delivery robot has at least one memory component containing at least map data; at least two cameras adapted to take visual images; and at least one processing component. The at least one processing component is adapted to at least extract straight lines from the visual images taken by the at least two cameras and compare them to the map data to at least localize the robot. The mobile robot employs a localization method which involves taking visual images with at least two cameras; extracting straight lines from the individual visual images with at least one processing component; comparing the extracted features with existing map data; and outputting a location hypothesis based on said comparison.
    Type: Application
    Filed: May 2, 2018
    Publication date: September 6, 2018
    Inventors: Ahti HEINLA, Kalle-Rasmus VOLKOV, Lindsay ROBERTS, Indrek MANDRE
  • Publication number: 20180253108
    Abstract: A mobile robot is configured to navigate on a sidewalk and deliver a delivery to a predetermined location. The robot has a body and an enclosed space within the body for storing the delivery during transit. At least two cameras are mounted on the robot body and are adapted to take visual images of an operating area. A processing component is adapted to extract straight lines from the visual images taken by the cameras and generate map data based at least partially on the images. A communication component is adapted to send and receive image and/or map data. A mapping system includes at least two such mobile robots, with the communication component of each robot adapted to send and receive image data and/or map data to the other robot. A method involves operating such a mobile robot in an area of interest in which deliveries are to be made.
    Type: Application
    Filed: May 2, 2018
    Publication date: September 6, 2018
    Inventors: Ahti Heinla, Kalle-Rasmus Volkov, Lindsay Roberts, Indrek Mandre