Patents by Inventor Maciej Witalinski

Maciej Witalinski 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: 11678426
    Abstract: A commissioning system and method that applies a design configuration, representative of a building automation and control system, to a mesh network of network-capable devices. A cloud-based server system works in concert with an installing device, such as a smartphone or tablet, to apply the relevant configuration of scenarios and spaces, as defined in the design configuration during a design phase, to each mesh node in the mesh network. The commissioning system first transforms the defined scenarios and spaces, which essentially represent a logical configuration of the building automation and control system, into a network-centric configuration. Then, the system decomposes the network-centric configuration into a physical configuration of each mesh node, resulting in a set of parameters for each mesh node.
    Type: Grant
    Filed: September 21, 2021
    Date of Patent: June 13, 2023
    Assignee: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Adam Gembala, Maciej Witalinski, Piotr Hawranek, Pawel Smietanka, Michal Hobot
  • Publication number: 20220007486
    Abstract: A commissioning system and method that applies a design configuration, representative of a building automation and control system, to a mesh network of network-capable devices. A cloud-based server system works in concert with an installing device, such as a smartphone or tablet, to apply the relevant configuration of scenarios and spaces, as defined in the design configuration during a design phase, to each mesh node in the mesh network. The commissioning system first transforms the defined scenarios and spaces, which essentially represent a logical configuration of the building automation and control system, into a network-centric configuration. Then, the system decomposes the network-centric configuration into a physical configuration of each mesh node, resulting in a set of parameters for each mesh node.
    Type: Application
    Filed: September 21, 2021
    Publication date: January 6, 2022
    Applicant: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Adam Gembala, Maciej Witalinski, Piotr Hawranek, Pawel Smietanka, Michal Hobot
  • Patent number: 11218549
    Abstract: A distributed control system, comprising a data network with a plurality of controller nodes that maintain and share their internal states with one another. The controller nodes can be luminaires that are capable of controlling the ambient lighting within a building area. There are one or more ambient light sensors within the data network for sensing and reporting the ambient light level. The controller luminaire nodes are members of a defined group of nodes that share, with one another, information for synchronizing their internal states, based in part on the ambient light levels that the one or more sensors are reporting. Meanwhile, each luminaire node also continually updates its own internal state based on the synchronization data received from the other nodes.
    Type: Grant
    Filed: August 3, 2020
    Date of Patent: January 4, 2022
    Assignee: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Maciej Witalinski
  • Patent number: 11172564
    Abstract: A commissioning system and method that applies a design configuration, representative of a building automation and control system, to a mesh network of network-capable devices. A cloud-based server system works in concert with an installing device, such as a smartphone or tablet, to apply the relevant configuration of scenarios and spaces, as defined in the design configuration during a design phase, to each mesh node in the mesh network. The commissioning system first transforms the defined scenarios and spaces, which essentially represent a logical configuration of the building automation and control system, into a network-centric configuration. Then, the system decomposes the network-centric configuration into a physical configuration of each mesh node, resulting in a set of parameters for each mesh node. The commissioning system then transmits the set of parameters, including one or more group addresses, to the applicable mesh node, for each affected mesh node in the network.
    Type: Grant
    Filed: June 26, 2019
    Date of Patent: November 9, 2021
    Assignee: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Adam Gembala, Maciej Witalinski, Piotr Hawranek, Pawel Smietanka, Michal Hobot
  • Patent number: 10945326
    Abstract: A configurable light sensor comprising an array of photocells. The light sensor measures ambient light reflected from a surface in area to be monitored. A lens directs the light onto the array of photocells. A microcontroller reads each individual photocell and processes the signals from the photocells according to one or more of the methods disclosed herein. The light sensor is configurable in that the area that monitored by the light sensor is customized to match the area lit by an associated light source. The configuring process defines an active area to be monitored, by determining which subset of photocells in the array, referred to as the active set of photocells, corresponds to the area being illuminated by the light fixture. The light sensor is subsequently able to monitor the defined active area and to report sensor output values based on measurements made from the photocells monitoring the active area.
    Type: Grant
    Filed: October 23, 2018
    Date of Patent: March 9, 2021
    Assignee: Sway sp. z o.o.
    Inventors: Robert Mieczyslaw Lubas, Szymon Slupik, Maciej Witalinski
  • Publication number: 20200366519
    Abstract: A distributed control system, comprising a data network with a plurality of controller nodes that maintain and share their internal states with one another. The controller nodes can be luminaires that are capable of controlling the ambient lighting within a building area. There are one or more ambient light sensors within the data network for sensing and reporting the ambient light level. The controller luminaire nodes are members of a defined group of nodes that share, with one another, information for synchronizing their internal states, based in part on the ambient light levels that the one or more sensors are reporting. Meanwhile, each luminaire node also continually updates its own internal state based on the synchronization data received from the other nodes.
    Type: Application
    Filed: August 3, 2020
    Publication date: November 19, 2020
    Applicant: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Maciej Witalinski
  • Patent number: 10797905
    Abstract: A distributed control system, comprising a data network with a plurality of controller nodes that maintain and share their internal states with one another. The controller nodes can be luminaires that are capable of controlling the ambient lighting within a building area. There are one or more ambient light sensors within the data network for sensing and reporting the ambient light level. The controller luminaire nodes are members of a defined group of nodes that share, with one another, information for synchronizing their internal states, based in part on the ambient light levels that the one or more sensors are reporting. Meanwhile, each luminaire node also continually updates its own internal state based on the synchronization data received from the other nodes.
    Type: Grant
    Filed: May 29, 2018
    Date of Patent: October 6, 2020
    Assignee: Silvair Sp. z o.o
    Inventors: Szymon Slupik, Maciej Witalinski
  • Patent number: 10656008
    Abstract: A method for discovering the topology of a connected lighting system. The method comprises: receiving a first measurement of a first light source in relation to a first sensor; receiving a second measurement of the first light source in relation to a second sensor; generating a first estimate of the position of the first light source, based on a first angle at the first sensor between (i) a first direction toward a current light source position and (ii) a second direction defined by the first measurement; generating a second estimate of the position of the first light source, based on a second angle at the second sensor between (i) a third direction toward the current light source position and (ii) a fourth direction defined by the second measurement; and generating an updated light source position of the first light source based on the first and second estimates.
    Type: Grant
    Filed: October 23, 2018
    Date of Patent: May 19, 2020
    Assignee: Sway sp. z o.o.
    Inventors: Robert Mieczyslaw Lubas, Szymon Slupik, Maciej Witalinski
  • Publication number: 20200128642
    Abstract: A configurable light sensor comprising an array of photocells. The light sensor measures ambient light reflected from a surface in area to be monitored. A lens directs the light onto the array of photocells. A microcontroller reads each individual photocell and processes the signals from the photocells according to one or more of the methods disclosed herein. The light sensor is configurable in that the area that monitored by the light sensor is customized to match the area lit by an associated light source. The configuring process defines an active area to be monitored, by determining which subset of photocells in the array, referred to as the active set of photocells, corresponds to the area being illuminated by the light fixture. The light sensor is subsequently able to monitor the defined active area and to report sensor output values based on measurements made from the photocells monitoring the active area.
    Type: Application
    Filed: October 23, 2018
    Publication date: April 23, 2020
    Applicant: Sway sp. z o.o.
    Inventors: Robert Mieczyslaw Lubas, Szymon Slupik, Maciej Witalinski
  • Publication number: 20200124466
    Abstract: A method for discovering the topology of a connected lighting system. The method comprises: receiving a first measurement of a first light source in relation to a first sensor; receiving a second measurement of the first light source in relation to a second sensor; generating a first estimate of the position of the first light source, based on a first angle at the first sensor between (i) a first direction toward a current light source position and (ii) a second direction defined by the first measurement; generating a second estimate of the position of the first light source, based on a second angle at the second sensor between (i) a third direction toward the current light source position and (ii) a fourth direction defined by the second measurement; and generating an updated light source position of the first light source based on the first and second estimates.
    Type: Application
    Filed: October 23, 2018
    Publication date: April 23, 2020
    Applicant: Sway sp. z o.o.
    Inventors: Robert Mieczyslaw Lubas, Szymon Slupik, Maciej Witalinski
  • Patent number: 10533373
    Abstract: A motorized system that allows for calibration by a user, and that features circuit protection and detection of motor stoppage. A motorized window-blind system is an example of such a system and is disclosed herein. In particular, a circuit is featured that comprises a TRIAC, or “triode for alternating current,” and TVS diodes, or “transient-voltage-suppression diodes,” providing voltage protection to various types of motor-related electronic components. A controller is disclosed that features measurement of voltage that is induced on a secondary winding of a motor, in order to detect certain events that occur during the operation of the motor. A calibration method is also disclosed that can account for one or both of the protection circuit and event-detecting controller. The calibration method accounts for human interaction and, in doing so, is intended toward making a calibration process of a motorized household system less prone to human error.
    Type: Grant
    Filed: October 7, 2018
    Date of Patent: January 14, 2020
    Assignee: Silvair sp. z o.o.
    Inventors: Szymon Slupik, Maciej Witalinski, Adam Gembala
  • Publication number: 20190372802
    Abstract: A distributed control system, comprising a data network with a plurality of controller nodes that maintain and share their internal states with one another. The controller nodes can be luminaires that are capable of controlling the ambient lighting within a building area. There are one or more ambient light sensors within the data network for sensing and reporting the ambient light level. The controller luminaire nodes are members of a defined group of nodes that share, with one another, information for synchronizing their internal states, based in part on the ambient light levels that the one or more sensors are reporting. Meanwhile, each luminaire node also continually updates its own internal state based on the synchronization data received from the other nodes.
    Type: Application
    Filed: May 29, 2018
    Publication date: December 5, 2019
    Applicant: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Maciej Witalinski
  • Publication number: 20190319849
    Abstract: A commissioning system and method that applies a design configuration, representative of a building automation and control system, to a mesh network of network-capable devices. A cloud-based server system works in concert with an installing device, such as a smartphone or tablet, to apply the relevant configuration of scenarios and spaces, as defined in the design configuration during a design phase, to each mesh node in the mesh network. The commissioning system first transforms the defined scenarios and spaces, which essentially represent a logical configuration of the building automation and control system, into a network-centric configuration. Then, the system decomposes the network-centric configuration into a physical configuration of each mesh node, resulting in a set of parameters for each mesh node.
    Type: Application
    Filed: June 26, 2019
    Publication date: October 17, 2019
    Applicant: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Adam Gembala, Maciej Witalinski, Piotr Hawranek, Pawel Smietanka, Michal Hobot
  • Publication number: 20190273659
    Abstract: A commissioning system and method that applies a design configuration, representative of a building automation and control system, to a mesh network of network-capable devices. A cloud-based server system works in concert with an installing device, such as a smartphone or tablet, to apply the relevant configuration of scenarios and spaces, as defined in the design configuration during a design phase, to each mesh node in the mesh network. The commissioning system first transforms the defined scenarios and spaces, which essentially represent a logical configuration of the building automation and control system, into a network-centric configuration. Then, the system decomposes the network-centric configuration into a physical configuration of each mesh node, resulting in a set of parameters for each mesh node.
    Type: Application
    Filed: March 2, 2018
    Publication date: September 5, 2019
    Applicant: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Adam Gembala, Maciej Witalinski, Piotr Hawranek, Pawel Smietanka, Michal Hobot
  • Patent number: 10389149
    Abstract: A sensor and control platform includes a smart wall plate and a variety of optional sensor/control elements that removably couple to and interact and communicate with the smart wall plate to enhance the functionality and power of a premises automation system. The smart wall plate contains a plurality of sensors, a microprocessor control unit, and a wireless transceiver. The optional sensor/control elements can be a control dial, a monitoring device, or a camera. The smart wall plate can dictate the functionality of the optional sensor/control elements or the optional sensor/control elements can alter the functionality of the smart wall plate.
    Type: Grant
    Filed: November 5, 2015
    Date of Patent: August 20, 2019
    Assignee: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Adam Gembala, Maciej Witalinski
  • Patent number: 10382284
    Abstract: A commissioning system and method that applies a design configuration, representative of a building automation and control system, to a mesh network of network-capable devices. A cloud-based server system works in concert with an installing device, such as a smartphone or tablet, to apply the relevant configuration of scenarios and spaces, as defined in the design configuration during a design phase, to each mesh node in the mesh network. The commissioning system first transforms the defined scenarios and spaces, which essentially represent a logical configuration of the building automation and control system, into a network-centric configuration. Then, the system decomposes the network-centric configuration into a physical configuration of each mesh node, resulting in a set of parameters for each mesh node. The commissioning system then transmits the set of parameters, including one or more group addresses, to the applicable mesh node, for each affected mesh node in the network.
    Type: Grant
    Filed: March 2, 2018
    Date of Patent: August 13, 2019
    Assignee: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Adam Gembala, Maciej Witalinski, Piotr Hawranek, Pawel Smietanka, Michal Hobot
  • Publication number: 20190040680
    Abstract: A motorized system that allows for calibration by a user, and that features circuit protection and detection of motor stoppage. A motorized window-blind system is an example of such a system and is disclosed herein. In particular, a circuit is featured that comprises a TRIAC, or “triode for alternating current,” and TVS diodes, or “transient-voltage-suppression diodes,” providing voltage protection to various types of motor-related electronic components. A controller is disclosed that features measurement of voltage that is induced on a secondary winding of a motor, in order to detect certain events that occur during the operation of the motor. A calibration method is also disclosed that can account for one or both of the protection circuit and event-detecting controller. The calibration method accounts for human interaction and, in doing so, is intended toward making a calibration process of a motorized household system less prone to human error.
    Type: Application
    Filed: October 7, 2018
    Publication date: February 7, 2019
    Applicant: Silvair sp. z o.o.
    Inventors: Szymon Slupik, Maciej Witalinski, Adam Gembala
  • Patent number: 10145173
    Abstract: A motorized system that allows for calibration by a user, and that features circuit protection and detection of motor stoppage. A motorized window-blind system is an example of such a system and is disclosed herein. In particular, a circuit is featured that comprises a TRIAC, or “triode for alternating current,” and TVS diodes, or “transient-voltage-suppression diodes,” providing voltage protection to various types of motor-related electronic components. A controller is disclosed that features measurement of voltage that is induced on a secondary winding of a motor, in order to detect certain events that occur during the operation of the motor. A calibration method is also disclosed that can account for one or both of the protection circuit and event-detecting controller. The calibration method accounts for human interaction and, in doing so, is intended toward making a calibration process of a motorized household system less prone to human error.
    Type: Grant
    Filed: July 10, 2017
    Date of Patent: December 4, 2018
    Assignee: Silvair sp. z o.o.
    Inventors: Szymon Slupik, Maciej Witalinski, Adam Gembala
  • Patent number: 10143067
    Abstract: A system of luminaires, which are connected to one another within a mesh network, and which interoperate in accordance with the disclosed method. Each luminaire in the mesh network is capable of originating a notification message whenever one of a predefined set of state changes is detected by the luminaire's controller. Also, a given type of state change might correlate to more than one type of event having occurred. For example, a particular type of state change can be attributed to any of i) a sensing of occupancy in the vicinity of the luminaire, ii) manual actuation of a light switch, iii) a timer going off, and iv) an external command being received. The luminaire's controller is also capable of receiving and processing notification messages originated by other luminaires, and of relaying, to other luminaires in the mesh network, information from received notification messages.
    Type: Grant
    Filed: January 30, 2018
    Date of Patent: November 27, 2018
    Assignee: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Maciej Witalinski
  • Patent number: 9921557
    Abstract: A monitoring device for use in an automation system, such as for a home, warehouse, or any type of structure. The monitoring device includes sensors, a processor, and a transmitter. Using its sensors, the monitoring device is capable of acquiring data about itself and/or its environment. That data is used by the monitoring device and/or a central controller to generate a request for an actor, such as lighting, an HVAC system, motorized drapes, a home entertainment system, other home systems, or appliances, to change its state.
    Type: Grant
    Filed: August 11, 2014
    Date of Patent: March 20, 2018
    Assignee: Silvair Sp. z o.o.
    Inventors: Szymon Slupik, Adam Gembala, Maciej Witalinski