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    • 1. 发明授权
    • Dynamic paver device with vibration feedback
    • US10801166B2
    • 2020-10-13
    • US16549753
    • 2019-08-23
    • Sidewalk Labs LLC
    • Samara TrillingThomas Joseph Kennedy
    • E01C15/00E01C5/06E01C11/00E01C5/18E01C17/00
    • A dynamic paver device with vibration feedback is provided. In some embodiments, a paver device comprises: a paver having a top surface and a bottom surface; a paver frame that creates an interior cavity upon being connected with the paver; at least one pressure sensor connected to the paver, wherein the at least one pressure sensor detects a change in an amount of pressure applied to the top surface of the paver; a vibration system connected to the bottom surface of the paver, wherein the vibration system is configured to provide a vibrational force to the bottom surface of the paver; and a controller connected to the at least one pressure sensor and the vibration system, wherein the controller is configured to: receive, from the at least one pressure sensor, a presence indication of an object on the top surface of the paver based on the detected change in the amount of pressure being applied to the top surface of the paver at a first time; and, in response to receiving the presence indication from the at least one pressure sensor, transmit a first signal to the vibration system that causes the vibration system to provide the vibrational force to the bottom surface of the paver.
    • 2. 发明申请
    • METHODS, SYSTEMS, AND MEDIA FOR SIMULATING MOVEMENT DATA OF PEDESTRIANS IN A DISTRICT
    • US20220114372A1
    • 2022-04-14
    • US17497496
    • 2021-10-08
    • Sidewalk Labs LLC
    • Samara TrillingTess BianchiDouwe OsingaJosh ChappellOkalo Ikhena
    • G06K9/00G01C21/00
    • Methods, systems, and media for simulating movement data of pedestrians in a district are provided. The method comprises: receiving a district plan for a proposed district; determining a number of users that would populate a building in the proposed district; generating a population of simulated users based on the determined number of users that would populate the building in the proposed district; assigning, for the population of simulated users in the building, groups of simulated users in the population of simulated users to a movement category from a plurality of movement categories; distributing, for the groups of simulated users assigned to each of the plurality of movement categories, a group of simulated users to a first destination within the proposed district that satisfies the movement category by determining a probable walking path from the building to the first destination; in response to determining that the first destination within the proposed district has reached a first capacity threshold, distributing remaining users from the group of simulated users to a second destination within the proposed district that satisfies the movement category until at least one of the remaining users in the movement category has been distributed and the second destination within the proposed district has reached a second capacity threshold; distributing, for the groups of simulated users assigned to each of the plurality of movement categories, trips having the probable walking path of the group of simulated users over time by applying a distribution function to each of the plurality of movement categories; and causing a map representation of the proposed district to be presented, wherein the map representation highlights each of the trips having the probable walking path distributed over time to indicate predicted levels of congestion at a particular time in the proposed district.
    • 3. 发明申请
    • METHODS, SYSTEMS, AND MEDIA FOR GENERATING BUILDING LAYOUTS
    • US20220114296A1
    • 2022-04-14
    • US17497635
    • 2021-10-08
    • Sidewalk Labs LLC
    • Okalo IkhenaJosh ChappellDifei ChenTess BianchiSamara TrillingDouwe OsingaBrian HoJack AmadeoLuda ZhaoDavid HuangAmelia Harvey
    • G06F30/13G06F30/20G06F3/14
    • Methods, systems, and media for generating building layouts are provided. In some embodiments, the method comprises: receiving building shape information and building constraint information for a layout of a building from a computing device, wherein the building comprises a plurality of floors; generating a central corridor for the building; dividing, for each of the plurality of floors of the building, an area of a floor into a plurality of partitions by creating subdividing lines that connected from the central corridor to an exterior outline of the floor; applying the building constraint information and the plurality of partitions into an optimization function to generate an optimized layout of units for the building that iteratively (i) allocates the area of the floor into units by combining a subset of the plurality of partitions based on the building constraint information, (ii) generates, for each unit in the building, a score for a unit that combines a lighting sub-score corresponding to an estimated amount of light expected to be received in the unit, a view sub-score corresponding to a location of the unit within the building, and a distance sub-score corresponding to proximity of the unit to one or more amenities; and (iii) combines the score for each unit of the floor in the building to generate a cumulative layout score for generated layouts including the allocated units in the building; and, in response to determining that a stopping criteria has been reached in which the cumulative layout score between a current layout iteration and a previous layout iteration is less than a predetermined threshold value, causing a user interface to be presented on a computing device, wherein the user interface presents the optimized layout of units allocated to each floor of the building.
    • 5. 发明申请
    • METHODS, SYSTEMS, AND MEDIA FOR DATA VISUALIZATION AND NAVIGATION OF MULTIPLE SIMULATION RESULTS IN URBAN DESIGN
    • US20210150087A1
    • 2021-05-20
    • US16951639
    • 2020-11-18
    • Sidewalk Labs LLC
    • Brian HoDan VanderkamDouwe OsingaViolet WhitneyKabir SooryaJack AmadeoDifei ChenOkalo IkhenaAmanda MeurerSamara Trilling
    • G06F30/13G06F30/20G06F16/957
    • Methods, systems, and media for data visualization and navigation of multiple simulation results in urban design are provided. In some embodiments, the method comprises: generating, using a hardware processor, a plurality of design options for a district in response to running a simulation using a set of received design inputs; determining, using the hardware processor, a plurality of output values of the simulation for each parameter of a plurality of parameters that are associated with each of the plurality of design options; generating, using the hardware processor, a plurality of histograms, wherein each histogram corresponds to a parameter from the plurality of parameters associated with each of the plurality of design options; presenting, using the hardware processor, a user interface that includes the plurality of histograms, wherein one or more portions of each histogram in the user interface are user-selectable; in response to receiving a user selection of a portion within a histogram corresponding to a parameter, presenting, using the hardware processor, the user selection of the portion in the histogram of the user interface and determining one or more output values of the parameter that correspond with the portion of the histogram from the plurality of output values; and, in response to determining the one or more output values of the parameter that correspond with the portion of the histogram, automatically modifying, using the hardware processor, a presentation of remaining histograms in the user interface to highlight a first subset of output values of other parameters in the remaining histograms that correspond with the one or more output values of the parameter and reduce an appearance of a second subset of output values of the other parameters in the remaining histograms that do not correspond with the one or more output values of the parameter.
    • 6. 发明申请
    • DYNAMIC PAVER DEVICE WITH VIBRATION FEEDBACK
    • US20210025117A1
    • 2021-01-28
    • US17066708
    • 2020-10-09
    • Sidewalk Labs LLC
    • Samara TrillingThomas Joseph Kennedy
    • E01C15/00E01C5/06E01C11/00E01C5/18
    • A dynamic paver device with vibration feedback is provided. In some embodiments, a paver device comprises: a paver having a top surface and a bottom surface; a paver frame that creates an interior cavity upon being connected with the paver; at least one pressure sensor connected to the paver, wherein the at least one pressure sensor detects a change in an amount of pressure applied to the top surface of the paver; a vibration system connected to the bottom surface of the paver, wherein the vibration system is configured to provide a vibrational force to the bottom surface of the paver; and a controller connected to the at least one pressure sensor and the vibration system, wherein the controller is configured to: receive, from the at least one pressure sensor, a presence indication of an object on the top surface of the paver based on the detected change in the amount of pressure being applied to the top surface of the paver at a first time; and, in response to receiving the presence indication from the at least one pressure sensor, transmit a first signal to the vibration system that causes the vibration system to provide the vibrational force to the bottom surface of the paver.
    • 7. 发明授权
    • Dynamic paver device with vibration feedback
    • US11525222B2
    • 2022-12-13
    • US17066708
    • 2020-10-09
    • Sidewalk Labs LLC
    • Samara TrillingThomas Joseph Kennedy
    • E01C15/00E01C5/06E01C11/00E01C5/18E01C17/00
    • The disclosed subject matter relates to a dynamic paver device with vibration feedback. A paver device can include: a paver having a top surface and a bottom surface; a paver frame that creates an interior cavity upon being connected with the paver; at least one pressure sensor connected to the paver, wherein the at least one pressure sensor detects a change in an amount of pressure applied to the top surface of the paver; a vibration system connected to the bottom surface of the paver, where the vibration system is configured to provide a vibrational force to the bottom surface of the paver; and a controller connected to the at least one pressure sensor and the vibration system, where the controller is configured to: receive, from the at least one pressure sensor, a presence indication of an object on the top surface of the paver based on the detected change in the amount of pressure being applied to the top surface of the paver at a first time; and, in response to receiving the presence indication from the at least one pressure sensor, transmit a first signal to the vibration system that causes the vibration system to provide the vibrational force to the bottom surface of the paver.