G01S7/6218

Apparatus, method and program for processing data
10996829 · 2021-05-04 · ·

A data processing apparatus is provided, which includes processing circuitry. The processing circuitry is configured to acquire a data set from target detected by a detection apparatus, perform rendering of the data set, and generate a plurality of views arranged on a screen. Each view of the plurality of views includes a plurality of pixels. Each pixel included in the plurality of views is associated with a plurality of pieces of information including a first information displayed on the screen and a second information that indicates a view among the plurality of views to which the pixel belongs.

APPARATUS, METHOD AND PROGRAM FOR PROCESSING DATA
20210216180 · 2021-07-15 · ·

A data processing apparatus is provided, which includes processing circuitry. The processing circuitry is configured to acquire a data set from target detected by a detection apparatus, perform rendering of the data set, and generate a plurality of views arranged on a screen. Each view of the plurality of views includes a plurality of pixels. Each pixel included in the plurality of views is associated with a plurality of pieces of information including a first information displayed on the screen and a second information that indicates a view among the plurality of views to which the pixel belongs.

Devices and methods for locating and visualizing underwater objects
10884123 · 2021-01-05 · ·

Sonar devices for detecting underwater objects are provided whereby a set of angled ultrasound transducers are employed to sense ultrasound signals from a plurality of different spatial regions. The angled ultrasound transducers may include a first pair of side-viewing ultrasound transducers and a second pair of ultrasound transducers configured for interrogating forward and reverse directions. The ultrasound signals from the set of angled ultrasound transducers may be processed to identify the presence of underwater objects in each spatial region, and the resulting identified underwater objects may be displayed, on a per-region basis, on a user interface. The ultrasound signals may additionally or alternatively be processed to generate a topographical model of the bed surface, and to generate a topographical surface image based on the three-dimensional topographical model. The topographical surface image may be displayed as a fly-over animation.

System and method for a combined visual and audible spatial warning system

A driver alert system is configured to provide combined visual and audible spatial warnings. The system can include an object detection system to provide the location of at least one object relative to a vehicle, an audible output system including a plurality of speaker units, and a display unit. A control unit of the system can determine location of objects and generate combined visual and audible spatial warnings. Output of the combined visual and audible spatial warning can be controlled to output an audible alert indicating the location of the object relative to the vehicle passenger, and control a display unit to present a particle display output indicating the location of the object relative to the vehicle passenger. The system may include processes for control of combined visual and audible spatial warnings to account for changes in object position and vehicle heading.

3D scene annotation and enhancement systems and methods

Techniques are disclosed for systems and methods to provide three dimensional volume rendering of volume data for use when operating mobile structures. A three dimensional volume rendering system includes a logic device configured to communicate with a user interface and receive volume data from a volume data source. The logic device is configured to render a three dimensional) representation of the volume data on a display of the user interface according to a view perspective, render an indicator key on a first two dimensional plane overlaid in the 3D representation, detect a change condition, and rotate the indicator key about a rotational axis in response to the detected change condition.

Sonar history display control systems and methods
10852429 · 2020-12-01 · ·

Techniques are disclosed for systems and methods to provide accurate and intuitive control over the display of sonar image data provided by sonar systems for mobile structures. A sonar system includes a user interface and a logic device configured to receive and display multiple different sonar image data sets from multiple different types of transducer modules to a user. The logic device is configured to render a historical view selector on a display of the user interface, where the historical view selector is configured to provide for selection of a particular view time in a period of time corresponding to the first and/or second sonar image data, receive user input identifying a selected view time within the range of time, and render first and second portions of the first and second image data corresponding to the selected view time on the display of the user interface.

APPARATUS, METHOD AND PROGRAM FOR PROCESSING DATA
20200363922 · 2020-11-19 · ·

A data processing apparatus is provided, which includes processing circuitry. The processing circuitry is configured to acquire a data set from target detected by a detection apparatus, perform rendering of the data set, and generate a plurality of views arranged on a screen. Each view of the plurality of views includes a plurality of pixels. Each pixel included in the plurality of views is associated with a plurality of pieces of information including a first information displayed on the screen and a second information that indicates a view among the plurality of views to which the pixel belongs.

FREQUENCY STEERED SONAR ARRAY SYSTEM WITH THREE-DIMENSIONAL FUNCTIONALITY
20200256967 · 2020-08-13 ·

A transducer system comprises a first frequency steered transducer array element and a second frequency steered transducer array element that is spaced apart from the first frequency steered transducer array element. The system additionally includes a processing element in communication with the first and second frequency steered transducer array elements. The processing element is configured to receive a first receive electronic signal from the first frequency steered sonar array element, receive a second receive electronic signal from the second frequency steered array sonar element, compare a difference in amplitude between the first receive electronic signal and the second receive electronic signal to determine a cross-track position of an underwater target, and control a display to present an indication of the cross-track position of the underwater target.

Sonar mapping system
10684368 · 2020-06-16 · ·

A sonar mapping system that includes a sonar transducer assembly configured for mounting on a watercraft, and a display configured to show a topographical chart of a body of water. The sonar mapping system further includes a processor coupled to the sonar transducer assembly and display. The processor is configured to create the topographical chart in real time, and to update the topographical chart in real time, based on sonar data provided by the sonar transducer assembly. The processor is also configured to render the created or updated topographical chart on the display. The sonar mapping system has memory accessible by the processor and configured to store the topographical chart rendered by the processor, and to store the sonar data provided by the sonar transducer assembly.

DEVICES AND METHODS FOR LOCATING AND VISUALIZING UNDERWATER OBJECTS
20200150269 · 2020-05-14 ·

Sonar devices for detecting underwater objects are provided whereby a set of angled ultrasound transducers are employed to sense ultrasound signals from a plurality of different spatial regions. The angled ultrasound transducers may include a first pair of side-viewing ultrasound transducers and a second pair of ultrasound transducers configured for interrogating forward and reverse directions. The ultrasound signals from the set of angled ultrasound transducers may be processed to identify the presence of underwater objects in each spatial region, and the resulting identified underwater objects may be displayed, on a per-region basis, on a user interface. The ultrasound signals may additionally or alternatively be processed to generate a topographical model of the bed surface, and to generate a topographical surface image based on the three-dimensional topographical model. The topographical surface image may be displayed as a fly-over animation.