Abstract:
A telescoping monopod system including an image acquisition module having a field of vision, an attachment member configured to contact the image acquisition module, a body housing a processor, a memory, an electromechanical component, and a plurality of shafts. The body contacts the attachment member. The body comprises a control panel.
Abstract:
A global positioning system including a processor configured to determine a route of travel based upon satellite data that identify a current location of the global positioning system and traffic data obtained from a traffic flow control system, and a display configured to display the current position and a determined route of travel.
Abstract:
A telescoping monopod system including an image acquisition module having a field of vision, an attachment member configured to contact the image acquisition module, a body housing a processor, a memory, an electromechanical component, and a plurality of shafts. The body contacts the attachment member. The body comprises a control panel.
Abstract:
A global positioning system including a processor configured to determine a route of travel based upon satellite data that identify a current location of the global positioning system and traffic data obtained from a traffic flow control system, and a display configured to display the current position and a determined route of travel.
Abstract:
A method for using a telescoping monopod apparatus to capture an image including synchronizing a photographic instrument with the telescoping monopod apparatus, attaching the photographic instrument to the telescoping monopod apparatus, determining that the photographic instrument is in an image-capturing mode, extracting, by the image-capturing mode, a humanoid feature, detecting that the humanoid feature comprises a cutoff, adjusting a position of the photographic instrument using the telescoping monopod apparatus, and capturing an adjusted image using the photographic instrument.
Abstract:
A traffic flow control system that includes a display device, an image acquisition module, an user interactive device, and a server having a processor. The processor is configured to obtain, by a data aggregation module, at least one of a first, second, third, fourth set of data, compute, by a computation module, a travel score for a travel direction of an intersection by weighing each of the first, second, third, and the fourth set of data with respect to one another, determine whether the travel score is a highest travel score of the intersection, and, if the travel score is the highest travel score of the intersection, enable traffic flow in the travel direction using the display device.