Abstract:
A vehicle covering which rolls up, has fabric parts (20) wound around a tubular roller with built-in spring retarder (36); all are installed inside a cylindrical housing. The fabric front edge is connected to a guide bar (63), connected to a puling stick {66), if pulled, it unrolls and extends to cover whole car top, and then its folded sides (54) are pulled down and hanged. While if released, it will be pulled automatically over vehicle through threads (42) connected with a secondary spring retarder roller (40, 41) built inside the main roller. When the top fabric is released, it is pulled back automatically with fabric sides by the main roller.
Abstract:
An autonomous city transportation means based on and interchangeable autonomous aero-land vehicle (AALV) 20 UAVs 22, autonomous vehicles 66 interactive and collaporative in-between and with other machines, robots, buildings, structures, and humans via intelligent artificial telepathy (IAT) devices 21. The autonomous aero-land vehicles (AAVL) 20 are of compact and easily interchangeable shapes, with storable side propellers and stowable top propellers. The intelligent artificial telepathy (IAT) devices 21 are based on vastly modified RFID (Radio-Frequency Identification) chips 53, adding to the uploaded data parameters related to GPS spatial location, and motion parameters, a geometry parameter data related to a grided actual shape, geometry, topography, texture, tilt angles and dimensions of each consistuent of this shape to assist in locating perfectly each occupied part in the space by each physical dynamic or static body, to move, transport, communicate, predict, engage, synchronize, fit, or cooperate with each in a perfect manner with the least numbers of devices depending mainly on (IAT).
Abstract:
City Autonomous Airport (CAA) (20) and means to handle autonomously booking of Aero-cars (26), (27), (28), (46)aerial containers (32) reception and parcels delivery according to a specific selected root managed via GPS and controlled path programs. The (CAA) (20) consists of: Terminal 1 to manage passenger's flights via multiple types of Aero-cars through a landing or take-off yards (30), (31) or elevator terminal, and handling aerial containers (32) in the same. Terminal 2 handles the reception of the dropped containers (32) from remotely controlled aircrafts (25) toward elevator inlets (52) to be distributed by pick-up drones to shelves and autonomous ground stations (56) in multiple floors, and handled as aerial parcel sets to delivery drones on top of elevator ends. Terminal 3 is a yard type handling of containers (32) and distributing their parcels content via UAVs. Terminal 4 is managing the operation of the CAA (20) via multiple types of autonomous UAVs, robots... etc.
Abstract:
To provide a robotic technician drone (RTD) (20) which is comprised of a remotely controlled robot (21) carried by flyboard (air) (24) or a UAV drone (25), any one of them beimng provided with a first robotic arm (27) and a second robotic arm (28) in a addition to a room space for carrying or receiving a spare parts cupboard (22). When the (RTD) (20) receives an emergency message about an idle drone (23) it picks up the suitable spare parts cupboard (22), moves to the idle drone (23), holds it, sets it for fault diagnosing, connects data diagnostic connecter (29) to the idle drone data diagnostic socket (30), once the fault memory is read, the (RTD) (20) second arm (28) dissengage the connector, remove the faulty part and replace it with a new spare part from the cupboard (22) drawer and fix it on the idle drone, then deletes the fault memory.
Abstract:
To provide a robotic technician drone (RTD) (20) which is comprised of a remotely controlled robot (21) carried by flyboard (air) (24) or a UAV drone (25), any one of them being provided with a first robotic arm (27) and a second robotic arm (28) in a addition to a room space for carrying or receiving a spare parts cupboard (22). When the (RTD) (20) receives an emergency message about an idle drone (23) it picks up the suitable spare parts cupboard (22), moves to the idle drone (23), holds it, sets it for fault diagnosing, connects data diagnostic connecter (29) to the idle drone data diagnostic socket (30), once the fault memory is read, the (RTD) (20) second arm (28) disengage the connector, remove the faulty part and replace it with a new spare part from the cupboard (22) drawer and fix it on the idle drone, then deletes the fault memory.
Abstract:
To provide a reporter drone (20), to approach a specific speaker in-between audience inside a big hole, a stadium, or in an open yard, or to take photos, record videos, and registers sounds from inside a narrow location where the drone's body (21) or a reporter can not approach, or can not get in. A triple camera (22) assembly, and a mike-speaker screen assembly (23), are installed and based separately at the ends of a two separate retractable motorized aerials (24), (30), installed at the ends of the bottom of the body (21) of a normal drone (20). When a drone (20) is used for reporting meetings with persons, the camera's antenna (24) is moving in the reverse direction of that moved by the antenna (30) of the mike-speaker screen (23), such that the mike-speaker screen (23) moves toward a speaker (person) while the cameras (22) are keeping a distance from him to get manage to get a photo for him.
Abstract:
A Safety/stability tool (20) for a mini aircraft (21) is provided, the aircraft block is to be penetrated by two parallely rigid, tensioned, and fixed ropes (22) extending from the top of the facade, toward the bottom basket (23), wherein a set of four side cylindrical bearings (24) are surrounding each rope (22) at the top and lower surfaces of the block (21). The ropes (22) serve as a guide, over which the mini aircraft (21) is guided to glide. In case of emergency, wherein the mini aircraft (21) gets idle, the mini aircraft 20 would not fell sideways, but it will fell down toward a basket (23), which is provided by a collapsible net (25), and a spongy base (26), while the mini aircraft (21) itself has an air cushion (27) too, installed on its bottom, this arrangement prevents the smash of the aircraft (21), and may let it bounce up and down along the ropes (22), until settling down inside the basket (23).
Abstract:
To provide a rescue drone (20), for rescuing an idle drone (21), it consists of an adjustable length hook (22) to engage with the idle drone, to carry it away, an L- shaped metallic tool (27) to push the idle drone away from the middle of the road, or to help in repositioning it to be at a side that permits for the hook (22) to engage with it, an emergency light (SOS) (28), to assist while hovering over the idle drone located in a road, an electric shock stick (29), which is to be used against any person approaching the idle drone to steal it, a speaker (30) and camera (31), to assist a security person in a command center to assess the case, talk with and warn any person who is trying to steal the idle drone, or to advise and guide a volunteer who is trying to help and assist in rescuing the idle drone.
Abstract:
To provide a rescue drone (20), for rescuing an idle drone (21), it consists of an adjustable length hook (22) to engage with the idle drone, to carry it away, an L- shaped metallic tool (27) to push the idle drone away from the middle of the road, or to help in repositioning it to be at a side that permits for the hook (22) to engage with it, an emergency light (SOS) (28), to assist while hovering over the idle drone located in a road, an electric shock stick (29), which is to be used against any person approaching the idle drone to steal it, a speaker (30) and camera (31), to assist a security person in a command center to assess the case, talk with and warn any person who is trying to steal the idle drone, or to advise and guide a volunteer who is trying to help and assist in rescuing the idle drone.
Abstract:
To provide a motorized cleaning apparatus (20), that is manually effective in adjusting the horizontal destance of a rotatable brush (21) from a facade according to its variable protrusions details. On each of the the right and left hands of a worker supporting chair, rails (24) are installed, supporting from the back balance blocks, and supporting from their top sides two slideable beams (26), holding a motor housing, which is linked from its front side to an intermediate shaft (30) via a supporting frame (31), a belt installed on a drive gear from the motor side drives the intermediate shaft (30), which is driving via its end gears the brush's shaft (39), using two toothed belts. To support the brush (21), its shaft is linked from its both ends to the intermediate shaft (30) through a two U-shaped joints (40), which are inserted inside the ends of the intermediate shaft (30) and the brush's shaft (39), wherein carrier bearings are installed in-between them.