In: Mechanical Engineering
5.Write a report on AI based Social distancing monitoring using
drone with out human interaction report should contain drone design
it specification it's algorithm control system algorithm.minimum 10
A4 size page.No plagiarism is allowed other wise down rate is
given
Don't copy from old Chegg answers
Title Page:
Certificate:
A Drone or Quadcopter is a Vehicles have large potential for performing tasks that are dangerous or very costly for humans. Examples are the inspection of high structures, humanitarian purposes or search-and-rescue missions. One specific type of Drone is becoming increasingly more popular lately: the quadcopter.
When visiting large events or parties, professional quadcopters can be seen that are used to capture video for promotional or surveillance purposes. Recreational use is increasing as well: for less than 50 Euros a small remote-controlled quadcopter can be bought to fly around in your living room or garden. In these situations, the quadcopter is usually in free flight. There is no physical contact between the surroundings and the quad copter and no cooperation between the quadcopters If would have the capabilities to collaborate the number of possibilities grows even further. For example, a group of Drone would be able to efficiently and autonomously search a missing person in a large area by sharing data between. Or, the combined load capacity of a group of quad copters can be used to deliver medicine in remote areas.
This report focuses on the use of a commercially available quadcopter platform, the Drone, to perform a task that requires to inspect the people over an area which are following the social distancing norm which is distance between two individuals should be greater than 1m.
As preliminary step towards the view of collaborating aerial robots the choice was made to perform this task in an indoor scenario where position feedback is present. Starting off with position control, additional controller logic can be implemented to counteract the forces imposed by a mass connected to the quadcopter. The choice is made for the Drone, a generalized approach is chosen where possible to encourage reuse of this research’s outcome and deliverables. A helicopter is a flying vehicle which uses rapidly spinning rotors to push air downwards, thus creating a thrust force keeping the helicopter aloft. Conventional helicopters have two rotors. These can be arranged as two coplanar rotors both providing upwards thrust but spinning in opposite directions (in order to balance the torques exerted upon the body of the helicopter).
Figure 1 Image of Drone Designed by Us
3 cell 1,000 mAH LiPo rechargeable battery; High pitch propeller for great manoeuvrability; 4 brushless in runner motors with micro ball bearing and rare earth magnets, 14.5 watt & 28,500 rpm when hovering; Self-lubricating bronze bearings, tempered steel prop shafts; Low noise Nylatron gears for 8.625 propeller shafts; Emergency stop controlled by software; Fully reprogrammable motor controller; Water resistant electronic motor controller ; Foam to isolate the inertial centre from the engine’s vibrations; EPP hull; Carbon fibre tubes, 380g with outdoor hull, 420g with indoor hull; High grade 30% fibre charged nylon plastic parts;
Sr.no |
Part |
Material |
1 |
Frame |
CFRP |
2 |
Motors x4 |
Aluminum Alloy |
3 |
Flight control board |
Ceramic |
4 |
Propellers |
CFRP |
5 |
Gear |
Nylon |
6 |
Battery |
Li-ion |
We have programmed the drone on python, Object recognition is a general term to describe a collection of related computer vision tasks that involve identifying objects in digital photographs.
Image classification involves predicting the class of one object in an image. Object localization refers to identifying the location of one or more objects in an image and drawing abounding box around their extent. Object detection combines these two tasks and localizes and classifies one or more objects in an image.
Figure 2 GUI of our algorithm
HIGH BATEERY LIFE AND FLIGHT TIME |
2 KM 1080P VIDEO RECORDING |
MAXIMUM SPEED OF 50 KMPH |
SMART RETURN TO CHARGING DOCK |
LIVE VIDEO FEEDING TO CONTROL ROOM |
HIGH CONNECTIVITY AND GPS POSITIONING |
EASY TO USE APPLICATION |
FOCUS TRACK AND WIDE ANGLE |
LOUD BUZZER DUAL SPEAKER |
DIRECT NOTIFICATION TO INDIVIDUALS VIA IMAGE PROCESSING |
SMART OBSTACLE AVOIDANCE |
AUTO CHANNEL SWITCH |
Figure 3 Drone
As drone has very less flight time it is very essential to charge it, but when we talk about surveillance system it should be autonomous for safety and reducing fatigue, to avoid it we programmed a smart battery charging algorithm which enables the drone to fly to its nearest charging station setup for charging, where there will be a subsidiary drone for its place in network. It will be a wireless pad which will charge the drone in 25 mins for 30 min of flight time.
With increase in technology of battery-operated vehicle we found a small dynamo but of high capacity, the rpm of propeller will be 22000 and if we rotate dynamo at such a high speed it would generate decent amount of electricity. We have placed dynamo by nylon gear arrangement with propeller for increasing flight time.
Figure 6 Wireless Charging Pad
Figure 7 Dynamo with propeller
COVID-19 proliferation/spread is best contained when the general public practices social distancing as a standard procedure in all public places no matter whether they are infected or not. Since the COVID-19 virus can survive on a variety of surfaces from hours to days, safety precautions with respect to wearing masks, gloves, sanitizing hands and maintaining personal hygiene is very important.
This system is to track them while raising alarms to concerned authorities by verifying their body temperature and whether they have worn masks & gloves. Subsequently, alerting individuals and authorities who might have come in contact with COVID-19 patients.
Hence, AI powered system identifies any unusual crowd movement, track group gatherings and also count people in real time at public areas using Drones. With the use surveillance cameras/Drones combined with thermal imaging, we can identify the following metrics in contactless way without endangering the health of enforcement personnel:
People violating any one or more of the metrics will be identified, tracked and their faces shall be saved in the databases and alerted to the concerned authorities in the premises for violation of social distancing and personal hygiene. The saved face images could be added to the “violator repository” and used to identify people if they are tested positive for COVID-19 later.
Based on tracks of the identified persons, disinfection of those areas can be performed to prevent any further chances of spread to healthy individuals. Also, all people who might have come in contact with the identified person will be notified to maintain caution and advised to practice stricter personal hygiene to prevent emergence of diseases. It is a move to make premises safer for people to move freely in the current situation where prevention of a community transfer is in progress. It is a major step towards enforcing social distancing on a large scale.
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