In many military scenarios, precise location information may not be required by friendly forces for decision making. Such applications can benefit from location obfuscation technique to deceive the adversary. Location obfuscation is defined as the means of deliberately degrading the quality of
Implementation of optimized algorithm for adaptive GPS obfuscation
In many military scenarios, precise location information may not be required by friendly forces for decision making. Such applications can benefit from location obfuscation technique to deceive the adversary. Location obfuscation is defined as the means of deliberately degrading the quality of information about an asset’s location in order to protect its location privacy. The main idea is to alter or hide the original location of the user while still being able to offer the appropriate level of service, while denying the same to an eavesdropper. In addition, the user must have a way to determine the level of alteration that its location will suffer, depending on the amount of information that he is willing to give about the real position of deployed assets.
This Project is envisaged to provide a proof of concept that the actual position of the UAV can be modified in such a way that the transmitted location can be used to deceive the enemy and at the same time actual position can be estimated at the desired base station.
Project objectives include:
This project is based on an adversary model,in which the loaction of the UAV can only be known by the communiaction going on between UAV and the base station,in which UAV is transmitting its location to the base station. First of all, the GPS receiver will be used to imitate the exact location of the UAV and then the exact location of the UAV will be modified through an algorithm in which, there will be offsetting, Mirror image, two or more UAVs at the same time while only single. So then transmitting that obfuscated location of the UAV to the base station ,which will be able to deceive the enemy threat which are sniffing the communication of the UAV with the base station.
The expected deliverables of this project are:
1. Analysis of existing 2-D obfuscation techniques to identify inherent trade-offs.
2. Hardware Implementation of 3-D path obfuscation.
3. Field trials over a drone.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| GPS Receiver | Equipment | 2 | 4000 | 8000 |
| Microcontroller | Miscellaneous | 2 | 5000 | 10000 |
| Transceivers | Equipment | 2 | 6000 | 12000 |
| Parrot A.R Drone 2.0 | Equipment | 1 | 50000 | 50000 |
| Total in (Rs) | 80000 |
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