The advent of mobile communication and ubiquitous computing has extended opportunities for users to make life easier by accessing vast information through location based services. However, accessing these services may expose users to threat of information disclosure .The existing infrastruct
Distance and velocity based route selection strategy for location Privacy over mobile Traveler
The advent of mobile communication and ubiquitous computing has extended opportunities for users to
make life easier by accessing vast information through location based services. However, accessing these
services may expose users to threat of information disclosure .The existing infrastructure enable mobile
applications to track an entity’s position and reveal statistical information based on his location. A wide
range of mobile applications provide services including entertainment, health, navigation, and traffic
management. These services are accessed on regular basis which is a constant threat for location privacy
of a user. Personal data privacy has always been a critical problem and due to expansion of location based
services, an adversary can easily track a user’s location on basis of information disclosed. As a
consequence, location privacy of the user becomes a challenge. The private information of a user, that has
been recorded during his visit to a hospital, library, and social networking website or while driving on a
road becomes an invasive catalogue of data. Location privacy of vehicle networks has become a debatable
topic in recent years.
In this project we will compare many existing location privacy policies based on distance and velocity.
The final outcome of the project will reveal which protocol best suits for the location privacy of the
mobile users.
References:
1. Memon, Imran. "Distance and clustering?based energy?efficient pseudonyms changing strategy over
road network." International Journal of Communication Systems (2018): e3704.
2. Memon, Imran, and Hamid Turab Mirza. "MADPTM: Mix zones and dynamic pseudonym trust
management system for location privacy." International Journal of Communication Systems 31.17 (2018):
e3795.
3. Memon, Imran, et al. "DPMM: dynamic pseudonym-based multiple mix-zones generation for mobile
traveler." Multimedia Tools and Applications 76.22 (2017): 24359-24388.
This research proposal has following objectives:
1. To study the related work
2. To develop new algorithm to protect the user location privacy
3. To propose set of design protocols that will be used to secure communication between users to
Road side unit
Design the privacy algorithm.
we will compare many existing location privacy policies based on distance and velocity.
the final of the project will reveal which protocol best suit for the location privacy of the mobile users.
multiple computers, matlab/java programming ,sumo simulator /network generator,open street map.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| personal computer(laptops) | Equipment | 2 | 30000 | 60000 |
| usb | Equipment | 2 | 1500 | 3000 |
| fast speed internet | Equipment | 1 | 7000 | 7000 |
| printing | Miscellaneous | 500 | 20 | 10000 |
| Total in (Rs) | 80000 |
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