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Gaurav Kumar Agarwal
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2020 – today
- 2021
- [j2]Gaurav Kumar Agarwal, Mohammed Karmoose, Suhas N. Diggavi, Christina Fragouli, Paulo Tabuada:
Distortion-Based Lightweight Security for Cyber-Physical Systems. IEEE Trans. Autom. Control. 66(4): 1588-1601 (2021) - 2020
- [j1]Gaurav Kumar Agarwal, Martina Cardone, Christina Fragouli:
On Secure Network Coding for Multiple Unicast Traffic. IEEE Trans. Inf. Theory 66(8): 5204-5227 (2020) - [i11]Gaurav Kumar Agarwal, Mohammed Karmoose, Suhas N. Diggavi, Christina Fragouli, Paulo Tabuada:
Distortion based Light-weight Security for Cyber-Physical Systems. CoRR abs/2006.15998 (2020)
2010 – 2019
- 2019
- [b1]Gaurav Kumar Agarwal:
On Information Theoretic and Distortion-based Security. University of California, Los Angeles, USA, 2019 - [c11]Gaurav Kumar Agarwal, Martina Cardone, Christina Fragouli:
On Secure Capacity of Multiple Unicast Traffic over Separable Networks. ITW 2019: 1-5 - [i10]Gaurav Kumar Agarwal, Martina Cardone, Christina Fragouli:
On Secure Network Coding for Multiple Unicast Traffic. CoRR abs/1901.02787 (2019) - [i9]Gaurav Kumar Agarwal, Martina Cardone, Christina Fragouli:
On Secure Capacity of Multiple Unicast Traffic over Two-Layer Networks. CoRR abs/1901.03216 (2019) - 2018
- [c10]Gaurav Kumar Agarwal, Mohammed Karmoose, Suhas N. Diggavi, Christina Fragouli, Paulo Tabuada:
Distorting an Adversary's View in Cyber-Physical Systems. CDC 2018: 1476-1481 - [c9]Gaurav Kumar Agarwal, Yahya H. Ezzeldin, Christina Fragouli, Martina Cardone:
Secure Communication over 1-2-1 Networks. ISIT 2018: 196-200 - [i8]Gaurav Kumar Agarwal, Yahya H. Ezzeldin, Martina Cardone, Christina Fragouli:
Secure Communication over 1-2-1 Networks. CoRR abs/1801.03061 (2018) - [i7]Gaurav Kumar Agarwal, Mohammed Karmoose, Suhas N. Diggavi, Christina Fragouli, Paulo Tabuada:
Distorting an Adversary's View in Cyber-Physical Systems. CoRR abs/1809.04580 (2018) - 2017
- [c8]Gaurav Kumar Agarwal, Martina Cardone, Christina Fragouli:
Secure Network Coding for Multiple Unicast: On the Case of Single Source. ICITS 2017: 188-207 - [c7]Chi-Yo Tsai, Gaurav Kumar Agarwal, Christina Fragouli, Suhas N. Diggavi:
A distortion based approach for protecting inferences. ISIT 2017: 1913-1917 - [i6]Chi-Yo Tsai, Gaurav Kumar Agarwal, Christina Fragouli, Suhas N. Diggavi:
A Distortion Based Approach for Protecting Inferences. CoRR abs/1703.00482 (2017) - 2016
- [c6]Gaurav Kumar Agarwal, Martina Cardone, Christina Fragouli:
On Secure Network Coding for Two Unicast Sessions: Studying Butterflies. GLOBECOM Workshops 2016: 1-6 - [c5]Gaurav Kumar Agarwal, Martina Cardone, Christina Fragouli:
Coding across unicast sessions can increase the secure message capacity. ISIT 2016: 2134-2138 - [i5]Gaurav Kumar Agarwal, Martina Cardone, Christina Fragouli:
On Secure Network Coding for Two Unicast Sessions. CoRR abs/1601.05137 (2016) - [i4]Gaurav Kumar Agarwal, Martina Cardone, Christina Fragouli:
On (Secure) Information flow for Multiple-Unicast Sessions: Analysis with Butterfly Network. CoRR abs/1606.07561 (2016) - 2015
- [c4]Birenjith Sasidharan, Gaurav Kumar Agarwal, P. Vijay Kumar:
Codes with hierarchical locality. ISIT 2015: 1257-1261 - [c3]Birenjith Sasidharan, Gaurav Kumar Agarwal, P. Vijay Kumar:
A high-rate MSR code with polynomial sub-packetization level. ISIT 2015: 2051-2055 - [c2]Gaurav Kumar Agarwal, Birenjith Sasidharan, P. Vijay Kumar:
An alternate construction of an access-optimal regenerating code with optimal sub-packetization level. NCC 2015: 1-6 - [i3]Gaurav Kumar Agarwal, Birenjith Sasidharan, P. Vijay Kumar:
An Alternate Construction of an Access-Optimal Regenerating Code with Optimal Sub-Packetization Level. CoRR abs/1501.04760 (2015) - [i2]Birenjith Sasidharan, Gaurav Kumar Agarwal, P. Vijay Kumar:
A High-Rate MSR Code With Polynomial Sub-Packetization Level. CoRR abs/1501.06662 (2015) - [i1]Birenjith Sasidharan, Gaurav Kumar Agarwal, P. Vijay Kumar:
Codes With Hierarchical Locality. CoRR abs/1501.06683 (2015) - 2013
- [c1]Maneesh Kumar Pandey, Shwetank Shekhar, Nitin Saxena, Gaurav Kumar Agarwal, Amersh Kumar:
An Approach for In-House USB2.0 Electrical Compliance Testing on Nanoscale SoC. MTV 2013: 95-99
Coauthor Index
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