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Chinmay S. Vaze
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2010 – 2019
- 2015
- [j9]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom of Two-Unicast Layered MIMO Interference Networks With Feedback. IEEE Trans. Inf. Theory 61(6): 3316-3325 (2015) - [j8]Kaniska Mohanty, Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom Region of the MIMO Interference Channel With Hybrid CSIT. IEEE Trans. Wirel. Commun. 14(4): 1837-1848 (2015) - 2014
- [j7]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom of MIMO Networks With Full-Duplex Receiver Cooperation but no CSIT. IEEE Trans. Inf. Theory 60(9): 5587-5596 (2014) - [j6]Chinmay S. Vaze, Mahesh K. Varanasi:
Independent Signaling Achieves the Capacity Region of the Gaussian Interference Channel With Common Information to Within One Bit. IEEE Trans. Inf. Theory 60(10): 6070-6079 (2014) - [j5]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom Region of the 2 × 2 × 2 MIMO Interference Network. IEEE Trans. Inf. Theory 60(12): 7751-7759 (2014) - 2013
- [j4]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees-of-Freedom Region of the MIMO Interference Channel With Shannon Feedback. IEEE Trans. Inf. Theory 59(8): 4798-4810 (2013) - 2012
- [j3]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom Region and Interference Alignment for the MIMO Interference Channel With Delayed CSIT. IEEE Trans. Inf. Theory 58(7): 4396-4417 (2012) - [j2]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degree-of-Freedom Regions of MIMO Broadcast, Interference, and Cognitive Radio Channels With No CSIT. IEEE Trans. Inf. Theory 58(8): 5354-5374 (2012) - [j1]Chinmay S. Vaze, Mahesh K. Varanasi:
A New Outer Bound via Interference Localization and the Degrees of Freedom Regions of MIMO Interference Networks With No CSIT. IEEE Trans. Inf. Theory 58(11): 6853-6869 (2012) - [c15]Chinmay S. Vaze, Mahesh K. Varanasi:
Retro-cooperative interference alignment and the DoF region of the (M, N)3 interference network with limited Shannon feedback. CISS 2012: 1-5 - [c14]Chinmay S. Vaze, Mahesh K. Varanasi:
Beamforming and aligned interference neutralization achieve the degrees of freedom region of the 2×2×2 MIMO interference network. ITA 2012: 199-203 - [i13]Chinmay S. Vaze, Mahesh K. Varanasi:
Independent signaling achieves the capacity region of the Gaussian interference channel with common information to within one bit. CoRR abs/1202.6658 (2012) - [i12]Kaniska Mohanty, Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom Region for the MIMO Interference Channel with Hybrid CSIT. CoRR abs/1209.0047 (2012) - [i11]Chinmay S. Vaze, Mahesh K. Varanasi:
The degrees of freedom of MIMO networks with full-duplex receiver cooperation but no CSIT. CoRR abs/1209.1291 (2012) - 2011
- [c13]Chinmay S. Vaze, Mahesh K. Varanasi:
Can feedback increase the degrees of freedom of a wireless network with delayed CSIT? Allerton 2011: 76-83 - [c12]Chinmay S. Vaze, Mahesh K. Varanasi:
The degrees of freedom of the 2×2×2 interference network with delayed CSIT and with limited Shannon feedback. Allerton 2011: 824-831 - [c11]Chinmay S. Vaze, Mahesh K. Varanasi:
The degrees of freedom region of the two-user MIMO broadcast channel with delayed CSIT. ISIT 2011: 199-203 - [c10]Chinmay S. Vaze, Mahesh K. Varanasi:
On completing the degrees of freedom characterization of MIMO interference networks with No CSIT. ISIT 2011: 440-444 - [c9]Chinmay S. Vaze, Sanjay Karmakar, Mahesh K. Varanasi:
On the generalized degrees of freedom region of the MIMO interference channel with no CSIT. ISIT 2011: 757-761 - [c8]Chinmay S. Vaze, Mahesh K. Varanasi:
The capacity region of the symmetric Gaussian interference channel with common information to within a constant gap. ISIT 2011: 1181-1185 - [c7]Chinmay S. Vaze, Mahesh K. Varanasi:
The degrees of freedom region of the MIMO interference channel with delayed CSIT. ISIT 2011: 2203-2207 - [i10]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom Region of the Two-User MIMO Broadcast Channel with Delayed CSI. CoRR abs/1101.0306 (2011) - [i9]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom Region and Interference Alignment for the MIMO Interference Channel with Delayed CSI. CoRR abs/1101.5809 (2011) - [i8]Chinmay S. Vaze, Mahesh K. Varanasi:
A New Outer-Bound via Interference Localization and the Degrees of Freedom Regions of MIMO Interference Networks with no CSIT. CoRR abs/1105.6033 (2011) - [i7]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom Region of the MIMO Interference Channel with Shannon Feedback. CoRR abs/1109.5779 (2011) - [i6]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom of the 2-Hop, 2-User Interference Channel with Feedback. CoRR abs/1109.5790 (2011) - 2010
- [c6]Chinmay S. Vaze, Mahesh K. Varanasi:
A large-system analysis of the imperfect-CSIT Gaussian broadcast channel with a DPC-based transmission strategy. CISS 2010: 1-5 - [c5]Chinmay S. Vaze, Mahesh K. Varanasi:
The degrees of freedom region of the MIMO cognitive interference channel with no CSIT. ISIT 2010: 440-444 - [c4]Chinmay S. Vaze, Mahesh K. Varanasi:
CSI feedback scaling rate vs multiplexing gain tradeoff for DPC-based transmission in the Gaussian MIMO broadcast channel. ISIT 2010: 2353-2357 - [i5]Chinmay S. Vaze, Mahesh K. Varanasi:
A Large-System Analysis of the Imperfect-CSIT Gaussian Broadcast Channel with a DPC-based Transmission Strategy. CoRR abs/1002.1531 (2010)
2000 – 2009
- 2009
- [c3]Chinmay S. Vaze, Mahesh K. Varanasi:
On the achievable rate of the fading dirty paper channel with imperfect CSIT. CISS 2009: 346-351 - [c2]Chinmay S. Vaze, Mahesh K. Varanasi:
Dirty Paper Coding for the MIMO cognitive radio channel with imperfect CSIT. ISIT 2009: 2532-2536 - [i4]Chinmay S. Vaze, Mahesh K. Varanasi:
Dirty Paper Coding for Fading Channels with Partial Transmitter Side Information. CoRR abs/0901.2764 (2009) - [i3]Chinmay S. Vaze, Mahesh K. Varanasi:
On the Achievable Rate of the Fading Dirty Paper Channel with Imperfect CSIT. CoRR abs/0903.4526 (2009) - [i2]Chinmay S. Vaze, Mahesh K. Varanasi:
Dirty Paper Coding for the MIMO Cognitive Radio Channel with Imperfect CSIT. CoRR abs/0906.2252 (2009) - [i1]Chinmay S. Vaze, Mahesh K. Varanasi:
The Degrees of Freedom Regions of MIMO Broadcast, Interference, and Cognitive Radio Channels with No CSIT. CoRR abs/0909.5424 (2009) - 2008
- [c1]Chinmay S. Vaze, Mahesh K. Varanasi:
Dirty Paper Coding for fading channels with partial transmitter side information. ACSCC 2008: 341-345
Coauthor Index
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