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Expanding the Compute-and-Forward Framework: Unequal Powers, Signal Levels, and Multiple Linear Combinations.

, , , and . IEEE Trans. Inf. Theory, 62 (9): 4879-4909 (2016)

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Expanding the Compute-and-Forward Framework: Unequal Powers, Signal Levels, and Multiple Linear Combinations., , , and . IEEE Trans. Inf. Theory, 62 (9): 4879-4909 (2016)A Distributed Numerical Approach to Interference Alignment and Applications to Wireless Interference Networks., , and . IEEE Trans. Inf. Theory, 57 (6): 3309-3322 (2011)Addressing Unreliability in Emerging Devices and Non-von Neumann Architectures Using Coded Computing., , , , , and . Proc. IEEE, 108 (8): 1219-1234 (2020)Duality and Stability Regions of Multi-rate Broadcast and Multiple Access Networks, and . CoRR, (2007)Linear network coding for two-unicast-Z networks: A commutative algebraic perspective and fundamental limits., and . ISIT, page 1177-1181. IEEE, (2017)Feedback interference alignment: Exact alignment for three users in two time slots., , , and . ICC, page 3073-3078. IEEE, (2013)Interference alignment via random codes and he capacity of a class of deterministic interference channels., and . Allerton, page 67-74. IEEE, (2009)Generalized degrees of freedom of the (noisy) X channel., , and . ACSCC, page 1565-1569. IEEE, (2008)Codes for Distributed Finite Alphabet Matrix-Vector Multiplication., and . ISIT, page 1625-1629. IEEE, (2018)ε-Approximate Coded Matrix Multiplication is Nearly Twice as Efficient as Exact Multiplication., , , and . CoRR, (2021)