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相关论文: Necessary Conditions for K/2 Degrees of Freedom

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We present a necessary and sufficient condition for $1/2$ degree of freedom for each user in constant $K$-user single-antenna interference channels. This condition applies to all channel topologies, i.e., to fully-connected channels as well…

信息论 · 计算机科学 2020-06-04 Recep Gül , David Stotz , Syed Ali Jafar , Helmut Bölcskei , Shlomo Shamai

It is well known that in K-user constant single-antenna interference channels K/2 degrees of freedom (DoF) can be achieved for almost all channel matrices. Explicit conditions on the channel matrix to admit K/2 DoF are, however, not…

信息论 · 计算机科学 2016-11-17 David Stotz , Helmut Bölcskei

While the best known outerbound for the K user interference channel states that there cannot be more than K/2 degrees of freedom, it has been conjectured that in general the constant interference channel with any number of users has only…

信息论 · 计算机科学 2007-07-13 Viveck R. Cadambe , Syed A. Jafar

We provide innerbound and outerbound for the total number of degrees of freedom of the $K$ user multiple input multiple output (MIMO) Gaussian interference channel with $M$ antennas at each transmitter and $N$ antennas at each receiver if…

信息论 · 计算机科学 2008-09-02 Tiangao Gou , Syed A. Jafar

Consider a K-user flat fading MIMO interference channel where the k-th transmitter (or receiver) is equipped with M_k (respectively N_k) antennas. If a large number of statistically independent channel extensions are allowed either across…

信息论 · 计算机科学 2015-05-27 Meisam Razaviyayn , Gennady Lyubeznik , Zhi-Quan Luo

We analyze the gains of opportunistic communication in multiuser interference channels. Consider a fully connected $n$-user Gaussian interference channel. At each time instance only $K\leq n$ transmitters are allowed to be communicating…

信息论 · 计算机科学 2010-07-22 Ali Tajer , Xiaodong Wang

We study the degrees of freedom (DoF) regions of two-user multiple-input multiple-output (MIMO) Z and full interference channels in this paper. We assume that the receivers always have perfect channel state information. We derive the DoF…

信息论 · 计算机科学 2010-03-23 Lei Ke , Zhengdao Wang

We study vector space interference alignment for the MIMO interference channel with no time or frequency diversity, and no symbol extensions. We prove both necessary and sufficient conditions for alignment. In particular, we characterize…

信息论 · 计算机科学 2018-06-18 Guy Bresler , Dustin Cartwright , David Tse

We consider the $K$-user Multiple Input Multiple Output (MIMO) Gaussian interference channel with $M$ antennas at each transmitter and $N$ antennas at each receiver. It is assumed that channel coefficients are constant and are available at…

信息论 · 计算机科学 2016-11-15 Akbar Ghasemi , Abolfazl Seyed Motahari , Amir Keyvan Khandani

In this paper, we consider the K-user interference channel with partial cooperation, where a strict subset of the K users cooperate. For the K-user interference channel with cooperating subsets of length M, the outer bound of the total…

信息论 · 计算机科学 2011-06-02 Ahmed A. Naguib , Khaled Elsayed , Mohammed Nafie

It has been conjectured by Host-Madsen and Nosratinia that complex Gaussian interference channels with constant channel coefficients have only one degree-of-freedom regardless of the number of users. While several examples are known of…

信息论 · 计算机科学 2012-04-03 Viveck R. Cadambe , Syed A. Jafar , Chenwei Wang

We consider a homogeneous multiple cellular scenario with multiple users per cell, i.e., $K\geq 1$ where $K$ denotes the number of users in a cell. In this scenario, a degrees of freedom outer bound as well as an achievable scheme that…

信息论 · 计算机科学 2011-08-09 Taejoon Kim , David J. Love , Bruno Clerckx , Duckdong Hwang

We characterize the generalized degrees of freedom of the $K$ user symmetric Gaussian interference channel where all desired links have the same signal-to-noise ratio (SNR) and all undesired links carrying interference have the same…

信息论 · 计算机科学 2012-04-03 Syed A. Jafar , Sriram Vishwanath

We investigate the total degrees of freedom (DoF) of the K-user rank-deficient interference channel with feedback. For the two-user case, we characterize the total DoF by developing an achievable scheme and deriving a matching upper bound.…

信息论 · 计算机科学 2016-11-17 Sung Ho Chae , Changho Suh , Sae-Young Chung

For a $K$-user interference channel with $M$ antenna at each transmitter and each receiver, the maximum total DoF of this channel has been previously determined to be $\max \sum_{k=1}^K d_k = MK/2$. However, the DoF region remains to be…

信息论 · 计算机科学 2010-11-17 Huarui Yin

We consider vector space interference alignment strategies over the $K$-user interference channel and derive an upper bound on the achievable degrees of freedom as a function of the channel diversity $L$, where the channel diversity is…

信息论 · 计算机科学 2016-09-08 Cheuk Ting Li , Ayfer Özgür

The degrees of freedom (DoF) number of the fully connected K-user Gaussian interference channel is known to be K/2. In [1], the DoF for the same channel model was studied while allowing each message to be available at its own transmitter as…

信息论 · 计算机科学 2012-02-29 Aly El Gamal , V. Sreekanth Annapureddy , Venugopal V. Veeravalli

We study the converse and achievability for the degrees of freedom of the multicellular multiple-input multiple-output (MIMO) multiple access channel (MAC) with constant channel coefficients. We assume L>1 homogeneous cells with K>0 users…

信息论 · 计算机科学 2016-10-04 Taejoon Kim , David J. Love , Bruno Clerckx

The degrees-of-freedom of a K-user Gaussian interference channel (GIFC) has been defined to be the multiple of (1/2)log_2(P) at which the maximum sum of achievable rates grows with increasing P. In this paper, we establish that the…

信息论 · 计算机科学 2009-01-14 Raul Etkin , Erik Ordentlich

We study the Degrees of Freedom (DoF) of the K-user interference channel with coordinated multi-point (CoMP) transmission and reception. Each message is jointly transmitted by M_t successive transmitters, and is jointly received by M_r…

信息论 · 计算机科学 2016-11-18 V. Sreekanth Annapureddy , Aly El Gamal , Venugopal V. Veeravalli
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