Interference Alignment With Partial CSI Feedback in MIMO Cellular Networks
Interference alignment (IA) is a linear precoding strategy that can achieve optimal capacity scaling at high SNR in interference networks. However, most existing IA designs require full channel state information (CSI) at the transmitters, which could lead to significant CSI signaling overhead. There...
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Published in | IEEE transactions on signal processing Vol. 62; no. 8; pp. 2100 - 2110 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
New York, NY
IEEE
15.04.2014
Institute of Electrical and Electronics Engineers The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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Online Access | Get full text |
ISSN | 1053-587X 1941-0476 |
DOI | 10.1109/TSP.2014.2307283 |
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Abstract | Interference alignment (IA) is a linear precoding strategy that can achieve optimal capacity scaling at high SNR in interference networks. However, most existing IA designs require full channel state information (CSI) at the transmitters, which could lead to significant CSI signaling overhead. There are two techniques, namely CSI quantization and CSI feedback filtering, that reduce CSI feedback overhead. In this paper, we consider IA processing with CSI feedback filtering in MIMO cellular networks. We introduce a novel metric, namely the feedback dimension, to quantify the first order CSI feedback cost associated with the CSI feedback filtering. The CSI feedback filtering poses several important challenges in IA processing. First, there is a hidden partial CSI knowledge constraint in IA precoder design, which cannot be handled using conventional IA design methodology. Furthermore, existing results on the feasibility conditions of IA cannot be applied due to the partial CSI knowledge. Finally, it is very challenging to find out how much CSI feedback is actually needed to support IA processing. We shall address the above challenges and propose a new IA feasibility condition under partial CSIT knowledge in MIMO cellular networks. Based on this, we consider the CSI feedback dimension minimization subject to the degrees of freedom requirements, and further propose an asymptotically optimal solution and derive closed-form trade-off results between the CSI feedback cost and IA performance in MIMO cellular networks. |
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AbstractList | Interference alignment (IA) is a linear precoding strategy that can achieve optimal capacity scaling at high SNR in interference networks. However, most existing IA designs require full channel state information (CSI) at the transmitters, which could lead to significant CSI signaling overhead. There are two techniques, namely CSI quantization and CSI feedback filtering, that reduce CSI feedback overhead. In this paper, we consider IA processing with CSI feedback filtering in MIMO cellular networks. We introduce a novel metric, namely the feedback dimension, to quantify the first order CSI feedback cost associated with the CSI feedback filtering. The CSI feedback filtering poses several important challenges in IA processing. First, there is a hidden partial CSI knowledge constraint in IA precoder design, which cannot be handled using conventional IA design methodology. Furthermore, existing results on the feasibility conditions of IA cannot be applied due to the partial CSI knowledge. Finally, it is very challenging to find out how much CSI feedback is actually needed to support IA processing. We shall address the above challenges and propose a new IA feasibility condition under partial CSIT knowledge in MIMO cellular networks. Based on this, we consider the CSI feedback dimension minimization subject to the degrees of freedom requirements, and further propose an asymptotically optimal solution and derive closed-form trade-off results between the CSI feedback cost and IA performance in MIMO cellular networks. |
Author | Xiongbin Rao Lau, Vincent K. N. |
Author_xml | – sequence: 1 surname: Xiongbin Rao fullname: Xiongbin Rao email: xrao@ust.hk organization: Dept. of Electron. & Comput. Eng., Hong Kong Univ. of Sci. & Technol., Hong Kong, China – sequence: 2 givenname: Vincent K. N. surname: Lau fullname: Lau, Vincent K. N. email: eeknlau@ust.hk organization: Dept. of Electron. & Comput. Eng., Hong Kong Univ. of Sci. & Technol., Hong Kong, China |
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Cites_doi | 10.1109/TSP.2010.2050480 10.1109/TSP.2014.2307283 10.1109/TIT.2009.2021380 10.1109/ISIT.2005.1523709 10.1109/ISIT.2012.6283962 10.1109/TSP.2011.2173683 10.1109/ICASSP.2011.5947104 10.1109/TSP.2012.2218238 10.1145/321694.321699 10.1561/0100000001 10.1109/TIT.2008.926344 10.1109/TSP.2012.2192432 10.1109/TIT.2007.915691 10.1109/ISIT.2010.5513544 10.1109/TSP.2013.2252168 10.1109/TCOMM.2011.070511.100313 10.1109/TSP.2013.2248005 10.1109/TSP.2013.2241056 10.1109/TIT.2011.2142270 |
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Keywords | Parameter estimation CSI feedback dimension partial CSI feedback Wireless telecommunication Transmitter Feedback regulation interference alignment (IA) Cell network Coding Signal quantization Channel estimation Pretreatment Cost efficiency analysis Mobile radiocommunication MIMO system MIMO cellular networks Filtering Coding circuit Signalling First order Optimal solution Telecommunication network IA feasibility condition Signal processing Feasibility Metric Signal to noise ratio |
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SubjectTerms | Alignment Applied sciences Coding, codes CSI feedback dimension Detection, estimation, filtering, equalization, prediction Exact sciences and technology Feasibility Feedback Filtering Filtration IA feasibility condition Information, signal and communications theory Interference interference alignment (IA) Manifolds Mathematical analysis Measurement MIMO MIMO cellular networks Minimization Optimization partial CSI feedback Quantization (signal) Sampling, quantization Signal and communications theory Signal to noise ratio Signal, noise Telecommunications and information theory Wireless communications Wireless networks |
Title | Interference Alignment With Partial CSI Feedback in MIMO Cellular Networks |
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