Multicell MISO Downlink Weighted Sum-Rate Maximization: A Distributed Approach
We develop an easy to implement distributed method for weighted sum-rate maximization (WSRMax) problem in a multicell multiple antenna downlink system. Unlike the recently proposed minimum weighted mean-squared error based algorithms, where at each iteration all mobile terminals needs to estimate th...
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| Published in | IEEE transactions on signal processing Vol. 61; no. 3; pp. 556 - 570 |
|---|---|
| Main Authors | , , , |
| Format | Journal Article |
| Language | English |
| Published |
New York, NY
IEEE
01.02.2013
Institute of Electrical and Electronics Engineers |
| Subjects | |
| Online Access | Get full text |
| ISSN | 1053-587X 1941-0476 1941-0476 |
| DOI | 10.1109/TSP.2012.2225060 |
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| Abstract | We develop an easy to implement distributed method for weighted sum-rate maximization (WSRMax) problem in a multicell multiple antenna downlink system. Unlike the recently proposed minimum weighted mean-squared error based algorithms, where at each iteration all mobile terminals needs to estimate the covariance matrices of their received signals, compute and feedback over the air certain parameters to the base stations (BS), our algorithm operates without any user terminal assistance. It requires only BS to BS signalling via reliable backhaul links (e.g., fiber, microwave links) and all required computation is performed at the BSs. The algorithm is based on primal decomposition and subgradient methods, where the original nonconvex problem is split into a master problem and a number of subproblems (one for each BS). A novel sequential convex approximation strategy is proposed to address the nonconvex master problem. In the case of subproblems, we adopt an existing iterative approach based on second-order cone programming and geometric programming. The subproblems are coordinated to find a (possibly suboptimal) solution to the master problem. Subproblems can be solved by BSs in a fully asynchronous manner, though the coordination between subproblems should be synchronous. Numerical results are provided to see the behavior of the algorithm under different degrees of BS coordination. They show that the proposed algorithm yields a good tradeoff between the implementation-level simplicity and the performance. |
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| AbstractList | We develop an easy to implement distributed method for weighted sum-rate maximization (WSRMax) problem in a multicell multiple antenna downlink system. Unlike the recently proposed minimum weighted mean-squared error based algorithms, where at each iteration all mobile terminals needs to estimate the covariance matrices of their received signals, compute and feedback over the air certain parameters to the base stations (BS), our algorithm operates without any user terminal assistance. It requires only BS to BS signalling via reliable backhaul links (e.g., fiber, microwave links) and all required computation is performed at the BSs. The algorithm is based on primal decomposition and subgradient methods, where the original nonconvex problem is split into a master problem and a number of subproblems (one for each BS). A novel sequential convex approximation strategy is proposed to address the nonconvex master problem. In the case of subproblems, we adopt an existing iterative approach based on second-order cone programming and geometric programming. The subproblems are coordinated to find a (possibly suboptimal) solution to the master problem. Subproblems can be solved by BSs in a fully asynchronous manner, though the coordination between subproblems should be synchronous. Numerical results are provided to see the behavior of the algorithm under different degrees of BS coordination. They show that the proposed algorithm yields a good tradeoff between the implementation-level simplicity and the performance. |
| Author | Weeraddana, P. C. Ephremides, A. Latva-aho, M. Codreanu, M. |
| Author_xml | – sequence: 1 givenname: P. C. surname: Weeraddana fullname: Weeraddana, P. C. email: chatw@kth.se organization: Autom. Control Lab., KTH R. Inst. of Technol., Stockholm, Sweden – sequence: 2 givenname: M. surname: Codreanu fullname: Codreanu, M. email: codreanu@ee.oulu.fi organization: Centre for Wireless Commun., Univ. of Oulu, Oulu, Finland – sequence: 3 givenname: M. surname: Latva-aho fullname: Latva-aho, M. email: matti.latva-aho@ee.oulu.fi organization: Centre for Wireless Commun., Univ. of Oulu, Oulu, Finland – sequence: 4 givenname: A. surname: Ephremides fullname: Ephremides, A. email: etony@ece.umd.edu organization: Dept. of Electr. & Comput. Eng., Univ. of Maryland, College Park, MD, USA |
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| Keywords | Performance evaluation Second order Mobile phone Base station Decomposition method Feedback regulation Downlink Iterative method subgradient method Implementation Optimization Mean square error Distributed processing Successive approximation Distributed optimization primal decomposition Covariance Antenna array Optical fiber second-order cone programming Optical links Radio link geometric programming wireless networks Signalling Algorithm Multiple system successive convex approximations Signal processing Numerical simulation |
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| Snippet | We develop an easy to implement distributed method for weighted sum-rate maximization (WSRMax) problem in a multicell multiple antenna downlink system. Unlike... |
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| SubjectTerms | Applied sciences Approximation methods Detection, estimation, filtering, equalization, prediction Distributed optimization Exact sciences and technology geometric programming Information, signal and communications theory Integrated circuits Interference Optimization primal decomposition Programming second-order cone programming Signal and communications theory Signal processing algorithms Signal, noise subgradient method successive convex approximations Telecommunications and information theory Transmitting antennas wireless networks |
| Title | Multicell MISO Downlink Weighted Sum-Rate Maximization: A Distributed Approach |
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