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A low complexity optimal spectrum balancing algorithm for digital subscriber lines

机译:一种数字用户线的低复杂度最佳频谱平衡算法

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In modern DSL systems, multi-user crosstalk is a major source of performance degradation. Optimal spectrum balancing (OSB) is a centralized algorithm that mitigates the effect of crosstalk by allocating optimal transmit spectra to all interfering DSL modems. By the use of Lagrange multipliers the algorithm decouples the spectrum management problem into per-tone optimization problems. The remaining issues are then finding the Lagrange multipliers that enforce the constraints and solving the per-tone optimization problems. Finding the optimal Lagrange multipliers can become complex when more than two users are considered. Starting from the single-user case, this paper presents a number of properties, which are then extended to the multi-user case and lead to an efficient search algorithm for the Lagrange multipliers. Simulations show that the number of Lagrange multiplier evaluations is as small as 20-50, independent of the number of users. Secondly, the complexity of the per-tone optimization problems grows exponentially with the number of lines in the binder. For multiple-user scenarios this becomes computationally intractable. This paper presents an efficient branch-and-bound approach for the per-tone optimization problem. Simulations show enormous complexity reductions, especially for a large number of users.
机译:在现代DSL系统中,多用户串扰是性能下降的主要原因。最佳频谱平衡(OSB)是一种集中式算法,可通过将最佳发射频谱分配给所有干扰DSL调制解调器来减轻串扰的影响。通过使用拉格朗日乘法器,该算法将频谱管理问题解耦为单音优化问题。剩下的问题是找到实施约束的拉格朗日乘数,并解决每音调优化问题。当考虑两个以上的用户时,找到最佳的拉格朗日乘数可能会变得很复杂。从单用户案例开始,本文介绍了许多属性,然后将这些属性扩展到多用户案例,并为Lagrange乘法器提供了一种有效的搜索算法。仿真显示,拉格朗日乘数评估的数量小至20至50,而与用户数量无关。其次,每个音调优化问题的复杂性随着活页夹中行数的增加而呈指数增长。对于多用户方案,这在计算上变得棘手。本文提出了一种有效的分支定界方法来解决单音优化问题。仿真显示出极大地降低了复杂性,尤其是对于大量用户而言。

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