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Constant-Rate Power Allocation under Constraint on Average BER in Adaptive OFDM Systems

机译:自适应OFDM系统中平均BER约束下的恒定速率功率分配

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In adaptive orthogonal frequency division multiplexing (OFDM)systems, different powers and rates can be allocated to subcarriers optimally by water-filling. This strategy has been proved to improve the system performance significantly. However, a large signalling overhead is induced by water-filling to contain the group of presently employed mapping schemes. The faster the channel varies in time, the more frequently the large signalling overhead is needed. In this paper, to avoid such a problem, we propose that a constant rate and different powers are allocated to subcarriers while satisfying the constraints on the transmission rate and the average bit-error rate (BER). First, an approximate relationship between BER and signal-to-noise ratio (SNR) is employed. Then, based on the convex optimization framework, the transmission power is optimally distributed to the used subcarriers with an optimal constant rate. The subcarrier assignment can be determined by an upgraded bisection method, which can be also used for other resource allocation problems. Simulations demonstrate that the proposed resource allocation strategy has better performance than water-filling with the signalling overhead considered in fast time-varying environment.
机译:在自适应正交频分复用(OFDM)系统中,可以通过注水将不同的功率和速率最优地分配给子载波。实践证明,该策略可以显着提高系统性能。然而,充水导致包含当前使用的映射方案的组的大量信令开销。信道随时间变化的越快,则需要更大的信令开销就越频繁。在本文中,为避免此类问题,我们提出了在满足传输速率和平均误码率(BER)约束的同时,将恒定速率和不同功率分配给子载波的方法。首先,采用BER与信噪比(SNR)之间的近似关系。然后,基于凸优化框架,以最优的恒定速率将发射功率最优地分配给所使用的子载波。子载波分配可以通过升级的二等分方法确定,该方法也可以用于其他资源分配问题。仿真表明,所提出的资源分配策略具有比在快速时变环境中考虑信令开销的注水更好的性能。

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