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A Novel Approach to MISO Interference Networks under Maximum Receive-Power Regulation

机译:最大接收功率调节下的MISO干扰网络的一种新方法

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An aggressive frequency reuse is expected within the next years in order to increase the spectral efficiency. Multiuser interference by all in-band transmitters can create a communication bottleneck and, therefore, it is compulsory to control it by means of radiated power regulations. In this work we consider received power as the main way to properly measure radiated power, serving at the same time as a spectrum sharing mechanism. Taking into account the constraints on the maximum total receive-power and maximum transmit-power, we first obtain the transmit powers that attain the Pareto-efficient rates in an uncoordinated network. Among these rates, we identify the maximum sum-rate point for noise-limited scenarios. Next, in order to reach this working point using as less power as possible, we design a novel beamformer under some practical considerations. This beamformer can be calculated in a non-iterative and distributed fashion (i.e. transmitters do not need to exchange information). We evaluate our design by means of Monte Carlo simulations, compare it with other non-iterative transmit beamformers and show its superior performance when the spectrum sharing receive-power constraints are imposed.
机译:在未来几年内预期积极的频率重用,以提高光谱效率。所有带内发射器的多用户干扰都可以创建通信瓶颈,因此,通过辐射功率规则控制它是强制性的。在这项工作中,我们认为接收的电源是适当测量辐射功率的主要方式,同时作为频谱共享机制服务。考虑到最大总接收功率和最大传输功率的约束,我们首先获得在不协调的网络中获得静态速率的发射功率。在这些速率中,我们确定噪声限制方案的最大总和点。接下来,为了使用尽可能少的功率来达到这个工作点,我们在一些实际考虑下设计一个新颖的波束形成器。该波束形成器可以以非迭代和分布式方式计算(即发射器不需要交换信息)。我们通过Monte Carlo模拟评估我们的设计,将其与其他非迭代传输波束形成器进行比较,并在施加频谱共享接收功率约束时显示出其优异的性能。

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