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On the Achievable Capacity of MIMO-OFDM Systems in the CathLab Environment

机译:CathLab环境中MIMO-OFDM系统的可达到容量

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摘要

In the last years, the evolution of digital communications has been harnessed by medical applications. In that context, wireless communications are preferable over wired communications, as they facilitate the work of health technicians by reducing cabling on the stretchers. However, the use of wireless communications is challenging, especially when high data rates and low latencies are required. In those scenarios, multiple-input multiple-output (MIMO) techniques might have an important role, thanks to the high capacity gains that they can exhibit, which ideally increase with the MIMO size. In this work, we study the propagation scenario of a typical medical laboratory through ray-tracing techniques. By taking into account the derived channel model, we study the potential of MIMO techniques in an IEEE 802.11ax environment. Through a set of performance results regarding the system capacity, we show that the MIMO gains might not be as high as supposed in the medical laboratory, being far from the ideal scenario. Therefore, the large data rates required by the modern medical imaging applications might only be achieved with a combination of MIMO systems and large bandwidths.
机译:在过去的几年中,数字通信的发展已经被医疗应用所利用。在这种情况下,无线通信比有线通信更可取,因为无线通信通过减少担架上的电缆来促进卫生技术人员的工作。但是,无线通信的使用具有挑战性,特别是在需要高数据速率和低延迟的情况下。在这些情况下,多输入多输出(MIMO)技术可能会发挥重要作用,这要归功于它们可以展现出的高容量增益,理想情况下,随着MIMO尺寸的增加,这种增益会增加。在这项工作中,我们通过射线追踪技术研究典型医学实验室的传播场景。通过考虑导出的信道模型,我们研究了MIMO技术在IEEE 802.11ax环境中的潜力。通过一组有关系统容量的性能结果,我们表明MIMO增益可能不如医学实验室预期的那样高,与理想情况相去甚远。因此,只有结合MIMO系统和大带宽,才能实现现代医学成像应用所需的大数据速率。

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