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Optimization Framework and Parameter Determination for Proximity-Based Device Discovery in D2D Communication Systems

机译:D2D通信系统中基于近距离的设备发现的优化框架和参数确定

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摘要

One of the most important processes in device-to-device communications of cellular devices is that of discovery, which determines the proximity of devices. When a discovery process is performed, there are several parameters to determine, including the discovery range, the discovery period, and the modulation and coding scheme of the discovery messages. In this paper, we address the relationships between these parameters and describe an optimization framework to determine them. In the proposed procedure, it is important to first optimize the discovery rate, which is defined as the number of discoverable devices per unit time. Once the discovery rate is maximized, the discovery period can be determined accordingly based on the device density and the target discovery range. Since the discovery rate is not affected by many of discovery parameters such as the discovery range, the device density, and the discovery period, it can be used as a performance metric for comparing discovery schemes with different discovery ranges or different discovery periods.
机译:蜂窝设备的设备到设备通信中最重要的过程之一是发现的,这决定了设备的接近度。当执行发现过程时,存在多个参数来确定,包括发现范围,发现时段和发现消息的调制和编码方案。在本文中,我们解决了这些参数之间的关系并描述了确定它们的优化框架。在所提出的过程中,首先优化发现速率非常重要,该发现率被定义为每单位时间的可发现设备的数量。一旦发现率最大化,就可以基于设备密度和目标发现范围相应地确定发现时段。由于发现速率不受许多发现参数的影响,例如发现范围,设备密度和发现时段,因此可以用作比较具有不同发现范围或不同发现时段的发现方案的性能度量。

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