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Improving random access efficiency with uniformly deployed relays and interference cancellation for energy-constrained M2M devices

机译:通过对能量受限的M2M设备进行统一部署的中继和干扰消除来提高随机访问效率

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In this paper, we attempt to improve the efficiency of random access employed for a massive number of energy-constrained M2M devices to transmit their data to a base station (BS) by exploiting relaying and interference cancellation (IC). Each device transmits a single packet with a minimum required power, which is then forwarded by surrounding relay(s) to derive a benefit of IC at BS. While IC can increase the number of packets successfully decoded at BS, relaying increases the overall traffic load since each relay joins the random access sharing the radio resource with the devices in order to forward the received packets. Taking this trade-off into account, we investigate a possible gain brought by relaying and IC in terms of average number of successfully received packets at BS. Our numerical results show that the efficiency of random access from a massive number of devices can be significantly improved only by uniformly deploying a small number of relays inside a cell. The proposed approach does not require each M2M device to redundantly transmit their data to apply IC, which is favorable from a viewpoint of energy-efficiency of each battery-operated M2M device.
机译:在本文中,我们尝试通过利用中继和干扰消除(IC)来提高大量受能量限制的M2M设备将其数据传输到基站(BS)所采用的随机访问效率。每个设备以最小的所需功率发送单个数据包,然后由周围的一个或多个中继转发,以在BS处获得IC的好处。尽管IC可以增加在BS处成功解码的数据包的数量,但中继会增加总体业务负载,因为每个中继都加入了与设备共享无线电资源的随机访问,以便转发接收到的数据包。考虑到这种折衷,我们根据在BS成功接收到的数据包的平均数量,研究了中继和IC可能带来的收益。我们的数值结果表明,仅通过在单元内均匀部署少量中继,即可显着提高来自大量设备的随机访问效率。提出的方法不需要每个M2M设备冗余地传输其数据以应用IC,从每个电池供电的M2M设备的能源效率的角度来看,这是有利的。

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