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Distributed Timely Throughput Optimal Scheduling for the Internet of Nano-Things

机译:纳米物联网的分布式及时吞吐量优化调度

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Nanotechnology is enabling the development of miniature devices able to perform simple tasks at the nanoscale. The interconnection of such nano-devices with traditional wireless networks and ultimately the Internet enables a new networking paradigm known as the Internet of Nano-Things (IoNT). Despite their promising applications, nano-devices have constrained power, energy, and computation capabilities along with very limited memory on board, which may only be able to hold one packet at once and, thus, requires packets to be delivered before certain hard deadlines. Toward this goal, a fully-distributed computation-light provably-correct scheduling/MAC protocol is introduced for bufferless nano-devices, which can maximize the network throughput, while achieving perpetual operation. More specifically, the proposed scheduling algorithm allows every nano-device to make optimal transmission decisions locally based on its incoming traffic rate, virtual debts, and channel sensing results. It is proven that the proposed algorithm is timely throughput optimal in the sense that it can guarantee reliable data delivery before deadlines as long as the incoming traffic rates are within the derived maximum network capacity region. This feature not only can lead to high network throughput for the IoNT, but also guarantees that the memory of each device is empty before the next packet arrives, thus addressing the fundamental challenge imposed by the extremely limited memory of nano-devices. In addition, the optimal deadline is derived, which guarantees that all the nano-devices can achieve perpetual communications by jointly considering the energy consumption of communications over the terahertz channel and energy harvesting based on piezoelectric nano-generators.
机译:纳米技术正在促进能够执行纳米级简单任务的微型设备的开发。此类纳米设备与传统无线网络以及最终与Internet的互连实现了一种新的联网模式,称为纳米物联网(IoNT)。尽管纳米设备具有广阔的应用前景,但它们的功率,能量和计算能力受到限制,并且板载内存非常有限,纳米内存只能一次容纳一个数据包,因此需要在一定的严格期限之前交付数据包。为了实现这一目标,针对无缓冲纳米设备引入了一种完全分布式的计算轻量可证明正确的调度/ MAC协议,该协议可以最大化网络吞吐量,同时实现永久操作。更具体地说,所提出的调度算法允许每个纳米设备根据其传入流量,虚拟债务和信道感测结果在本地做出最佳传输决策。事实证明,从输入流量速率在导出的最大网络容量范围内的前提下,可以保证在截止日期之前可靠地进行数据传输的意义上,所提出的算法是及时的吞吐量最优的。此功能不仅可以提高IoNT的网络吞吐量,而且可以确保每个设备的内存在下一个数据包到达之前都是空的,从而解决了纳米设备内存极其有限所带来的根本挑战。此外,推导了最佳期限,该期限确保了所有纳米设备都可以通过共同考虑太赫兹通道上的通信能耗和基于压电纳米发电机的能量收集来实现永久通信。

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