首页> 外文会议>IEEE Conference on Computer Communications >Revealing Much While Saying Less: Predictive Wireless for Status Update
【24h】

Revealing Much While Saying Less: Predictive Wireless for Status Update

机译:在说较少的同时揭示:预测无线的状态更新

获取原文

摘要

Wireless communications for status update are becoming increasingly important, especially for machine-type control applications. Existing work has been mainly focused on Age of Information (AoI) optimizations. In this paper, a status-aware predictive wireless interface design, networking and implementation are presented which aim to minimize the status recovery error of a wireless networked system by leveraging online status model predictions. Two critical issues of predictive status update are addressed: practicality and usefulness. Link-level experiments on a Software-Defined-Radio (SDR) testbed are conducted and test results show that the proposed design can significantly reduce the number of wireless transmissions while maintaining a low status recovery error. A Status-aware Multi-Agent Reinforcement learning neTworking solution (SMART) is proposed to dynamically and autonomously control the transmit decisions of devices in an ad hoc network based on their individual statuses. System-level simulations of a multi dense platooning scenario are carried out on a road traffic simulator. Results show that the proposed schemes can greatly improve the platooning control performance in terms of the minimum safe distance between successive vehicles, in comparison with the AoI-optimized status-unaware and communication latency-optimized schemes-this demonstrates the usefulness of our proposed status update schemes in a real-world application.
机译:用于状态更新的无线通信变得越来越重要,特别是对于机器类型控制应用程序。现有工作主要集中在信息年龄(AOI)优化。在本文中,提出了一种状态感知预测无线接口设计,网络和实现,其目的是通过利用在线状态模型预测来最小化无线网络系统的状态恢复错误。有关预测状态更新的两个关键问题是解决的:实用性和有用性。进行了软件定义 - 无线电(SDR)测试的链路级实验,并进行测试结果表明,该设计可以显着降低无线传输的数量,同时保持低状态恢复误差。提出了一种状态感知多智能体增强学习网络解决方案(SMART),以基于各个状态动态地,自主地控制临时网络中设备的传输决策。在道路交通模拟器上进行多密集排中场景的系统级模拟。结果表明,与AOI优化的地位和通信延迟优化方案相比,该建议的方案可以大大提高连续车辆之间的最小安全距离的排序控制性能 - 这证明了我们所提出的地位更新的有用性在现实世界应用程序中的方案。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号