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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >Toward Effective Service Scheduling for Human Drivers in Vehicular Cyber-Physical Systems
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Toward Effective Service Scheduling for Human Drivers in Vehicular Cyber-Physical Systems

机译:面向车载网络物理系统中驾驶员的有效服务调度

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摘要

It is essential to consider drivers' perceptions and reactions when building Vehicular Cyber-Physical Systems (VCPS) since the effectiveness and efficiency of VCPS will largely depend on how drivers could benefit from such a system. This paper considers, for the first time, novel service scheduling problems from a Human Factors (HF) standpoint by taking into consideration the following fact: a driver may not be able to receive more than one service in a short period of time, even if multiple services can be transmitted to the driver from the conventional communications and networking standpoint. We study a family of the HF-aware Service Scheduling (HFSS) Problems, where the goal is to deliver up to n services, each having a time-dependent (and possibly decreasing) utility to a subset of intended drivers so as to minimize the system-wide total utility loss due to unsuccessful delivery of some services. We show that such problems are different from all existing problems. We formulate the basic HFSS problem (BHFSSP) using Integer Linear Programming (ILP) and prove its NP-Completeness. We then propose efficient heuristics for BHFSSP and its more general versions, and present numerical results from large-scale test cases. We also address several practical issues related to wireless transmission failures, distributed implementation in the multisender scenario, and other HF related considerations.
机译:在构建车载网络物理系统(VCPS)时,必须考虑驾驶员的看法和反应,因为VCPS的有效性和效率将在很大程度上取决于驾驶员如何从此类系统中受益。本文从人为因素(HF)的角度首次考虑了以下新颖的服务调度问题:驾驶员在短时间内可能无法接收多个服务,即使从传统的通信和联网角度来看,可以将多种服务传输到驱动程序。我们研究了一系列HF感知服务调度(HFSS)问题,其目标是提供多达n个服务,每个服务对一部分预期驱动程序具有与时间相关(且可能会减少)的效用,从而最大程度地减少了由于某些服务交付失败,导致系统范围内的公用事业总损失。我们表明,此类问题与所有现有问题均不同。我们使用整数线性规划(ILP)公式化了基本的HFSS问题(BHFSSP),并证明了其NP完全性。然后,我们为BHFSSP及其更通用的版本提出有效的启发式方法,并提出大规模测试案例的数值结果。我们还将解决与无线传输故障,多发送方方案中的分布式实现以及其他与HF相关的注意事项相关的一些实际问题。

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