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Dynamic Power Management for Portable Hybrid Power-Supply Systems Utilizing Approximate Dynamic Programming

机译:利用近似动态编程的便携式混合电源系统的动态电源管理

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Recently, the optimization of power flows in portable hybrid power-supply systems (HPSSs) has become an important issue with the advent of a variety of mobile systems and hybrid energy technologies. In this paper, a control strategy is considered for dynamically managing power flows in portable HPSSs employing batteries and supercapacitors. Our dynamic power management strategy utilizes the concept of approximate dynamic programming (ADP). ADP methods are important tools in the fields of stochastic control and machine learning, and the utilization of these tools for practical engineering problems is now an active and promising research field. We propose an ADP-based procedure based on optimization under constraints including the iterated Bellman inequalities, which can be solved by convex optimization carried out offline, to find the optimal power management rules for portable HPSSs. The effectiveness of the proposed procedure is tested through dynamic simulations for smartphone workload scenarios, and simulation results show that the proposed strategy can successfully cope with uncertain workload demands.
机译:近年来,随着各种移动系统和混合能源技术的出现,便携式混合电源系统(HPSS)中的潮流优化成为一个重要问题。在本文中,考虑了一种控制策略,用于动态管理采用电池和超级电容器的便携式HPSS中的功率流。我们的动态电源管理策略利用了近似动态编程(ADP)的概念。 ADP方法是随机控制和机器学习领域中的重要工具,而将这些工具用于实际工程问题已成为活跃而有前途的研究领域。我们提出了一种基于ADP的程序,该程序基于优化条件,并包含了反复的Bellman不等式等约束条件,可以通过离线进行凸优化来解决该问题,以找到便携式HPSS的最佳电源管理规则。通过针对智能手机工作负载场景的动态仿真测试了该程序的有效性,仿真结果表明,该策略可以成功应对不确定的工作负载需求。

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