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Probabilistic extension of flexible hybrid state estimation for cyber-physical systems

机译:网络物理系统灵活混合态估计的概率扩展

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This paper proposes a probabilistic extension to flexible hybrid state estimation (FHSE) for cyber-physical systems (CPSs). The main goal of the algorithm is improvement of the system state tracking when realistic communications are taken into account, by optimizing information and communication technology (ICT) usage. These advancements result in: 1) coping with ICT outages and inevitable irregularities (delay, packet drop and bad measurements); 2) determining the optimized state estimation execution frequencies based on expected measurement refresh times. Additionally, information about CPSs is gathered from both the phasor measurement units (PMU) and SCADA-based measurements. This measurement transfer introduces two network observability types, which split the system into observable (White) and unobservable (Grey) areas, based on 1) deployed measuring instruments (MIs) and 2) received measurements. A two-step bad data detection (BDD) method is introduced for ICT irregularities and outages. The proposed algorithm benefits are shown on two IEEE test cases with time-varying load/generation: 14-bus and 300-bus.
机译:本文提出了对网络物理系统(CPSS)的灵活混合状态估计(FHSE)的概率扩展。算法的主要目标是通过优化信息和通信技术(ICT)使用来考虑现实通信时的系统状态跟踪的改进。这些进步导致:1)应对ICT中断和不可避免的违规行为(延迟,数据包下降和差别); 2)基于预期测量刷新时间确定优化状态估计执行频率。此外,有关CPS的信息由Phasor测量单位(PMU)和基于SCADA的测量收集。该测量传输引入了两个网络可观察性类型,其将系统分成可观察(白色)和不可观察的(灰色)区域,基于1)部署的测量仪器(MIS)和2)接收测量。为ICT不规则性和中断引入了两步不良数据检测(BDD)方法。所提出的算法优势在两个IEEE测试用例上显示,具有时变负载/发电:14公交车和300辆公交车。

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