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Challenges and trade-offs of a cloud hosted phasor measurement unit-based linear state estimator

机译:云托管相量测量单元的线性状态估计器的挑战和权衡

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Being one of the key derivatives of phasor measurement units (PMUs), a synchrophasor-only linear state estimator (LSE) presents a reliable, high quality, and truly dynamic picture of the power grid. However, with the increase in number of buses monitored by PMUs, computational burden will become a critical constraint for the state estimation solver. Although installing additional hardware can be a possible solution, such a solution will considerably raise the cost of capital investment, operation, and maintenance. This paper proposes cloud-computing as a cost-effective alternative to the computational burden problem. This paper also presents feasibility of the cloud based solution with regards to scalability of the system and latency incurred. Our solution is designed to address the critical operational parameters such as latency and variable network sizes. Additionally, the LSE application establishes robust communication procedures to process inputs arriving at high data rates from multiple PMUs. The paper concludes by highlighting future research directions for enhancing such cloud based solutions.
机译:作为相量测量单元的关键衍生物(的PMU),一个同步相仅线性状态估计(LSE)提出了一种可靠的,高品质,和电网的真正动态画面中的一个。然而,在通过监控的PMU的公交车数量的增加,计算负担将成为状态估计求解的关键制约因素。虽然安装额外的硬件可以是一个可行的解决方案,这种解决方案将大幅提高资金投入,运行和维护的成本。本文提出了云计算作为一种成本效益的替代计算负担问题。本文还介绍了与问候到系统的可扩展性和延迟所产生的基于云的解决方案的可行性。我们的解决方案旨在解决关键的操作参数,例如等待时间和可变的网络的大小。此外,该LSE应用程序建立到达从多个PMU的高数据速率的稳健的通信程序来处理输入。本文通过强调加强这种基于云的解决方案,未来的研究方向的结论。

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