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Uncertainty Analysis of Middleware Services for Streaming Smart Grid Applications

机译:流式智能电网应用中间件服务的不确定性分析

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Accuracy and responsiveness are two key properties of emerging cyber-physical energy systems that need to incorporate high throughput sensor streams for distributed monitoring and control applications. The electric power grid, which is a prominent example of such systems, is being integrated with high throughput sensors in order to support stable system dynamics that are provisioned to be utilized in real-time supervisory control applications. The end-to-end performance and overall scalability of cyber-physical energy applications depend on robust middleware services that are able to operate with variable resources and multi-source sensor data. This leads to uncertain behavior under highly variable sensor and middleware topologies. We present a parametric approach to modeling the middleware service architecture for distributed power applications and account for temporal satisfiability of system properties under network resource and data volume uncertainty. We present a heterogeneous modeling framework that combines Monte Carlo simulations of uncertainty parameters within an executable discrete-event middleware service model. By employing Monte Carlo simulations followed by regression analysis, we quantify system parameters that significantly affect behavior of middleware services and the achievability of temporal requirements.
机译:准确性和响应能力是新兴的网络物理能源系统的两个关键属性,需要将高吞吐量的传感器流纳入分布式监视和控制应用中。电网是此类系统的一个突出示例,正在与高通量传感器集成在一起,以支持稳定的系统动态特性,这些动态特性被提供用于实时监控应用。网络物理能源应用程序的端到端性能和总体可扩展性取决于能够使用可变资源和多源传感器数据运行的强大中间件服务。这导致在高度可变的传感器和中间件拓扑下的不确定行为。我们提出一种参数化方法来为分布式电源应用程序建模中间件服务体系结构,并考虑网络资源和数据量不确定性下系统属性的时间可满足性。我们提出了一个异构建模框架,该框架结合了可执行离散事件中间件服务模型中不确定性参数的蒙特卡罗模拟。通过采用蒙特卡洛模拟,然后进行回归分析,我们可以量化显着影响中间件服务行为和时间需求可实现性的系统参数。

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