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Advancing modeling, simulation and management design tools to improve future naval power systems generation and load management capabilities

机译:推进建模,仿真和管理设计工具,提高未来海军动力系统生成和负载管理能力

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The power systems for the next generation naval ships are expected to provide new levels of operational performance while maintaining the highest levels of efficiency. These demands are driven by emerging requirements and capabilities of power system components, such as new and smart loads, distributed and efficient generation, power conditioning, energy storage and propulsion elements, and the ever important need to complete mission objectives reliably, while expending as little resources as possible. This paper presents a set of modeling, simulation and management design tools to facilitate the design and operation of next generation shipboard power systems. A switched, differential-algebraic description of the system is used to capture the wide ranging time scales that are necessary to understand the operational performance of new power system architectures. These models provide insight into the inherent dynamic constraints of the power system which has both discrete and nonlinear behavior. This formulation provides a framework for the synthesis of optimal and supervisory control algorithms. A novel methodology is used to simulate the switched, nonlinear behavior of the system that enables resourceful computation of system variables and outputs. This simulation capability allows the rapid prototyping of associated control algorithms. This paper also presents the software architecture, user interface and data-logging tools to provide a robust test harness for validation and verification of the developed algorithms. The transition to industrial strength real-time code is also discussed. These advances are demonstrated on a benchmark Navy shipboard power system that includes a hybrid electric drive (HED).
机译:预计下一代海军船舶的电力系统将提供新的操作性能水平,同时保持最高效率。这些需求是通过新兴的需求和电力系统组件的能力,例如新的和智能负载,分布式和高效的发电,功率调节,能量存储和推进元件,以及以较少的方式完成使命目标的重要需求,同时支出尽可能资源。本文介绍了一套建模,仿真和管理设计工具,可促进下一代船舶电力系统的设计和运行。系统的交换机的差异代数描述用于捕获了解新电源系统架构的操作性能所必需的宽范围的时间尺度。这些模型提供了深入了解具有离散和非线性行为的电力系统的固有动态约束。该配方提供了合成最佳和监控算法的框架。一种新颖的方法用于模拟系统的交换,非线性行为,该系统可以实现系统变量和输出的高度计算。该模拟能力允许相关控制算法的快速原型设计。本文还介绍了软件架构,用户界面和数据记录工具,以提供强大的测试线束,用于验证和验证开发算法。还讨论了对工业强度实时代码的过渡。这些进步在基准海军船上电力系统上证明,包括混合动力电动驱动器(铰接)。

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