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首页> 外文期刊>SIAM Journal on Control and Optimization >LINEAR QUANTUM SYSTEM TRANSFER FUNCTION REALIZATION USING STATIC NETWORKS FOR INPUT/OUTPUT PROCESSING AND FEEDBACK
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LINEAR QUANTUM SYSTEM TRANSFER FUNCTION REALIZATION USING STATIC NETWORKS FOR INPUT/OUTPUT PROCESSING AND FEEDBACK

机译:线性量子系统传递函数实现使用静态网络进行输入/输出处理和反馈

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摘要

The realization of the transfer functions of linear quantum stochastic systems (LQSSs) is of fundamental importance for the practical applications of such systems, especially as coherent controllers for other quantum systems. So far, most works that have addressed this problem have used cascade realizations. In this paper, a new method is proposed, where the transfer function of an LQSS is realized by a series connection of two linear static networks, and a reduced LQSS. The introduction of pre- and postprocessing static networks leaves an intermediate reduced LQSS with a simple input/output structure, which is realized by a simple feedback network of single-mode LQSSs. The key mathematical tool that allows for the construction of this realization is an SVD-like decomposition for doubled-up matrices in Krein spaces. Illustrative examples are provided for the theory developed.
机译:线性量子随机系统(LQSSS)的传递函数的实现对这种系统的实际应用具有基本重要性,特别是作为其他量子系统的相干控制器。 到目前为止,已经解决这个问题的大多数作品都使用级联的实现。 在本文中,提出了一种新方法,其中通过两个线性静态网络的串联连接来实现LQS的传递函数,以及降低的LQS。 预期和后处理静态网络的引入留下了具有简单输入/输出结构的中间的LQS,这是由单模LQSS的简单反馈网络实现的。 允许构建该实现的关键数学工具是Kerin空间中双倍矩阵的SVD样分解。 提供了用于该理论的说明性示例。

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