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Solution to the Problem of Stability For Centrifugal Engines with Response Time of the First and Second Order

机译:一阶和二阶响应时间解决离心机稳定性问题

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摘要

About 80 years ago, the scientific community has been given the task of shifting the loads without relying on external environment. About 40 years ago, Russian and American scientists - V.N. Tolchin, G.I. Shipov, A.A. Cherepanov, A.A. Grishaev, A. Tornson, R. Cook - found several solutions to this problem, but they all proved to be unstable. The proposed article proves that a stable solution to the problem exists. Such a solution has been found in the course of research on radio-physics with the theme "Quadrature demodulation of radio signals". Here, it was observed that even quadrature at zero intermediate frequency and modulation index less than π/2, has become unipolar. This circumstance has helped to lay down the stable-operation conditions. They were tested on a centrifugal engine sample MVR-1 type. Tests confirmed the accuracy of the found stable-operation conditions of the centrifugal engine.
机译:大约80年前,科学界已经承担了转移负载而不依赖外部环境的任务。大约40年前,俄罗斯和美国科学家-V.N.托尔钦(美国)希普夫(A.A.)切列帕诺夫(A.A.A.) Grishaev,A。Tornson,R。Cook-找到了解决此问题的几种方法,但都被证明是不稳定的。拟议的文章证明存在对该问题的稳定解决方案。在以“无线电信号的正交解调”为主题的无线电物理学研究过程中发现了这样的解决方案。在此观察到,即使在零中频处的正交和小于π/ 2的调制指数也已经变成单极。这种情况有助于奠定稳定的运行条件。它们在MVR-1型离心发动机样品上进行了测试。测试证实了所发现的离心发动机稳定运行条件的准确性。

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