Spectral resistor for analyzing system circuit stabilization

A spectrum analyzer and circuit technology, applied in the field of spectrum analyzer, can solve problems such as the separation of instantaneous and steady state, the difficulty of nonlinear systems, and the inability to establish the system response frequency band

Inactive Publication Date: 2007-08-01
徐炎堂 +3
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] The shortage of spectral analysis (Spectral or Harmonic Analysis) tools: If the system response frequency band (Bandwidth) cannot be established, the filter will not be able to eliminate unnecessary frequency components, that is, poor identification
[0008] 3) The transient (Transient) and the steady state (Steady State) solutions cannot be separated: the solution of the nonlinear system is not easy to separate the transient and the steady state, so that the frequency and amplitude (Frequency-Amplitude) or phase and amplitude (Phase-Amplitude) Amplitude), even bifurcation or jump (Jump) and other phenomena that cannot be resolved
[0619] Usually the interaction between measurement systems is not easy to obtain, and the calculation will be very complicated (1.80), and the simplified method is called GaussMixture or CovarianceIntersection to facilitate real-time consideration

Method used

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  • Spectral resistor for analyzing system circuit stabilization
  • Spectral resistor for analyzing system circuit stabilization
  • Spectral resistor for analyzing system circuit stabilization

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0764] Implementation 1. Constructing a Forcasting System

[0765] Relying on auxiliary statistics and estimation methods as the mathematical basis of the forecasting system (Forecasting System), it is generally common in various discussions and textbooks [45, Chapter1, 2, 3, 4], [2, Chapter3, 7, 8], [97Chapter8, 11, 13, 14], [123, Chapter5, 7], [113, Chapter1, 2, 3, 4, 5, 6, 7, 8], [52, Chapter6, 7], [19, Chapter1 , 2, 3, 4, 5, 6, 7], [11], [12] and papers [17], [83], [74], [59], [58], [112], but for There are only guiding principles or offline numerical simulations [88], [37], [40] for constructing prediction systems. At present, there is an urgent need to derive a fast-converging and real-time algorithm to provide signal monitoring and scheduling requirements.

[0766] 1.1 Prediction Interval

[0767] Let one be a Gaussian distribution (Gaussian) time series {x 1 , x 2 ,...,x n , x n-1} have unknown mean (Mean) μ and variation (Variance) σ 2 , while using the observe...

Embodiment 2

[0902] Implementation 2. Duality of System Resolution

[0903] With the successful analysis methods of mechanical systems such as nonlinear analysis of dynamic systems such as self-excited system (Self-excited system), system parameterization (System Parametrization), establishment of Poincaré section (PoincaréMap) to determine whether there are periodic solutions (PeriodicOrbits), Hopf bifurcation (Hopf Bifurcation) determines whether there is a fast recovery (FastRecovery) property and system stabilization (Liénard SystemStabilization), the analysis of Hamiltonian mechanical construction system duality such as the phase plane method (Phase-FlowMethod), including regular transformation (Contact or CanonicalTransformaton ) can know the basic properties of the dual space such as the behavior of Conjugation, Generating Function or Energy Dissipation, the basic problems of Electrodynamics and Quantum Mechanics Spectral analysis (Spectral or HarmonicAnalysis), resulting in the ana...

Embodiment 3

[1399] Implementation 3: Fields of application

[1400] With the development of dynamic adaptive damping, global filter and dynamic power factor adjustment, it can be further applied in various fields:

[1401] 3.1 Generic SnubberNetwork

[1402] In Fig. 8.10, the fundamental problem is the load effect, so as long as the infinite-stage resonance chamber 100A is incorporated in parallel with the power crystal 30 to replace the original fast diode 40 and the brake unit, as shown in Fig. 34, these six groups of infinite-stage resonance chambers 100A can be Eliminate the interference caused by loads connected to R, S, and T. We show the frequency converter 10C with improved performance in Fig. 34 as Fig. 35 for the convenience of later description. As shown in Fig. 36, in the dotted line box (BlockD) the infinite resonance chamber 100A is connected in parallel with the power crystal 30 to eliminate the inductance switching reaction. Electromotive force or regenerative power, at ...

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Abstract

The invention is a spectrum device used for analyzing the system circuit stabilization. The device is arranged on the system circuit, comprising at least one spectrum resistance / capacitance component. At least a part of the spectrum resistance / capacitance component consists of dielectric materials increasing or reducing the resistance / capacitance with the frequency increase. The benefit is that the resistance / capacitance value is not fixed, but changes with the energy spectrum distribution, thus the component is used for resisting a match dynamically, deriving to build an infinite-grade resonance chamber, solving the system duality problem, and beneficial to the non-linear dynamic system stabilization; and, basic problems consisting electricity, such as dynamic power factor adjustment, dynamic adaptive damping and adaptive all-pass filter and so on, can be solved fully; any complex non-linear system, such as power system, signal treatment, system reorganization, system integration and so on, can be stable, loyal, harmonious and balanced.

Description

technical field [0001] The present invention relates to a spectrum analyzer whose resistance value / capacitance is no longer a fixed value but changes with the energy spectrum distribution, especially it can be used for dynamic impedance matching and constructing an infinite resonance chamber. Unraveling the problem of system duality is beneficial to the stabilization of nonlinear dynamic systems, and can develop a spectrum analyzer for the stabilization of analytical system circuits, which is an electromagnetic wave absorbing material. Background technique [0002] Unbalanced and dynamic load conditions must be faced in the real world, especially in electric vehicles, which are clearly described in related literature such as [34, Chapter 4], [79] and e-book [80], in The high-power environment is like [32] and [108Chapter5, 6, 7]. Power generation parts such as fuel cells (FuelCell) [99], [79], [85], solar cells (Solar cells) [85, Chapter 2, 3, 10], symbiotic (Cogeneration),...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01C13/00H01G7/00H01L29/861H03H3/00H03H7/01H02J7/00H02M1/42H02M3/28H02M5/44H02M7/00H02M7/48B60L7/00H03L7/00
CPCH01G7/025H03H5/12Y02T10/7022H01G7/026H01C1/16H01L47/026H01C13/00Y02T10/70H10N80/107
Inventor 徐炎堂徐炎惟张铭火林村城
Owner 徐炎堂
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