库拉莫托模型中的延长性歇斯底里与惯性和更高阶相互作用
Narayan G Sabhahit1, Akanksha S Khurd2, Sarika Jalan3
1Department of Physical Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur 741246, India.
Physical review. E
|March 16, 2024
概括
库拉莫托模型中的惯性和高阶相互作用在简单复合体上延长了歇斯底里. 惯性会影响前进的转换,而三元交互会影响复杂系统的后退转换.
科学领域:
- 复杂系统分析 复杂系统分析
- 非线性动力学是一种非线性动力学.
- 网络科学 网络科学
背景情况:
- 库拉莫托模型对于理解合振荡器系统中的同步至关重要.
- 惯性和高阶相互作用越来越被认为是现实世界复杂系统中的重要组成部分.
- 对惯性和高阶相互作用的相互作用的分析洞察力有限.
研究的目的:
- 为了研究库拉莫托模型与惯性对简化的复合体.
- 开发一个分析框架,以了解惯性和高阶相互作用的联合效应.
- 揭示对同步动态和相位转换的影响.
主要方法:
- 在平均场设置中使用自相一致的方程开发分析框架.
- 在简化复杂网络上结合惯性的库拉莫托模型的研究.
- 分析稳定状态行为和同步配置文件.
主要成果:
- 在同步配置文件中观察到延长的歇斯底里循环.
- 惯性主要控制着同步的向前过渡点.
- 三相互作用的强度主要影响到向后过渡点.
结论:
- 该研究为具有惯性和高阶相互作用的系统提供了一个新的分析范式.
- 这些发现加深了对电网等复杂系统中的同步动态的理解.
- 惯性和三元相互作用对过渡点的孤立影响提供了新的建模见解.
相关概念视频
Damped Oscillations
5.7K
In the real world, oscillations seldom follow true simple harmonic motion. A system that continues its motion indefinitely without losing its amplitude is termed undamped. However, friction of some sort usually dampens the motion, so it fades away or needs more force to continue. For example, a guitar string stops oscillating a few seconds after being plucked. Similarly, one must continually push a swing to keep a child swinging on a playground.
Although friction and other non-conservative...
Although friction and other non-conservative...
5.7K
Types of Damping
6.4K
If the amount of damping in a system is gradually increased, the period and frequency start to become affected because damping opposes, and hence slows, the back and forth motion (the net force is smaller in both directions). If there is a very large amount of damping, the system does not even oscillate; instead, it slowly moves toward equilibrium. In brief, an overdamped system moves slowly towards equilibrium, whereas an underdamped system moves quickly to equilibrium but will oscillate about...
6.4K
Stability of Equilibrium Configuration
448
Understanding the stability of equilibrium configurations is a fundamental part of mechanical engineering. In any system, there are three distinct types of equilibrium: stable, neutral, and unstable.
A stable equilibrium occurs when a system tends to return to its original position when given a small displacement, and the potential energy is at its minimum. An example of a stable equilibrium is when a cantilever beam is fixed at one end and a weight is attached to the other end. If the weight...
A stable equilibrium occurs when a system tends to return to its original position when given a small displacement, and the potential energy is at its minimum. An example of a stable equilibrium is when a cantilever beam is fixed at one end and a weight is attached to the other end. If the weight...
448
Second Order systems II
109
In an underdamped second-order system, where the damping ratio ζ is between 0 and 1, a unit-step input results in a transfer function that, when transformed using the inverse Laplace method, reveals the output response. The output exhibits a damped sinusoidal oscillation, and the difference between the input and output is termed the error signal. This error signal also demonstrates damped oscillatory behavior. Eventually, as the system reaches a steady state, the error diminishes to zero.
109
Elimination Kinetics: First-Order and Zero-Order
718
Eliminating drugs from the body is a vital process that occurs through excretion or metabolism. Understanding the kinetics of drug elimination is crucial for drug development, dosage determination, and optimizing patient outcomes.
Drug clearance depends on the rate of drug elimination and its plasma concentration. Another important parameter is a drug's half-life, which is the time required for its concentration to decrease by half. In most cases, drug clearance follows first-order...
Drug clearance depends on the rate of drug elimination and its plasma concentration. Another important parameter is a drug's half-life, which is the time required for its concentration to decrease by half. In most cases, drug clearance follows first-order...
718
Parameters Affecting Nonlinear Elimination: Zero-Order Input, First-Order Absorption and Two-Compartment Model
66
Drugs administered through various routes can lead to nonlinear elimination, resulting in complex pharmacokinetic behaviors crucial to understanding efficacious drug dosing.
When a drug is administered through a constant intravenous infusion and eliminated via nonlinear pharmacokinetics, it follows zero-order input. For example, oral drugs undergo first-order absorption upon administration and are eliminated through nonlinear pharmacokinetics.
In the case of subcutaneously administered drugs,...
When a drug is administered through a constant intravenous infusion and eliminated via nonlinear pharmacokinetics, it follows zero-order input. For example, oral drugs undergo first-order absorption upon administration and are eliminated through nonlinear pharmacokinetics.
In the case of subcutaneously administered drugs,...
66


