创新解决方案用于损耗非线性输电线路模型,使用修改后的扩展映射方法,使用分数效应
Hisham H Hussein1, Wassim Alexan2, Shaimaa A Kandil3
1School of Mathematical and Computational Sciences, University of Prince Edward Island (UPEI), Cairo Campus, The New Administrative Capital, Egypt. hisham.hussein@uofcanada.edu.eg.
Scientific reports
|March 9, 2026
概括
这项研究使用了修改扩展映射技术,为分数损耗非线性电力输电线路模型找到新的单元解决方案. 这项研究揭示了各种波形结构,在物理学和工程中具有潜在的应用.
科学领域:
- 非线性动力学是一种非线性动力学.
- 数学物理 数学物理
- 电气工程 电气工程
背景情况:
- 非线性电力传输线 (NLETL) 对于信号传播至关重要.
- 分数微积分为建模复杂系统提供了更普遍的方法.
- 索利顿的解决方案代表了非线性系统中稳定的局部波.
研究的目的:
- 为了研究一个符合分数损耗非线性电力输送线 (Loss-NLETL) 模型的精确分析单子解决方案.
- 探索分数顺序对单体动物行为的影响.
- 为了证明修改扩展映射 (Mod-EM) 技术的有效性.
主要方法:
- 使用了修改后扩展映射 (Mod-EM) 技术.
- 符合的分数导数被纳入了NLETL模型.
- 准确的分析解决方案是通过2D,3D和密度图来导出和可视化.
主要成果:
- 获得了广泛的精确分析解决方案,包括新的复合,高压,三角,和雅科比圆波解决方案.
- 这项研究确定了各种各样的单体结构,如暗单体和扭曲-理性过度组件.
- 参数分析揭示了分数顺序对波形演变的影响.
结论:
- 在复杂的分数非线性系统中,Mod-EM技术有效生成多种单离子溶液.
- 获得的解决方案为Loss-NLETL中的波传播提供了新的见解.
- 结果对应用物理和电气工程的先进应用有潜在的影响.
相关概念视频
Lossless Lines
603
In electrical engineering, a lossless transmission line is characterized by a purely imaginary propagation constant and a resistive characteristic impedance. The ABCD parameters, which describe the relationship between the input and output voltages and currents, indicate an equivalent π circuit with an imaginary series impedance and a shunt admittance. This results in a transmission line that, when the product of the phase constant (beta) and the length of the line is less than pi, exhibits...
603
Traveling Waves: Lossless Lines
506
The provided content explores the behavior of traveling waves on single-phase lossless transmission lines. It begins with a single-phase two-wire lossless transmission line of length Δx, characterized by a loop inductance LH/m and a line-to-line capacitance C F/m. These parameters result in a series inductance LΔx and a shunt capacitance CΔx.
506
Boundary Conditions: Lossless Lines
449
Consider a single-phase, two-wire, lossless transmission line terminated by an impedance at the receiving end and a source with Thevenin voltage and impedance at the sending end. The line, with length, has a surge impedance and wave velocity determined by the line's inductance and capacitance.
At the receiving end, the boundary condition states that the voltage equals the product of the receiving-end impedance and current. This relationship is expressed as a function of the incident and...
At the receiving end, the boundary condition states that the voltage equals the product of the receiving-end impedance and current. This relationship is expressed as a function of the incident and...
449
Lossy Lines and Overvoltages
379
Transmission-line series resistance and shunt conductance cause three primary effects: attenuation, distortion, and power losses.
Attenuation
When constant series resistance and shunt conductance are present, voltage and current equations are modified. The propagation constant indicates that voltage and current waves consist of both forward and backward traveling components. These waves attenuate as they propagate, with the attenuation factor related to the resistance and conductance. In a...
Attenuation
When constant series resistance and shunt conductance are present, voltage and current equations are modified. The propagation constant indicates that voltage and current waves consist of both forward and backward traveling components. These waves attenuate as they propagate, with the attenuation factor related to the resistance and conductance. In a...
379
Transmission-Line Differential Equations
1.0K
Transmission lines are essential components of electrical power systems. They are characterized by the distributed nature of resistance (R), inductance (L), and capacitance (C) per unit length. To analyze these lines, differential equations are employed to model the variations in voltage and current along the line.
Line Section Model
A circuit representing a line section of length Δx helps in understanding the transmission line parameters. The voltage V(x) and current i(x) are measured from...
Line Section Model
A circuit representing a line section of length Δx helps in understanding the transmission line parameters. The voltage V(x) and current i(x) are measured from...
1.0K
Transmission Line Design Considerations
684
Aluminum has become the material of choice for overhead transmission lines, surpassing copper due to its abundance and cost-effectiveness. The most prevalent type is the aluminum conductor, steel-reinforced (ACSR), which combines aluminum strands around a steel core. Other variants include all-aluminum conductors (AAC), all-aluminum alloy conductors (AAAC), aluminum conductor alloy-reinforced (ACAR), and aluminum-clad steel conductors. Advanced designs, such as aluminum conductors with steel...
684


