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相关概念视频

Design Example: Underdamped Parallel RLC Circuit01:17

Design Example: Underdamped Parallel RLC Circuit

333
Consider designing an oscillator circuit, a crucial component in various electronic devices and systems. The objective is to create an oscillator circuit with specific characteristics: a damped natural frequency of 4 kHz and a damping factor of 4 radians per second. To accomplish this, a parallel RLC circuit is employed, known for its ability to sustain oscillations at a resonant frequency. In this case, the damping factor is pivotal in achieving the desired performance.
Starting with a fixed...
333
Differential Relays01:20

Differential Relays

171
Differential relays are used to protect generators, buses, and transformers by comparing electrical quantities at different points. When a fault occurs, the difference in current between the two points triggers the relay to operate, opening the circuit breaker. Under normal conditions, the current entering (i1) and leaving (i2) a generator are equal. When a fault occurs, however, these currents become unequal, and the difference current flows in the relay operating coil, causing the relay to...
171
Line Protection with Impedance Relays01:27

Line Protection with Impedance Relays

99
Coordinating time-delay overcurrent relays in complex radial systems and directional overcurrent relays in multi-source transmission loops can be challenging. Impedance relays address these issues by responding to the voltage-to-current ratio, specifically measuring the apparent impedance of a line. These relays become more sensitive during faults as current increases and voltage decreases, thereby reducing the apparent impedance.
Under normal conditions, low load currents keep the measured...
99
Design Example01:23

Design Example

348
The innovation of touch-tone telephony revolutionized the telecommunications industry by replacing the traditional rotary dial with a dual-tone multi-frequency (DTMF) signaling system. This system uses a matrix-style keypad with buttons arranged in four rows and three columns, creating 12 distinct signals each assigned to a pair of frequencies. Each button press results in a simultaneous generation of two sinusoidal tones – one from a low-frequency group (697 to 941 Hz) and one from a...
348
Parallel RLC Circuits01:14

Parallel RLC Circuits

922
Street lamps equipped with RLC surge protectors are an excellent example of applying circuit analysis in practical scenarios. These surge protectors safeguard the lamp's components against sudden voltage spikes.
A simplified parallel RLC circuit model with a DC input source generating a step response is employed in this context. When the switch is turned on, Kirchhoff's current law is applied, leading to a second-order differential equation.
922
Pilot and Numeric Relaying01:21

Pilot and Numeric Relaying

102
Pilot relaying is a type of differential protection used in power systems. It compares electrical quantities at the terminals of equipment via a communication channel instead of direct relay interconnection. This method is essential for transmission lines where the terminals are far apart, typically up to 80 km for lines with 69 to 115 kV ratings. Four types of communication channels are used for pilot relaying:
102

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相关实验视频

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由部分活跃元件辅助的双RIS通信系统的性能.

Seung-Geun Yoo1,2, Min-A Kim1,2, Jin-Woo Kim1,2

  • 1Department of Information and Communication Engineering, Sejong University, Seoul 05006, Republic of Korea.

Sensors (Basel, Switzerland)
|July 29, 2023
PubMed
概括

一个新的部分主动可重新配置的智能表面 (RIS) 系统提高了无线通信的频谱效率. 这种方法克服了双RIS设置中的信号减弱问题,从而提高了能源效率.

关键词:
活跃的 RIS 是活跃的 RIS.这是一个双 RIS.可重新配置的智能表面 (RIS)单数值分解 (SVD) 是指单数值分解的方法.

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科学领域:

  • 无线通信系统无线通信系统
  • 的元材料和表面.

背景情况:

  • 可重新配置的智能表面 (RIS) 提高了光谱效率,但面临着具有障碍的性能限制.
  • 双RIS系统增强了覆盖范围,但在三个通道上遭受了显著的信号减弱.

研究的目的:

  • 提出和分析一个双 RIS 辅助的无线通信系统,利用一个部分活跃的 RIS.
  • 解决信号减弱问题,并降低先进RIS通信网络的功耗.

主要方法:

  • 一个包含放大器的活跃RIS应用于第二个RIS以减轻信号损失.
  • 单值分解 (SVD) 用于共变矩阵的总和,以优化RIS元件的激活.
  • 要素激活是通过分析总和共变矩阵的奇数值来确定的.

主要成果:

  • 拟议的部分活跃的双 RIS 系统与单个 RIS 系统相比,显示出优越的总和利率性能.
  • 虽然它实现的总比率略低于完全活跃的双RIS系统,但它提供了显著更好的能源效率.
  • 优化方法有效地识别了活性元素,以平衡性能和功耗.

结论:

  • 部分活跃的双RIS系统为克服信号衰减和提高无线通信性能提供了可行的解决方案.
  • 这项技术为未来的无线网络提供了光谱效率和能源消耗之间的有希望的权衡.
  • 建议的优化策略使得在复杂的RIS支持的通信环境中能够有效地分配资源.