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相关概念视频

Propagation of Uncertainty from Random Error00:59

Propagation of Uncertainty from Random Error

621
An experiment often consists of more than a single step. In this case, measurements at each step give rise to uncertainty. Because the measurements occur in successive steps, the uncertainty in one step necessarily contributes to that in the subsequent step. As we perform statistical analysis on these types of experiments, we must learn to account for the propagation of uncertainty from one step to the next. The propagation of uncertainty depends on the type of arithmetic operation performed on...
621
Propagation of Uncertainty from Systematic Error01:10

Propagation of Uncertainty from Systematic Error

453
The atomic mass of an element varies due to the relative ratio of its isotopes. A sample's relative proportion of oxygen isotopes influences its average atomic mass. For instance, if we were to measure the atomic mass of oxygen from a sample, the mass would be a weighted average of the isotopic masses of oxygen in that sample. Since a single sample is not likely to perfectly reflect the true atomic mass of oxygen for all the molecules of oxygen on Earth, the mass we obtain from this...
453
BIBO stability of continuous and discrete -time systems01:24

BIBO stability of continuous and discrete -time systems

321
System stability is a fundamental concept in signal processing, often assessed using convolution. For a system to be considered bounded-input bounded-output (BIBO) stable, any bounded input signal must produce a bounded output signal. A bounded input signal is one where the modulus does not exceed a certain constant at any point in time.
To determine the BIBO stability, the convolution integral is utilized when a bounded continuous-time input is applied to a Linear Time-Invariant (LTI) system....
321
Routh-Hurwitz Criterion II01:19

Routh-Hurwitz Criterion II

170
In the application of the Routh-Hurwitz criterion, two specific scenarios can arise that complicate stability analysis.
The first scenario occurs when a singular zero appears in the first column of the Routh table. This situation creates a division by zero issues. To resolve this, a small positive or negative number, denoted as epsilon (∈), is substituted for the zero. The stability analysis proceeds by assuming a sign for ∈. If ∈ is positive, any sign change in the first...
170
Routh-Hurwitz Criterion I01:15

Routh-Hurwitz Criterion I

134
Consider an electrical power grid, where stability is essential to prevent blackouts. The Routh-Hurwitz criterion is a valuable tool for assessing system stability under varying load conditions or faults. By analyzing the closed-loop transfer function, the Routh-Hurwitz criterion helps determine whether the system remains stable.
To apply the Routh-Hurwitz criterion, a Routh table is constructed. The table's rows are labeled with powers of the complex frequency variable s, starting from the...
134
Interference and Diffraction02:18

Interference and Diffraction

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Interference is a characteristic phenomenon exhibited by waves. When two electromagnetic waves interact with their peaks and troughs coinciding, a resulting wave with enhanced amplitude is produced. This is known as constructive interference. In this case, the two waves interacting are in phase with each other.
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相关实验视频

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A Photonic System for Generating Unconditional Polarization-Entangled Photons Based on Multiple Quantum Interference
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安全的ISAC MIMO系统:利用贝叶斯克拉梅尔-拉奥边界优化的干扰.

Nanchi Su1,2,3, Fan Liu2, Christos Masouros3

  • 1Guangdong Provincial Key Laboratory of Aerospace Communication and Networking Technology, Harbin Institute of Technology (Shenzhen), Shenzhen, 518055 China.

EURASIP journal on wireless communications and networking
|March 3, 2025
PubMed
概括

本研究介绍了一种安全的综合传感和通信 (ISAC) 设计,以提高物理层的安全性. 这种新的信号策略优化了传感性能,同时保护通信链接免受窃听者的侵害.

关键词:
贝叶斯的克拉梅尔·拉奥 (CramérRao) 与贝叶斯的克拉梅尔·拉奥 (Rao) 有关.构造性干扰是一种干扰.集成传感和通信系统.物理层安全是物理层的安全.连续的凸近似方法.

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科学领域:

  • 电气工程 电气工程
  • 信息理论 信息理论
  • 信号处理 信号处理

背景情况:

  • 综合传感和通信 (ISAC) 系统提供双重功能,但面临安全挑战.
  • 潜在的窃听者可以利用通信信号进行监视.
  • 在确保通信安全的同时优化传感性能对ISAC至关重要.

研究的目的:

  • 为安全的ISAC系统开发一个信号设计.
  • 优化目标传感性能,同时保持通信服务质量.
  • 加强ISAC系统对窃听的物理层安全.

主要方法:

  • 使用双功能MIMO基站进行同时通信和传感.
  • 尽量减少贝叶斯克拉梅尔-拉奥边界,以优化传感性能.
  • 利用构造性干扰为窃听者创造破坏性的信号区域.
  • 采用一个连续的凸近似方法来解决非凸优化问题.

主要成果:

  • 拟议的信号设计有效地提高了ISAC系统的物理层安全性.
  • 该方法通过将贝叶斯式克拉梅尔-拉奥边界最小化,成功优化传感性能.
  • 数字结果显示,与传统的区块级预编码技术相比,其性能优越.
  • 建设性干扰被战略性地用来降低窃听者解码概率.

结论:

  • 开发的安全ISAC信号设计有效地同时实现传感优化和通信安全.
  • 提出的连续凸近似方法为复杂的优化问题提供了有效的解决方案.
  • 这项工作显著提高了ISAC系统的物理层安全能力.