Time-based cache attacks analyzes the time difference in the execution of algorithm over a processor, and recovers the secret key.
基于时间的缓存攻击是指通过分析处理器中算法的不同执行时间来恢复密钥的攻击。
The algorithm USES multi-time steps to replace single time step in traditional non-uniform finite-difference time-domain (NU-FDTD) method to enhance the computing speed.
该方法通过应用多个时间步长替代传统非均匀时域有限差分(NU - FDTD)法的单一时间步长的算法来提高计算速度。
A pitch tracking algorithm was developed based on the normalized sum of the magnitude difference square function (SMDSF) for accurately estimating speech pitch at any sample rate in real time.
为了在任意采样率下都可以高效、准确地进行基音周期提取,提出基于归一化幅度差平方和函数的基音周期提取算法。
This paper presents a new dependence difference inequality test algorithm for two-dimensional arrays, and proves that the time complexity of the algorithm is polynomial.
给出了二维数组的体差不等式测试算法,并证明二维数组的体差不等式测试算法具有多项式时间复杂度。
An algorithm used trigonometry to passively locating a moving emitter with direction of arrival (DOA) and time difference of arrival (TDOA) of the emitter signal is given.
提出了一种利用平面解三角,并结合辐射源信号到达方向和脉冲到达时间差对运动辐射源进行单站无源定位的算法。
Aiming at the difference of wave rate in overhead lines and cables, fault point seeking algorithm based on time mid-point is proposed.
针对架空线路和电缆的波速度的差异,故障点的时间中点搜索算法的基础上提出。
The TOA algorithm is used to obtain the time measuring values required in the location procedure and thus obtain the difference of interval of each beacon achieved.
用TOA法获得定位中需要的时间测量值,从而得到各信标台的距离差;
How to detect moving target in low SNR condition for moving-baselines time difference measuring system is studied, using multi-pulses coherent integration algorithm.
主要研究了动基线时差测量系统采用多脉冲相参积累算法对低信噪比条件下运动目标的有效检测问题。
This paper focused on the improved algorithm of finite difference time domain (FDTD) method, which is named multi-resolution time domain (MRTD).
本论文的研究内容围绕时域有限差分方法(FDTD)的改进算法一时域多分辨分析(MRTD)算法展开。
The traditional MGD (maximum gradient difference) algorithm based on the order of the image pixels matrix has the shortcomings of the large operation measure and long-time running.
车牌定位是车牌自动识别系统中关键的第一步,传统的最大梯度差算法按图像像素矩阵的顺序进行扫描和运算,存在运算量大,耗时长的缺点。
At the same time, neighborhood search methods and the Calculation of Path difference designed to speed up algorithm speed.
同时设计了邻域搜索办法和路径差的计算办法,加快了算法的运行速度。
At the same time, neighborhood search methods and the Calculation of Path difference designed to speed up algorithm speed.
同时设计了邻域搜索办法和路径差的计算办法,加快了算法的运行速度。
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