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- Mean Shift 这个概念最早是由Fukunaga等人[1]于1975年在一篇关于概率密度梯度函数的估计中提出来的,其最初含义正如其名,就是偏移的均值向量,在这里Mean Shift是一个名词,它指代的是一个向量,但随着Mean Shift理论的发展,Mean Shift的含义也发生了变化,如果我们说Mean Shift算法,一般是指一个迭代的步骤,即先算出当前点的偏移均值,移动该点到其偏移均值,然后以此为新的起始点,继续移动,直到满足一定的条件结束.-Mean Shift the conc
757-6162-1-PB.pdf
- A Novel Iterative Multilateral Localization Algorithm for Wireless Sensor Networks
UWBPositioningTechnologyandItsApplication
- 对超宽带定位的基本原理进行了探讨,重点讨论了经典算法中的非迭代算法和迭代算法,对其优缺点进行了对比分析,并以实例说明了超宽带定位技术的优良性能。-UWB positioning on the basic principle is discussed, focusing on the classical algorithm of non-iterative algorithm and the iterative algorithm, its advantages and disadvantages
lowSNRFreES
- 本文利用软输入软输出信道译码器输出对数似然比随相位偏差变化的规律得到低信噪比MPSK信号的 相位偏差代价函数,并提出一种求解该代价函数的迭代相位搜索方法,以相对较小的运算量实现较高精度的相 位估计。仿真表明,该算法在低信噪比下具有稳定的性能,并且能够克服大多相位估计算法都存在的相位模糊 问题。-In this paper, the soft input soft output channel decoder output log-likelihood ratio with the v
blackmer_ICWN_11
- The decoding of Low Density Parity Check (LDPC) codes through the iterative process of belief propagation presents practical challenges for designers looking for real time performance in communication systems. Due to the geometric and finite pattern
A-Bayesian-Approach
- In this paper, we propose a Bayesian methodology for receiver function analysis, a key tool in determining the deep structure of the Earth’s crust.We exploit the assumption of sparsity for receiver functions to develop a Bayesian deconvolution
SC-FDE-with-OQPSK-Type-Schemes-ICCCN09-
- This paper considers frequency-domain receiver design for OQPSK type schemes. Since the IQ Interference can lead to significant performance degradation we propose an FDE Design where there is no i-q interference in the sampling instants for the predo
On-the-Design-of-Iterative-FDE-Receivers-for-OQAM
- This paper considers receiver designs for SC-FDE schemes (Single-Carrier with Frequency-Domain Equalization) employing M-ary OQAM signals (Offset Quadrature Amplitude Modulation). It is shown that the interference between the in-phase (I) and
RS-decoder-circuit-reconfigurability
- 介绍了基于线性反馈位移寄存器的编码原理及可重构改进方法。通过乘法和加法的迭代运算实现了伴随多项式的并行运算。采用改进欧几里德算法求解关键方程,运用钱氏搜索算法实现了错误位置的查找,并提出以上两种算法的可重构计算结构。-Introduced based on linear displacement of the code register feedback principle and reconfigurable improvement methods. Through the multiplic
11_557_662_ITERATIVE_DETECTION_AND_DECOD
- iterative detection and decoding for mimo ofdm systems, patent
MIMO_OFDM
- 本文介绍了一种MIMO- OFDM 系统迭代球形译码检测算法-This article describes a MIMO-OFDM systems detected by iterative sphere decoding algorithm
multidimensional-scaling
- 本文提出一种基于多维定标的无线传感器网络三维定位算法,结合RSS经验衰减模型和最短路径建立相异性矩阵,采用轻量级矩阵分解算法降低相异性矩阵分解的计算复杂性,并利用网络中存在的周期性消息将初始定位信息回送,在后台使用迭代优化算法对初始定位结果求精。仿真实验表明,在测距误差一定的情况下,该算法能够提高节点三维坐标的初始计算精度,经过集中式的优化求精后与MDS-MAP算法相比,能够明显地提高节点三维定位的精度-This paper presents a method based on multidim
Simple-Iterative-Chip-by-Chip-Multiuser-Detection
- Simple Iterative Chip-by-Chip Multiuser Detection
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- the basic encoding of the turbo code decoding and iterative algorithm and its implementation software program
Multiuser-orthogonal-space-division-multiplexing-
- Multiuser orthogonal space-division multiplexing with iterative water-filling algorithm
JGA-for-iterative-equalization
- 文章介绍了一种新颖的LTE均衡方法-JGA。这种方法权衡了性能与计算量-The article describes a novel LTE equalization method-JGA. This method to weigh the performance and computational
Iterative-MonteCarlo
- 研究移动无线传感网中的节点定位问题,分析影响蒙特卡罗定位精度的两个因素:观测值和前一时刻的位置样本集,提出一种迭代蒙特卡罗定位算-Research in mobile wireless sensor network node localization problems, analyze the impact of positioning accuracy of Monte Carlo two factors: the observed value and the location of the
New-Iterative-Decoding-Algorithms-for-Low-Density
- Low-Density Parity-Check (LDPC) codes have gained lots of popularity due to their capacity achieving/approaching property. This work studies the iterative decoding also known as message-passing algorithms applied to LDPC codes. Belief propagation
30--LMI-Approach-to-Robust-Iterative-Learning-Con
- This doc present a paper about iterative learning control
《Matrix Iterative Analysis》
- 《Matrix Iterative Analysis》