ROBOTICA机器人学

ROBOTICA(英文缩写 ROBOTICA),ISSN 0263-5747,eISSN 1469-8668,中文译名:机器人学 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
2.900
JCR 分区
Q3
CAS 分区
B4
近一年发文量
0
本站 PubMed 收录统计

发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。

ISSN: 0263-5747 · eISSN: 1469-8668 · 缩写: ROBOTICA ·中文: 机器人学

期刊介绍

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期刊简介

ROBOTICA 是一本国际性机器人学学术期刊,聚焦机器人理论与应用的多学科交叉研究。内容涵盖机械结构、控制算法、感知与智能系统、人机交互及工业与服务机器人等方向。读者群包括高校与科研院所的研究人员、工程技术人员以及关注机器人技术进展的研究生。期刊强调工程实践与理论创新的结合,为机器人领域提供稳定的学术交流平台。

研究方向

主要发表机器人学及相关智能系统领域的研究论文、综述和短篇技术报告。主题包括机器人运动学与动力学、路径规划、自主导航、机器视觉、抓取与操作、多机器人系统、仿生与软体机器人,以及医疗、制造、农业等应用场景中的机器人系统设计与集成。

期刊特色

研究取向偏重工程实现与实验验证,鼓励提出可复现的方法和系统方案。论文通常要求明确的技术贡献和实验对比,综述类文章需有系统梳理与批判性分析。适合从事机器人系统开发、控制与感知研究的高校教师、工程师和研究生阅读与投稿。

投稿难度

投稿难度中等偏上,对方法新颖性和实验完整性有一定要求。建议在投稿前明确研究问题与现有工作的差异,补充充分的对比实验和统计分析,并注意英文写作的清晰度。若工作偏应用集成,应突出系统验证与实际场景价值,而非仅追求理论复杂度。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20212.406Q4
20222.700Q3
20231.900Q3
20242.700Q3
20252.900Q3

ROBOTICA 最新收录文献

  1. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    1. Closed-Loop Control of a Tendon-Driven Active Needle for Tip Tracking at Desired Bending Angle for High-Dose-Rate Prostate Brachytherapy.

    作者:
    Samuel Lafreniere, Blayton Padasdao, Bardia Konh
    日期:
    2024-08-01

    Prostate cancer is the second most common malignancy in American men. High-dose-rate brachytherapy is a popular treatment technique in which a large, localized radiation dose is used to kill cancer. Utilization of curvilinear catheter implantation inside the prostate gland to provide access channels to host the radiation source has shown superiority in terms of improved dosimetric constraints compared to straight needles. To this aim, we have introduced an active needle to curve inside the prostate conformal to the patient's specific anatomical relationship for improved dose distribution to the prostate and reduced toxicity to the organs at risk (OARs). This work presents closed-loop control of our tendon-driven active needle in water medium and air using the position feedback of the tip obtained in real time from an ultrasound (US) or an electromagnetic (EM) tracking sensor, respectively. The active needle consists of a compliant flexure section to realize bending in two directions via actuation of two internal tendons. Tracking errors using US and EM tracker are estimated and compared. Results show that the bending angle of the active needle could be controlled using position feedback of the US or the EM tracking system with a bending angle error of less than 1.00 degree, when delay is disregarded. It is concluded that the actuation system and controller, presented in this work, are able to realize a desired bending angle at the active needle tip with reasonable accuracy paving the path for tip tracking and manipulation control evaluations in a prostate brachytherapy.

  2. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    2. Theoretical error analysis of spotlight-based instrument localization for retinal surgery.

    作者:
    Mingchuan Zhou, Felix Hennerkes, Jingsong Liu, Zhongliang Jiang, Thomas Wendler, M Ali Nasseri, Iulian Iordachita, Nassir Navab
    日期:
    2023-05-01

    Retinal surgery is widely considered to be a complicated and challenging task even for specialists. Image-guided robot-assisted intervention is among the novel and promising solutions that may enhance human capabilities therein. In this paper, we demonstrate the possibility of using spotlights for 5D guidance of a microsurgical instrument. The theoretical basis of the localization for the instrument based on the projection of a single spotlight is analyzed to deduce the position and orientation of the spotlight source. The usage of multiple spotlights is also proposed to check the possibility of further improvements for the performance boundaries. The proposed method is verified within a high-fidelity simulation environment using the 3D creation suite Blender. Experimental results show that the average positioning error is 0.029 mm using a single spotlight and 0.025 mm with three spotlights, respectively, while the rotational errors are 0.124 and 0.101, which shows the application to be promising in instrument localization for retinal surgery.

  3. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    3. Unified Robot and Inertial Sensor Self-Calibration.

    作者:
    James M Ferguson, Tayfun Efe Ertop, S Duke Herrell, Robert J Webster
    日期:
    2023-05-01

    Robots and inertial measurement units (IMUs) are typically calibrated independently. IMUs are placed in purpose-built, expensive automated test rigs. Robot poses are typically measured using highly accurate (and thus expensive) tracking systems. In this paper, we present a quick, easy, and inexpensive new approach to calibrate both simultaneously, simply by attaching the IMU anywhere on the robot's end effector and moving the robot continuously through space. Our approach provides a fast and inexpensive alternative to both robot and IMU calibration, without any external measurement systems. We accomplish this using continuous-time batch estimation, providing statistically optimal solutions. Under Gaussian assumptions, we show that this becomes a nonlinear least squares problem and analyze the structure of the associated Jacobian. Our methods are validated both numerically and experimentally and compared to standard individual robot and IMU calibration methods.

  4. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    4. Constrained Cyclic Coordinate Descent for Cryo-EM Images at Medium Resolutions: Beyond the Protein Loop Closure Problem.

    作者:
    Kamal Al Nasr, Jing He
    日期:
    2016-08-01

    The cyclic coordinate descent (CCD) method is a popular loop closure method in protein structure modeling. It is a robotics algorithm originally developed for inverse kinematic applications. We demonstrate an effective method of building the backbone of protein structure models using the principle of CCD and a guiding trace. For medium-resolution 3-dimensional (3D) images derived using cryo-electron microscopy (cryo-EM), it is possible to obtain guiding traces of secondary structures and their skeleton connections. Our new method, constrained cyclic coordinate descent (CCCD), builds α-helices, β-strands, and loops quickly and fairly accurately along predefined traces. We show that it is possible to build the entire backbone of a protein fairly accurately when the guiding traces are accurate. In a test of 10 proteins, the models constructed using CCCD show an average of 3.91Å of backbone root mean square deviation (RMSD). When the CCCD method is incorporated in a simulated annealing framework to sample possible shift, translation, and rotation freedom, the models built with the true topology were ranked high on the list, with an average backbone RMSD100 of 3.76Å. CCCD is an effective method for modeling atomic structures after secondary structure traces and skeletons are extracted from 3D cryo-EM images.

  5. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    5. Testing models of cerebellar ataxia via dynamic simulation.

    作者:
    David Grow, Amy J Bastian, Allison M Okamura
    日期:
    2014-12-01

    Patients with damage to the cerebellum make reaching movements that are uncoordinated or "ataxic." One prevailing hypothesis is that the cerebellum functions as an internal model for planning movements, and that damage to the cerebellum results in movements that do not properly account for arm dynamics. An exoskeleton robot was used to record multi-joint reaching movements. Subsequently, joint-torque trajectories were calculated and a gradient descent algorithm found optimal, patient-specific perturbations to actual limb dynamics predicted to reduce directional reaching errors by an average of 41%, elucidating a promising form of robotic intervention and adding support to the internal model hypothesis.

  6. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    6. Kinematic state estimation and motion planning for stochastic nonholonomic systems using the exponential map.

    作者:
    Wooram Park, Yan Liu, Yu Zhou, Matthew Moses, Gregory S Chirikjian
    日期:
    2008-04-11

    A nonholonomic system subjected to external noise from the environment, or internal noise in its own actuators, will evolve in a stochastic manner described by an ensemble of trajectories. This ensemble of trajectories is equivalent to the solution of a Fokker-Planck equation that typically evolves on a Lie group. If the most likely state of such a system is to be estimated, and plans for subsequent motions from the current state are to be made so as to move the system to a desired state with high probability, then modeling how the probability density of the system evolves is critical. Methods for solving Fokker-Planck equations that evolve on Lie groups then become important. Such equations can be solved using the operational properties of group Fourier transforms in which irreducible unitary representation (IUR) matrices play a critical role. Therefore, we develop a simple approach for the numerical approximation of all the IUR matrices for two of the groups of most interest in robotics: the rotation group in three-dimensional space, SO(3), and the Euclidean motion group of the plane, SE(2). This approach uses the exponential mapping from the Lie algebras of these groups, and takes advantage of the sparse nature of the Lie algebra representation matrices. Other techniques for density estimation on groups are also explored. The computed densities are applied in the context of probabilistic path planning for kinematic cart in the plane and flexible needle steering in three-dimensional space. In these examples the injection of artificial noise into the computational models (rather than noise in the actual physical systems) serves as a tool to search the configuration spaces and plan paths. Finally, we illustrate how density estimation problems arise in the characterization of physical noise in orientational sensors such as gyroscopes.

  7. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    7. A Lie-Theoretic Perspective on O(n) Mass Matrix Inversion for Serial Manipulators and Polypeptide Chains.

    作者:
    Kiju Lee, Yunfeng Wang, Gregory S Chirikjian
    日期:
    2007-11-01

    Over the past several decades a number of O(n) methods for forward and inverse dynamics computations have been developed in the multi-body dynamics and robotics literature. A method was developed in 1974 by Fixman for O(n) computation of the mass-matrix determinant for a serial polymer chain consisting of point masses. In other recent papers, we extended this method in order to compute the inverse of the mass matrix for serial chains consisting of point masses. In the present paper, we extend these ideas further and address the case of serial chains composed of rigid-bodies. This requires the use of relatively deep mathematics associated with the rotation group, SO(3), and the special Euclidean group, SE(3), and specifically, it requires that one differentiates functions of Lie-group-valued argument.

  8. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    8. The principle of superposition in human prehension.

    作者:
    Vladimir M Zatsiorsky, Mark L Latash, Fan Gao, Jae Kun Shim
    日期:
    2004-03-01

    The experimental evidence supports the validity of the principle of superposition for multi-finger prehension in humans. Forces and moments of individual digits are defined by two independent commands: "Grasp the object stronger/weaker to prevent slipping" and "Maintain the rotational equilibrium of the object". The effects of the two commands are summed up.

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指标接近的期刊