uncalibrated
简明释义
英[ʌnˈkælɪbreɪtɪd]美[ʌnˈkælɪˌbreɪtɪd]
无标定的
英英释义
未调整或设置为标准测量值或标准的。 | |
Lacking calibration, which may result in inaccurate readings or performance. | 缺乏校准,可能导致读数或性能不准确。 |
单词用法
未校准的数据 | |
未校准的测量 | |
未校准的系统 | |
进行未校准的测试 | |
解释未校准的结果 | |
调整未校准的变量 |
同义词
未调整的 | 未调整的数据可能导致错误的结论。 | ||
校准错误的 | 仪器校准错误,影响了结果。 | ||
不对齐的 | The measurements were out of alignment with the expected values. | 测量值与预期值不对齐。 | |
不准确的 | 不准确的读数会影响整个实验。 |
反义词
已校准的 | The instrument is calibrated to ensure accurate measurements. | 该仪器已校准,以确保测量的准确性。 | |
已调整的 | 经过调整后,结果更加可靠。 |
例句
1.In this paper, a stereo matching method for image uncalibrated camera parameter is proposed, which is based on geometric affine invariant and photometric invariant.
本文提出了一种基于几何仿射不变量和亮度不变量的缺失摄像机标定参数图像的立体匹配方法。
2.The above uncalibrated image was taken on April 10 after Cassini swooped by each moon the previous week.
这张未校准的照片拍摄于4月10日,在卡西尼号前一周掠过两颗卫星之后。
3.They also are expressing skepticism about some of the highest reported readings from citizens, saying they could be erroneous as uncalibrated small dosimeters can be very inaccurate.
官员们也对民众报导的一些最高的检测读数表示怀疑。他们说,由于没有校准的小型剂量仪会很不准确,因此这些检测读数可能是错误的。
4.This paper presents a novel method for the 3-D reconstruction of coronary arterial trees from two uncalibrated monoplane angiographic images.
提出了一种基于两幅未标定单平面造影图像的冠状动脉树三维重建新方法。
5.The fixed camera and eye in hand structure of uncalibrated visual system is used in MOTOMAN-SV3XL. 3.
对MOTOMAN - SV3XL机器人采用眼固定和眼在手的无标定视觉系统,实现对二维平面固定目标的定位。
6.The second part of this thesis mainly research on solving the uncalibrated P5P problem when the camera intrinsic parameter is unknown and it is changeable in the camera motion.
在第二部分中,主要研究:摄像机内参数未知且在运动中可以变化的未标定P5P问题的求解。
7.The paper studies performance of the uncalibrated hand-eye coordination system, whose image Jacobian matrix is estimated by Neural Network way.
本文研究利用神经网络实现雅可比矩阵模型的机器人手眼协调无标定动态系统的跟踪性能。
8.We need to fix the uncalibrated equipment before proceeding with the analysis.
在进行分析之前,我们需要修复未校准的设备。
9.An uncalibrated scale can give you a false reading of your weight.
一个未校准的秤可能会给你一个错误的体重读数。
10.The measurements from the device were uncalibrated, leading to inaccurate results.
设备的测量结果是未校准的,导致了不准确的结果。
11.Before conducting the experiment, we realized that our instruments were uncalibrated.
在进行实验之前,我们意识到我们的仪器是未校准的。
12.The data collected from uncalibrated sensors may lead to faulty conclusions.
从未校准的传感器收集的数据可能会导致错误的结论。
作文
In the world of science and technology, precision is paramount. Whether it is in the field of engineering, medicine, or data analysis, the accuracy of measurements can significantly impact outcomes. However, there are instances when instruments or systems are left in an uncalibrated state, which can lead to erroneous results and unintended consequences. An uncalibrated device is one that has not been adjusted to provide accurate readings based on a known standard. This lack of calibration can stem from various factors such as neglect, oversight, or the inherent limitations of the measurement tools themselves.Consider a scenario in a medical laboratory where blood tests are conducted. If the machines used for analyzing samples are uncalibrated, the results may indicate false positives or negatives, leading to misdiagnosis. A patient could be wrongly informed that they are free of a serious condition, or conversely, that they have a disease they do not actually have. Such errors can have dire consequences for patient health and safety, highlighting the critical importance of regular calibration in healthcare settings.Similarly, in the realm of engineering, an uncalibrated instrument can result in structural failures. For instance, if measuring devices used in construction projects are not properly calibrated, the dimensions of materials may be inaccurately assessed. This could lead to buildings that are unsafe or do not adhere to regulatory standards, ultimately endangering lives. Engineers must ensure that their tools are calibrated regularly to maintain the integrity of their work and the safety of the public.The issue of uncalibrated instruments is not limited to physical devices. In the digital world, data analytics tools that are uncalibrated can produce misleading insights. Companies rely on data-driven decisions to guide their strategies, but if the algorithms or software are not calibrated correctly, the conclusions drawn from the data can be flawed. This could lead businesses to pursue unprofitable ventures or overlook lucrative opportunities, resulting in financial losses and wasted resources.To address the challenges posed by uncalibrated systems, organizations must implement rigorous calibration protocols. This includes regular checks and adjustments based on established standards, training personnel to recognize the signs of uncalibrated tools, and fostering a culture of accountability where accuracy is prioritized. By ensuring that all instruments and systems are properly calibrated, organizations can minimize risks and enhance their operational efficiency.In conclusion, the term uncalibrated serves as a reminder of the importance of precision across various fields. Whether in healthcare, engineering, or data analysis, the implications of using uncalibrated instruments can be severe. Therefore, it is essential to prioritize calibration to ensure accurate measurements, reliable results, and ultimately, the safety and well-being of individuals and society as a whole. The commitment to maintaining calibrated systems reflects a dedication to quality and excellence, which should be the goal of every professional in their respective fields.
在科学和技术的世界中,精确性至关重要。无论是在工程、医学还是数据分析领域,测量的准确性都可能显著影响结果。然而,有时仪器或系统处于未校准状态,这可能导致错误的结果和意想不到的后果。未校准的设备是指未根据已知标准进行调整以提供准确读数的设备。这种缺乏校准可能源于各种因素,如忽视、疏漏或测量工具本身的固有限制。考虑一个医疗实验室进行血液检测的场景。如果用于分析样本的机器处于未校准状态,结果可能会出现假阳性或假阴性,导致误诊。患者可能被错误告知他们没有严重疾病,或者相反,他们被告知他们实际上并没有的疾病。这类错误可能对患者的健康和安全产生严重后果,突显了在医疗环境中定期校准的重要性。同样,在工程领域,未校准的仪器可能导致结构故障。例如,如果建筑项目中使用的测量设备未正确校准,材料的尺寸可能会被不准确地评估。这可能导致建筑物不安全或不符合监管标准,最终危及生命。工程师必须确保他们的工具定期校准,以维护他们工作的完整性和公众的安全。< span>未校准的仪器问题不仅限于物理设备。在数字世界中,如果数据分析工具未校准,可能会产生误导性的见解。公司依赖数据驱动的决策来指导他们的战略,但如果算法或软件未正确校准,从数据得出的结论可能是错误的。这可能导致企业追求无利可图的项目或忽视有利可图的机会,导致财务损失和资源浪费。为了应对未校准系统带来的挑战,组织必须实施严格的校准协议。这包括根据既定标准进行定期检查和调整,培训人员识别未校准工具的迹象,以及培养一种责任文化,在这种文化中,准确性被优先考虑。通过确保所有仪器和系统得到适当校准,组织可以最大限度地降低风险,提高运营效率。总之,未校准一词提醒我们在各个领域精确性的重要性。在医疗、工程或数据分析中,使用未校准仪器的影响可能是严重的。因此,优先考虑校准以确保准确测量、可靠结果,最终确保个人和社会的安全与福祉至关重要。保持校准系统的承诺体现了对质量和卓越的奉献,这应该是每个专业人士在其各自领域中的目标。