automatic program control
简明释义
自动程序控制;
英英释义
A system that manages and regulates the execution of computer programs without human intervention. | 一种管理和调节计算机程序执行的系统,无需人工干预。 |
例句
1.The benefits of automatic program control 自动程序控制 include reduced error rates and increased productivity.
使用自动程序控制 automatic program control的好处包括降低错误率和提高生产力。
2.The manufacturing plant utilizes automatic program control 自动程序控制 for efficient production line management.
该制造工厂利用自动程序控制 automatic program control来实现高效的生产线管理。
3.The new software update includes features for automatic program control 自动程序控制 to enhance user experience.
新软件更新包括用于增强用户体验的自动程序控制 automatic program control功能。
4.With automatic program control 自动程序控制, the system can adjust settings without manual input.
通过自动程序控制 automatic program control,系统可以在没有人工输入的情况下调整设置。
5.Engineers are developing a new interface for automatic program control 自动程序控制 in robotic systems.
工程师正在为机器人系统开发新的自动程序控制 automatic program control接口。
作文
In the modern world, technology plays a pivotal role in enhancing efficiency and productivity across various sectors. One significant advancement that has emerged is automatic program control, which refers to the use of automated systems to manage and regulate processes without human intervention. This concept has revolutionized industries by streamlining operations and minimizing errors. 自动程序控制的中文释义是指使用自动化系统来管理和调节过程,而无需人工干预。 The application of automatic program control can be seen in manufacturing, where machines are programmed to perform tasks with precision. For instance, in an assembly line, robots equipped with automatic program control can assemble products at a speed and accuracy that far surpasses human capabilities. This not only increases production rates but also ensures consistent quality, reducing the likelihood of defects. Furthermore, 自动程序控制 在制造业中的应用可以显著降低生产成本,提升企业的竞争力。Another area where automatic program control has made a significant impact is in the field of computer programming. Software developers utilize this concept to create programs that can adapt to changing conditions or inputs without requiring manual updates. For example, in data analysis, algorithms can be designed to automatically adjust their parameters based on real-time data, allowing for more accurate predictions and insights. This adaptability is crucial in today’s fast-paced environment, where the ability to respond quickly to new information can determine success or failure. 自动程序控制在计算机编程领域的影响也体现在提高了软件的灵活性和响应速度。Moreover, automatic program control enhances safety in various applications. In sectors such as aerospace and automotive, automated systems are essential for monitoring and controlling critical functions. For example, autopilot systems in aircraft utilize automatic program control to maintain altitude, speed, and direction, significantly reducing the risk of human error. Similarly, modern vehicles are equipped with advanced driver-assistance systems that rely on 自动程序控制 to enhance safety features like lane-keeping assistance and adaptive cruise control.Despite the numerous benefits, the implementation of automatic program control comes with its challenges. One major concern is the potential loss of jobs due to automation. As machines take over tasks previously performed by humans, there is a growing fear of unemployment in certain sectors. However, it is essential to recognize that while some jobs may be displaced, new opportunities will arise in areas such as system maintenance, programming, and oversight. The workforce must adapt to these changes by acquiring new skills relevant to the evolving job market. 自动程序控制的实施虽然带来了挑战,但也为劳动力市场的转型提供了机遇。In conclusion, automatic program control represents a significant technological advancement that has transformed various industries. Its ability to enhance efficiency, improve safety, and reduce costs makes it an indispensable tool in modern operations. As we continue to embrace automation, it is crucial to address the challenges it presents while leveraging its benefits for a more productive and innovative future. 自动程序控制不仅提升了生产效率,也推动了技术创新,为未来的发展奠定了基础。