Automatic control of tidal power plant

N. Kumar, S. Majumdar, G. M. Babu
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引用次数: 21

Abstract

Renewable energy can be used to decrease global dependence on natural resources, and tidal power can be the primary form of renewable power utilized. Built upon steam turbine knowledge, tidal turbines draw on innovative technology and design to operate on both the inflow and outflow of water through them. Tidal power utilizes twice the daily variation in sea level caused primarily by the gravitational effect of the Moon and, to a lesser extent by the Sun on the world's oceans. The Earth's rotation is also a factor in the production of tides. Control & Operation system for tidal power plant should be simple, reliable, cheap and with minimum interference of operating personal. Control system should be such that remote operation can be performed easily. The main functions of the controller for automation is to execute starting and the shut down sequences under normal and emergency conditions. In this paper an attempt has been made to elaborate the use of Programmable Logic Controller (PLC) for control and automation of tidal power plant, its advantages and cost effectiveness. Programmable logic controllers (PLC) can be used for control & automation of tidal power plant. The main reason for this is cost effectiveness. Various functions and controls can be achieved by programming the PLC. They can be used for full plant automation including governing of auto-operation includes speed control, load control, excitation control, and level control automatic start/stop sequencing, barrage gate control, start/stop of auxiliary systems, and protection requirement etc. Functions other than control like continuous monitoring, data recording, instrumentation and protections can also be performed. For remote operation, communication with PLC can be performed. For continuous monitoring purpose, a personal computer can be interfaced with PLC and continuous data can be recorded regularly [16].
潮汐电站的自动控制
可再生能源可以用来减少全球对自然资源的依赖,潮汐能可以成为可再生能源的主要利用形式。建立在汽轮机的知识,潮汐涡轮机借鉴创新的技术和设计,既流入和流出的水通过他们操作。潮汐能利用的是海平面每日变化的两倍,海平面的变化主要是由月球的引力作用引起的,太阳对世界海洋的影响较小。地球自转也是潮汐产生的一个因素。潮汐能电站的控制与运行系统应简单、可靠、廉价,对操作人员的干扰最小。控制系统应能方便地进行远程操作。自动化控制器的主要功能是在正常和紧急情况下执行启动和关闭程序。本文试图阐述可编程控制器(PLC)在潮汐能电站控制和自动化中的应用,以及它的优点和成本效益。可编程控制器(PLC)可用于潮汐能电站的控制和自动化。这样做的主要原因是成本效益。通过对PLC进行编程,可以实现各种功能和控制。它们可用于全工厂自动化,包括自动运行的控制,包括速度控制、负载控制、励磁控制和液位控制、自动启动/停止顺序、屏蔽门控制、辅助系统的启动/停止和保护要求等。除控制以外的功能,如连续监测、数据记录、仪表和保护也可以执行。对于远程操作,可与PLC通信。为实现连续监测,可将个人计算机与PLC连接,定期记录连续数据[16]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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