Design and development of subsea power and instrumentation system for new ocean current turbine power module

B. Pattanaik, D. Leo, Y. Rao, P. Jalihal
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引用次数: 2

Abstract

The ocean current energy is one of the clean forms of available renewable energy sources. Based on the topography of the islands, the subsea current is comparatively more than the mainland. Most of the islands are not having self-sustained power sources due to the limitations of infrastructure even though the power requirement is less. The National Institute of Ocean Technology (NIOT) of Ministry of Earth Sciences has undertaken the research and development of an ocean current power module for such islands. The first prototype ocean current turbine (OCT) power module was tested at Macpherson Strait in the Andaman open sea. The subsea power module of the system comprises of the turbine, transmission system, generator and the associated power and instrumentation systems. The development and implementation of electrical and instrumentation system for an underwater OCT power module are one of the challenging task, hence the entire system required to be designed for in-situ conditions. This paper aims to describe the design of Power take off (PTO) system, data acquisition, and wireless communication of prototype ocean current power module trials in open sea conditions.
新型海流轮机动力模块海底动力与仪表系统的设计与开发
海流能源是一种清洁的可再生能源。根据岛屿的地形,海底电流相对大于大陆。虽然电力需求较少,但由于基础设施的限制,大部分岛屿没有自给自足的电力来源。地球科学部国家海洋技术研究所(NIOT)承担了这种岛屿的洋流动力模块的研究和开发。首个原型海流涡轮机(OCT)动力模块在安达曼公海的麦克弗森海峡进行了测试。该系统的水下动力模块包括涡轮机、传输系统、发电机以及相关的动力和仪表系统。水下OCT电源模块的电气和仪表系统的开发和实施是一项具有挑战性的任务,因此整个系统需要根据现场条件进行设计。介绍了在远海条件下样机海流动力模块试验的动力起飞(PTO)系统设计、数据采集和无线通信。
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