The Experts below are selected from a list of 166815 Experts worldwide ranked by ideXlab platform

Son-cheol Yu - One of the best experts on this subject based on the ideXlab platform.

  • Development of mooring-less robotic buoy system using Wave Powered renewable energy
    2014 Oceans - St. John's OCEANS 2014, 2015
    Co-Authors: Hangil Joe, Seok Min Wi, Hee Seung Kwon, Minsung Kim, Son-cheol Yu
    Abstract:

    For long-term operation, a Wave-energy harvesting robotic buoy system that holds position automatically without anchoring line is proposed. We made a prototypes which consists of the propulsion system and Power generation system. We adopted the Wave glider platform to hold the buoy position without mooring, and developed a flip-type self-rectifying Wave turbine system (WTS). We developed modeling equations to describe the proposed system and simulated them using numerical software, then tested their station-keeping ability and energy-harvesting Power in Wave tank. Developed prototype patrolled within a 3-m diameter area, and the WTS generated 10.1 W of Power. The station-keeping area was smaller than that of the existing mooring buoy, which means that the robotic buoy system can obtain precise and accurate observation data in the ocean without additional costs for mooring systems, and its Wave-harvested energy can provide sufficient electric Power to maintain the whole system.

Hangil Joe - One of the best experts on this subject based on the ideXlab platform.

  • Development of mooring-less robotic buoy system using Wave Powered renewable energy
    2014 Oceans - St. John's OCEANS 2014, 2015
    Co-Authors: Hangil Joe, Seok Min Wi, Hee Seung Kwon, Minsung Kim, Son-cheol Yu
    Abstract:

    For long-term operation, a Wave-energy harvesting robotic buoy system that holds position automatically without anchoring line is proposed. We made a prototypes which consists of the propulsion system and Power generation system. We adopted the Wave glider platform to hold the buoy position without mooring, and developed a flip-type self-rectifying Wave turbine system (WTS). We developed modeling equations to describe the proposed system and simulated them using numerical software, then tested their station-keeping ability and energy-harvesting Power in Wave tank. Developed prototype patrolled within a 3-m diameter area, and the WTS generated 10.1 W of Power. The station-keeping area was smaller than that of the existing mooring buoy, which means that the robotic buoy system can obtain precise and accurate observation data in the ocean without additional costs for mooring systems, and its Wave-harvested energy can provide sufficient electric Power to maintain the whole system.

Seok Min Wi - One of the best experts on this subject based on the ideXlab platform.

  • Development of mooring-less robotic buoy system using Wave Powered renewable energy
    2014 Oceans - St. John's OCEANS 2014, 2015
    Co-Authors: Hangil Joe, Seok Min Wi, Hee Seung Kwon, Minsung Kim, Son-cheol Yu
    Abstract:

    For long-term operation, a Wave-energy harvesting robotic buoy system that holds position automatically without anchoring line is proposed. We made a prototypes which consists of the propulsion system and Power generation system. We adopted the Wave glider platform to hold the buoy position without mooring, and developed a flip-type self-rectifying Wave turbine system (WTS). We developed modeling equations to describe the proposed system and simulated them using numerical software, then tested their station-keeping ability and energy-harvesting Power in Wave tank. Developed prototype patrolled within a 3-m diameter area, and the WTS generated 10.1 W of Power. The station-keeping area was smaller than that of the existing mooring buoy, which means that the robotic buoy system can obtain precise and accurate observation data in the ocean without additional costs for mooring systems, and its Wave-harvested energy can provide sufficient electric Power to maintain the whole system.

Hee Seung Kwon - One of the best experts on this subject based on the ideXlab platform.

  • Development of mooring-less robotic buoy system using Wave Powered renewable energy
    2014 Oceans - St. John's OCEANS 2014, 2015
    Co-Authors: Hangil Joe, Seok Min Wi, Hee Seung Kwon, Minsung Kim, Son-cheol Yu
    Abstract:

    For long-term operation, a Wave-energy harvesting robotic buoy system that holds position automatically without anchoring line is proposed. We made a prototypes which consists of the propulsion system and Power generation system. We adopted the Wave glider platform to hold the buoy position without mooring, and developed a flip-type self-rectifying Wave turbine system (WTS). We developed modeling equations to describe the proposed system and simulated them using numerical software, then tested their station-keeping ability and energy-harvesting Power in Wave tank. Developed prototype patrolled within a 3-m diameter area, and the WTS generated 10.1 W of Power. The station-keeping area was smaller than that of the existing mooring buoy, which means that the robotic buoy system can obtain precise and accurate observation data in the ocean without additional costs for mooring systems, and its Wave-harvested energy can provide sufficient electric Power to maintain the whole system.

Minsung Kim - One of the best experts on this subject based on the ideXlab platform.

  • Development of mooring-less robotic buoy system using Wave Powered renewable energy
    2014 Oceans - St. John's OCEANS 2014, 2015
    Co-Authors: Hangil Joe, Seok Min Wi, Hee Seung Kwon, Minsung Kim, Son-cheol Yu
    Abstract:

    For long-term operation, a Wave-energy harvesting robotic buoy system that holds position automatically without anchoring line is proposed. We made a prototypes which consists of the propulsion system and Power generation system. We adopted the Wave glider platform to hold the buoy position without mooring, and developed a flip-type self-rectifying Wave turbine system (WTS). We developed modeling equations to describe the proposed system and simulated them using numerical software, then tested their station-keeping ability and energy-harvesting Power in Wave tank. Developed prototype patrolled within a 3-m diameter area, and the WTS generated 10.1 W of Power. The station-keeping area was smaller than that of the existing mooring buoy, which means that the robotic buoy system can obtain precise and accurate observation data in the ocean without additional costs for mooring systems, and its Wave-harvested energy can provide sufficient electric Power to maintain the whole system.