A Calculation Method of Risk Degree of Ship Colliding with Bridge Considering Ship Size

A calculation method and technology of risk degree, applied in ship traffic control, instrumentation, traffic control system, etc., can solve the problems of not taking into account the influence of ship scale risk degree, lack of research and analysis of collision between ship and pier, impacting bridges, etc., to achieve Effects of improving ship transportation efficiency, avoiding collisions, and reducing the degree of impact

A calculation method and technology of risk degree, applied in ship traffic control, instrumentation, traffic control system, etc., can solve the problems of not taking into account the influence of ship scale risk degree, lack of research and analysis of collision between ship and pier, impacting bridges, etc., to achieve Effects of improving ship transportation efficiency, avoiding collisions, and reducing the degree of impact

CN113112871BActive Publication Date: 2022-06-24SHANGHAI MARITIME UNIVERSITY

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  • A Calculation Method of Risk Degree of Ship Colliding with Bridge Considering Ship Size
  • A Calculation Method of Risk Degree of Ship Colliding with Bridge Considering Ship Size
  • A Calculation Method of Risk Degree of Ship Colliding with Bridge Considering Ship Size

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Embodiment Construction

[0050] The technical content, structural features, achieved objects and effects of the present invention will be described in detail below with reference to the accompanying drawings.

[0051] like figure 1 As shown in the figure, the flow chart of a method for calculating the risk of a ship hitting a bridge considering the scale of the ship provided by the present invention includes the following steps:

[0052] Step 1: Establish a bridge-ship coordinate system, perform coordinate transformation for each real-time position point of the ship and each fixed position point of the bridge, and convert the latitude and longitude coordinate system to the bridge-ship coordinate system.

[0053] like figure 2 As shown, take the direction of the channel entrance as the positive direction of the longitudinal axis of the bridge-ship coordinate system. Since there are many entrance directions of the channel, and there is only one centerline of the channel in the bridge area, the centerl...

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Abstract

The invention discloses a method for calculating the risk degree of a ship hitting a bridge considering the scale of the ship. By establishing a plane rectangular coordinate system and using the Mercator projection method to convert the geographical position of the bridge and the ship according to the warning range of the bridge area, the rectangular coordinates are designed. The method of projecting the ship on the bridge axis along the channel direction uses the distance between the projected point and the center point of the pier to construct the risk algorithm of ship collision with the bridge. This algorithm fully considers the influence of ship size on the risk of ship collision with bridge, and uses the geometric analysis method to obtain the risk interval of ship collision with bridge from the horizontal direction, so that the algorithm is more in line with the actual situation. , and further proposed an active early warning and prediction strategy for ship collision with bridges. Through the above early warning strategy, the accuracy of early warning can be improved, the reliability and practicability of the system can be improved, and the common safety of bridges and ships can be guaranteed.

Description

technical field [0001] The invention relates to the field of bridge anti-collision safety, in particular to a method for calculating the risk of a ship colliding with a bridge considering the scale of the ship. Background technique [0002] The reason why the calculation of the risk of ship collision with bridges is so important is because the number of ship collision accidents in my country is increasing, the super-span bridges across rivers and seas are constantly developing, and the potential risk of ships collision bridges is increasing. Traffic accidents, once they occur, often lead to serious consequences such as bridge damage, ship destruction, waterway obstruction, land traffic interruption and cargo leakage, and the cost of rebuilding bridges and clearing waterways is staggering. In this context, the bridge active anti-ship collision warning system came into being, and the risk of ship collision with bridge and its core algorithm are the key to the application of thi...

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Application Information

Patent Timeline
24 Jun 2022
Publication
CN113112871B
IPC
G08G3/02
CPC
G08G3/02
Inventors
张静燕; 刘轶华