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CN-122009396-A - Multifunctional intelligent navigation mark

CN122009396ACN 122009396 ACN122009396 ACN 122009396ACN-122009396-A

Abstract

The invention relates to the technical field of intelligent navigation marks, in particular to a multifunctional intelligent navigation mark which comprises a suspension module, a fixed support, a detection module and an illumination module, wherein the fixed support is fixedly arranged on the suspension module in a vertical state, the detection module is fixedly arranged on the top of the fixed support, the illumination module is arranged in the suspension module in a vertical state, the illumination module is provided with an illumination unit capable of emitting illumination and an adjusting unit capable of dynamically adjusting the illumination height of the illumination unit according to the height of water waves, and the multifunctional intelligent navigation mark can dynamically adjust the illumination height according to the fluctuation of the water surface.

Inventors

  • WANG DONGYU
  • CHEN PINGSHAN
  • WANG LIHAO
  • QIAN YONGQIANG

Assignees

  • 广州睿海海洋科技有限公司

Dates

Publication Date
20260512
Application Date
20260413

Claims (8)

  1. 1. A multifunctional intelligent navigation mark, comprising: A suspension module; the fixed bracket is fixedly arranged on the suspension module in a vertical state; The detection module is fixedly arranged at the top of the fixed bracket; The illumination module is in a vertical state and is arranged in the suspension module, and the illumination module is provided with an illumination unit capable of emitting illumination and an adjusting unit capable of dynamically adjusting the illumination height of the illumination unit according to the height of water waves.
  2. 2. The multifunctional intelligent navigation mark according to claim 1, wherein the lighting module further comprises a vertical limiting unit capable of always longitudinally limiting the adjusting unit; The adjusting unit is vertically arranged in the fixed support through the vertical limiting unit, and the vertical limiting unit is arranged close to the top of the adjusting unit.
  3. 3. A multifunctional intelligent navigation mark according to claim 2, wherein the vertical limiting unit comprises a hinged ball sleeve and a hinged ball head; The hinged ball sleeve is fixedly arranged in the fixed support in a horizontal state and is arranged close to the top of the fixed support; the adjusting unit is coaxially hinged in the hinged ball sleeve through the hinged ball head, and the hinged ball head is arranged close to the top of the adjusting unit.
  4. 4. A multifunctional intelligent navigation mark according to claim 1, wherein the adjusting unit comprises a lifting rod capable of longitudinally stretching and retracting, a guiding component capable of guiding the lifting rod to lift and a driving component capable of dynamically driving the lifting rod to dynamically lift; The lifting rod is coaxially arranged in the guide assembly in a sliding manner; the lighting unit is fixedly arranged at the top of the lifting rod; The driving component is coaxially arranged in the guiding component and used for dynamically driving the lifting rod to lift.
  5. 5. The multifunctional intelligent navigation mark according to claim 4, wherein the guiding component comprises an outer cylinder, a middle cylinder and an inner cylinder which are coaxially arranged at intervals in sequence; The gap between the outer cylinder and the middle cylinder is enclosed to form a first annular cavity; The lifting rod is coaxially arranged in the first annular cavity in a sliding manner; the gap between the middle cylinder and the inner cylinder is enclosed to form a second annular cavity; The bottom of the middle cylinder is also radially provided with a through hole which can be communicated with the first annular cavity and the second annular cavity.
  6. 6. The multifunctional intelligent navigation mark according to claim 5, wherein the driving assembly is provided with a driving valve, a driving piece capable of absorbing and utilizing the water wave energy, a magnetic driving piece capable of driving the driving valve to axially slide, and a connecting rope capable of flexibly connecting the magnetic driving piece and the driving piece; The driving valve is coaxially and slidably arranged in the second annular cavity; The magnetic driving piece is coaxially arranged in the inner cylinder in a sliding manner and is magnetically connected with the driving valve.
  7. 7. The multifunctional intelligent navigation mark according to claim 1, wherein the detection module is provided with an anemometer capable of detecting wind speed and wind direction, an air pressure and humidity measuring instrument capable of detecting air pressure and humidity, and a Beidou positioning module capable of positioning the navigation mark in real time.
  8. 8. A multifunctional intelligent navigation mark according to claim 1, wherein the suspension module is provided with a floating ring capable of suspending on the water surface and a connecting ring capable of anchoring the floating ring to a navigation mark area; The two connecting rings are arranged, and the two connecting rings are relatively and fixedly arranged at the bottom of the floating ring.

Description

Multifunctional intelligent navigation mark Technical Field The invention relates to the technical field of intelligent navigation marks, in particular to a multifunctional intelligent navigation mark. Background The navigation mark is an important facility in a water traffic management and channel guiding system, is usually arranged in channels, ports and coastal waters, and is used for providing information such as channel guidance, danger warning, position identification and the like for ships. The existing navigation mark generally floats on the water surface through a floating body structure, and an indicator lamp or a signal lamp is arranged at the upper part of the navigation mark so as to provide visual guidance for a ship at night or in an environment with low visibility. Along with the increase of the traffic density on water and the development of intelligent shipping technology, the navigation mark gradually develops to an intelligent and informationized direction, and the indication function and the adaptability of the navigation mark are improved by adding a sensing device and a control system. However, in practical application, the existing navigation mark structure still has certain limitations. Because the navigation mark is usually arranged in an open water area, the floating body can float up and down and shake left and right along with the fluctuation of the wave on the water surface, and when the wave on the water surface greatly fluctuates, the height of the indicator lamp at the top of the navigation mark can change along with the fluctuation, thereby influencing the visual distance and the indication stability of the navigation mark. Meanwhile, in the environment of a part of complex water areas, the buoy floating body can incline and even topple over in a short time along with the wave billowing, so that the whole indicator lamp inclines synchronously along with the posture of the floating body, the light indication direction and the light indication height change, and the recognition effect of the buoy is reduced. On the other hand, the brightness of the indicator lights of the existing navigation mark is usually in a fixed output mode, and the self-adaptive adjustment capability is lacking under different water surface environment conditions. When the wave on the water surface is large or the floating amplitude of the navigation mark is high, the height and the observation angle of the indicator lamp can be changed, if the fixed brightness is still maintained, the problems of insufficient remote visibility or local glare easily occur, and the light intensity is difficult to dynamically adjust according to the fluctuation of the water surface. Therefore, in the environment with larger water surface fluctuation, the existing navigation mark still has certain defects in the aspects of indication stability and light adaptability. Disclosure of Invention To above-mentioned problem, provide a multi-functional intelligent navigation mark, through providing one kind can follow the intelligent navigation mark of the change dynamic adjustment illumination height of surface of water state to solve current navigation mark and easily lead to pointing the altitude reduction and be difficult to carry out self-adaptation to light luminance according to the fluctuation change of surface of water along with the body slope when the surface of water billowing. The invention provides a multifunctional intelligent navigation mark which aims at solving the problems in the prior art and comprises a suspension module, a fixing support, a detection module and an illumination module, wherein the fixing support is fixedly arranged on the suspension module in a vertical state, the detection module is fixedly arranged on the top of the fixing support, the illumination module is arranged in the suspension module in a vertical state, and the illumination module is provided with an illumination unit capable of emitting illumination and an adjusting unit capable of dynamically adjusting the illumination height of the illumination unit according to the height of water waves. Preferably, the lighting module further comprises a vertical limiting unit capable of limiting the adjusting unit longitudinally all the time, wherein the adjusting unit is arranged in the fixed support in a vertical state through the vertical limiting unit, and the vertical limiting unit is arranged close to the top of the adjusting unit. The vertical limiting unit comprises a hinged ball sleeve and a hinged ball head, wherein the hinged ball sleeve is horizontally fixedly arranged in the fixed support and is close to the top of the fixed support, the adjusting unit is coaxially hinged in the hinged ball sleeve through the hinged ball head, and the hinged ball head is close to the top of the adjusting unit. Preferably, the adjusting unit comprises a lifting rod capable of longitudinally stretching, a guiding component capable of guiding the li