AUTOMATICALLY SINKING CAGE NET SYSTEM
20210169052 ยท 2021-06-10
Inventors
- CHUNG-CHENG CHANG (KEELUNG CITY, TW)
- CHEN-CHOU LIN (TAIPEI CITY, TW)
- YI-ZENG HSIEH (KEELUNG CITY, TW)
- CHANG-TA LIN (YILAN COUNTY, TW)
- ZHEN-YAO CHEN (NEW TAIPEI CITY, TW)
Cpc classification
Y02A40/81
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B63B35/44
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present disclosure relates to an automatically sinking cage net system, comprising: the cage net body includes a floating frame and a net body; a working platform including an accelerometer, a first processing module and a first wireless communication module; a floating barrel, at least having a first opening, a gas flow controller, a water level sensor, a programmable control module, a second processing module, a second wireless communication module and a second opening; and a marine environment monitoring system, including a human-machine interface, a marine environment monitoring module, a data storage module, a third processing module, and a third wireless communication module; wherein the first wireless communication module, the second wireless communication module and the third wireless communication module are in signal connection with each other. The present disclosure provides an automatically sinking cage net system to improve the conventional shortcomings caused by manual operation.
Claims
1. An automatically sinking cage net system, comprising: a cage net body comprising a floating frame and a net body, the net body surrounds a lower end of the floating frame, and the net body surrounds to form breeding space; a working platform comprising an accelerometer, a first processing module and a first wireless communication module, the working platform is disposed on an upper end of the floating frame, and the accelerometer, the first processing module and the first wireless communication module are electrically connected to each other; a floating barrel at least comprising an first opening, a gas flow controller, a water level sensor, a programmable control module, a second processing module, a second wireless communication module and a second opening, interior of the floating barrel has a receiving space, the receiving space is communicated with the first opening and the second opening, the floating barrel is disposed on a lower end of the floating frame and outside the breeding space, the first opening is disposed on one side of the floating barrel, the second opening is disposed on another one side of the floating barrel which is opposite to the first opening, and the gas flow controller, the water level sensor, the programmable control module, the second processing module and the second wireless communication module are electrically connected to each other; and a marine environment monitoring system comprising a human-machine interface, a marine environment monitoring module, a data storage module, a third processing module and a third wireless communication module, the human-machine interface, the marine environment monitoring module, the data storage module, the third processing module and the third wireless communication module are electrically connected to each other, and the first wireless communication module, the second wireless communication module and the third wireless communication module are signally connected to each other.
2. The automatically sinking cage net system according to claim 1, wherein the floating frame further has a floating tube surrounding the floating frame, the floating tube forms a ring structure, and interior of the floating tube has a hollow receiving space.
3. The automatically sinking cage net system according to claim 1, wherein an upper end of the floating frame has an armrest.
4. The automatically sinking cage net system according to claim 1, wherein exterior of the floating barrel further has a propeller.
5. The automatically sinking cage net system according to claim 1, further comprising an anchor device which includes an anchor, a connection part and a float.
6. The automatically sinking cage net system according to claim 5, wherein the connection part is a cable or chain.
7. The automatically sinking cage net system according to claim 1, wherein the gas flow controller is a thermal gas mass flow controller.
8. The automatically sinking cage net system according to claim 1, wherein the water level sensor is a water pressure sensor.
9. The automatically sinking cage net system according to claim 1, wherein the marine environment monitoring module further comprises at least one of a wave sensor, a water temperature sensor, a water quality sensor, and a wind speed sensor.
10. The automatically sinking cage net system according to claim 1, wherein the human-machine interface comprises a floating barrel status unit, an operation unit and a parameter setting unit.
11. The automatically sinking cage net system according to claim 1, further comprising a cloud server.
12. The automatically sinking cage net system according to claim 1, wherein the marine environment monitoring system further comprises a data analysis module, and the human-machine interface comprises a data analysis unit.
13. The automatically sinking cage net system according to claim 1, wherein exterior of the floating barrel further has a camera device, and the human-machine interface comprises an image unit.
14. The automatically sinking cage net system according to claim 1, further comprising a counterweight system, and the counterweight system is disposed on another one side of the net body opposite to the floating frame.
15. The automatically sinking cage net system according to claim 14, wherein the counterweight system is selected one of a heavy hammer counterweight structure and a net frame counterweight structure.
Description
BRIEF DESCRIPTIONS OF DRAWINGS
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DETAILS OF EXEMPLARY EMBODIMENTS
[0032] Embodiments of the present disclosure will now be described, by way of example only, with reference to the accompanying drawings. The following drawings are dedicated for description, and they are schematic and exemplary, being not drawn and precisely allocated in accordance with the actual ratio, thus not limiting the present disclosure.
[0033] Refer to
[0034] The cage net body (1000) comprises a floating frame (1) and a net body (2), the net body (2) surrounds a lower end of the floating frame (1), and the net body (2) surrounds to form breeding space. When practicing, the net body (2) is used to prevent the fish in the breeding space from escaping. In one embodiment of the present disclosure, the floating frame (1) further comprises a floating tube (11) surrounding the floating frame (1), the floating tube (11) forms a ring structure, and interior of the floating tube (11) has a hollow receiving space. Each floating tube (11) provides buoyancy on the water so that the floating frame (1) floats on the surface of the water, which is beneficial for fishery farmers to stand on the floating frame (1) for work. In another one embodiment of the present disclosure, an upper end of the floating frame (1) has an armrest. When the cage net body (1000) is affected by waves or ocean currents and shakes, the fishery farmers can use the armrest to keep standing on the floating frame (1) to perform work to prevent the fishery farmers from falling down due to unstable center of gravity.
[0035] The working platform (3) comprises an accelerometer (31), a first processing module (32) and a first wireless communication module (33), the working platform (3) is disposed on an upper end of the floating frame (1), and the accelerometer (31), the first processing module (32) and the first wireless communication module (33) are electrically connected to each other. When practicing, the accelerometer (31) generates an acceleration signal according to the movement state of a floating barrel (4), and the acceleration signal is transmitted to a marine environment monitoring system (5) and through the first processing module (32) and the first wireless communication module (33), such that the fishery farmers are assisted in judging the movement state of the cage net body (1000) based on the acceleration signal.
[0036] The floating barrel (4) at least comprises an first opening (40), a gas flow controller (41), a water level sensor (42), a programmable control module (43), a second processing module (44), a second wireless communication module (45) and a second opening (47). Interior of the floating barrel (4) has a receiving space, the receiving space is communicated with the first opening (40) and the second opening (47), and the floating barrel (4) is disposed on a lower end of the floating frame (1) and outside the breeding space. The first opening (40) is disposed on one side of the floating barrel (4), and the second opening (47) is disposed on another one side of the floating barrel (4) which is opposite to the first opening (40). The gas flow controller (41), the water level sensor (42), the programmable control module (43), the second processing module (44) and the second wireless communication module (45) are electrically connected to each other. In one embodiment of the present disclosure, the floating barrels (4) are respectively arranged at the lower end of the floating frame (1) in an equilateral triangle. In one other embodiment of the present disclosure, exterior of the floating barrel (4) has a propeller (46), and the propeller (46) is used to control the sinking or rising speed of the cage net body (1000) to cope with various sudden situations at any time. In one other embodiment of the present disclosure, the gas flow controller (41) is a thermal gas mass flow controller, which adjusts the speed of the floating barrel (4) when it rises or sinks by controlling the flow of gas. The water level sensor (42) can be a water pressure sensor, when the floating barrel (4) rises or sinks, the water pressure sensor can detect the deep distance between the floating barrel (4) and the sea level, so as to know whether the sinking position of the floating barrel (4) is within the specified position range, or when the parasites are attached to the fish, by detecting the depth of the floating barrel (4) relative to the sea level, the depth of re-sinking can be determined, which can effectively inhibit the growth of the parasites through physical means and reduce the use of drugs for killing parasites.
[0037] The marine environment monitoring system (5) comprising a human-machine interface (51), a marine environment monitoring module (52), a data storage module (53), a third processing module (54) and a third wireless communication module (55). The human-machine interface (51), the marine environment monitoring module (52), the data storage module (53), the third processing module (54) and the third wireless communication module (55) are electrically connected to each other, and the first wireless communication module (33), the second wireless communication module (45) and the third wireless communication module (55) are signally connected to each other. When practicing, the marine environment monitoring module (52) collects a monitoring data generated by the floating barrel (4) and the working platform (3) within a breeding region, the monitoring data is stored in the data storage module (53) via the third processing module (54), or by using the human-machine interface (51), the monitoring data is browsed and analyzed, and the fishery farmers can generate an operation command by operating the human-machine interface (51). The third processing module (54) and the third wireless communication module (55) transmit the operation command to the floating barrel (4) via the second wireless communication module (45). According to the operation command, the second processing module (44) and the programmable control module (43) control amount of the gas via the second opening (47), so that the flow of the gas of the gas flow controller (41) is controlled, or the second processing module (44) and the programmable control module (43) control amount of the ocean water which flows in or out the receiving space of the floating barrel (4) via the first opening (40), so as to control the sinking or rising speed of the floating barrel (4). The marine environment monitoring system (5) can receive an acceleration signal via the third wireless communication module (55), and the acceleration signal is generated by the accelerometer (31) of the working platform (3) according to the moving state of the floating barrel (4) to make the fishery farmers monitor the acceleration signal of the floating barrel (4) through the marine environment monitoring system (5), and manipulates the human-machine interface (51) to control the movement state of the floating barrel (4), thereby adjusting and balancing the tilt angle of the cage net body (1000). In one embodiment of the present disclosure, the marine environment monitoring module (52) further comprises at least one of a wave sensor, a water temperature sensor, a water quality sensor, and a wind speed sensor. When practicing, each sensor monitors the waves, water temperature, water quality, and wind speed in the breeding region, and generates monitoring data of each sensor, and the monitoring data of each sensor is collected by the third processing module (54) and stored in the data storage module (53), or the wave, water temperature, water quality, and wind speed in the breeding region are browsed or analyzed by the human-machine interface (51). In other one embodiment of the present disclosure, the automatically sinking cage net system further comprises a cloud server. The cloud server, the first wireless communication module (33), the second wireless communication module (45) and the third wireless communication module (55) are signally connected to each other. When practicing, each sensor monitors the wave, water temperature, water quality and wind speed in the breeding region, and generates the monitoring data of the sensor. The third processing module (54) transmits the collected monitoring data of each sensor through the third wireless communication module (55), and the monitoring data is stored in the cloud server. The cloud server can be used by the fishery farmers to download and browse the monitoring data of the wave, water temperature, water quality and wind speed in the breeding region, which are generated by the sensors. In one embodiment of the present disclosure, the marine environment monitoring system (5) further comprises a data analysis module (56), and the human-machine interface (51) comprises a data analysis unit (514). When practicing, the marine environment monitoring module (52) collects a piece of monitoring data generated by the floating barrel (4) and the working platform (3) in the breeding region, and through the third processing module (54) and the data analysis module (56), the monitoring data passes is used to be calculated and analyzed to generate an analysis data, and the analysis data can be browsed by the data analysis unit (514) of the human-machine interface (51).
[0038] Refer to
[0039] Refer to
[0040] In one embodiment of the present disclosure, exterior of the floating barrel (4) further comprises a camera device (7), and the human-machine interface (51) comprises an image unit (515), wherein the camera device (7), the gas flow controller (41), the water level sensor (42), the programmable control module (43), the second processing module (44) and the second wireless communication module (45) are electrically connected to each other. When practicing, the camera device (7) captures an image of a group of fish in the water, and the image of the fish group is converted into an image signal, and sent to the marine environment monitoring system (5) through the second processing module (44) and the second wireless communication module (45), so as to remotely observe the activity of the fish group.
[0041] Refer to
[0042] In summary, compared with the prior art and products, the present disclosure has one of the following advantages.
[0043] One of the objectives of the present disclosure is to use an automatically sinking cage net system to greatly reduce the manpower and time required to perform the sinking action of the cage net body and reduce personnel safety problems caused by manual operations.
[0044] One of the objectives of the present disclosure is to detect the tilt angle of the floating frame by an accelerometer, and adjust and reduce the tilt angle range of the floating frame, so as to prevent the floating frame from having have an excessively large tilt angle when the cage net body sinks, which causes the net body volume rapidly decrease, injures the farmed fish, and even makes the farmed first death.
[0045] One of the objectives of the present disclosure is to provide monitoring data of various sensors such as water temperature, wave, water quality, and wind speed in accordance with the marine environment monitoring system, so that the fishery farmers can judge the timing when the body sinks or rises to greatly reduce the loss of the fishery farmers if the sudden natural disasters or accidents happen.
[0046] One of the objectives of the present disclosure is to use simple and clear floating barrel status unit, operation unit and parameter setting unit through the human-machine interface of the marine environment monitoring system to simplify the operation interface and make the fishery farmers more quickly familiar the system commands to operate the floating barrel to drive the cage net body to sink or rise.
[0047] One of the objectives of the present disclosure is to set a propeller on the floating barrel to control the sinking or rising speed of the cage net body, so as to cope with various sudden situations at any time.
[0048] To sum up, the automatically sinking cage net system of the present disclosure is indeed disclosed by the descriptions of different embodiments, and it can achieve the desired result(s). Furthermore, the automatically sinking cage net system of the present disclosure is not anticipated and obtained by the prior art, and the present disclosure complies with the provision of the patent act. The present disclosure is applied according to the patent act, and the examination and allowance requests are solicited respectfully.
[0049] Although particular embodiments of the present disclosure have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the present disclosure. Accordingly, the present disclosure is not to be limited except as by the appended claims.