Artificial intelligence control device for operation process of water transportation port

By introducing positioning frames, waterproof connection ports, APM processors, and wireless communication modules into the control devices for water transport ports, the problems of inaccurate installation, easy damage to connections, and insufficient data processing capabilities have been solved, enabling precise control and remote monitoring, and improving port operation efficiency and safety.

CN224111408UActive Publication Date: 2026-04-10TIANJIN TIANKE ENG MANAGEMENT CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing waterway port control devices suffer from inaccurate installation and positioning, easy rusting and damage to connection ports, limited data processing capabilities, poor waterproof sealing performance, and inability to achieve remote monitoring and control, resulting in low port operation efficiency, poor safety, and high operating costs.

Method used

It employs a control device mounting positioning frame, a waterproof connection port with nickel-plated sockets, a control APM processor, a data storage device, and a wireless communication module, combined with a multi-layer waterproof sealing structure, to achieve precise positioning, corrosion-resistant connection, powerful data processing, remote monitoring, and control.

Benefits of technology

It improved the accuracy and stability of equipment installation, achieved real-time precise control, reduced failure rate and operating costs, and enhanced the automation level and management convenience of port operations.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides an artificial intelligence control device for the operation process of a water transportation port. The artificial intelligence control device has various advantages. The positioning holes provide accurate reference for device installation, and installation efficiency and quality are improved; the water transportation port is used for controlling the connecting port and the nickel-plated jack, so that stable and reliable connection, corrosion resistance and water resistance are guaranteed. The APM processor can be controlled to quickly process sensor data, real-time accurate control is achieved, and the operation automation level is improved. And the data storage stores related data, so that subsequent analysis and operation optimization are facilitated. And the wireless communication module is controlled to realize remote monitoring and control, so that the management cost is reduced. The device adopts a multiple waterproof sealing structure, prevents moisture and dust from invading, protects an internal circuit, and ensures stable data transmission. Through real-time monitoring and accurate control, operation parameters can be adjusted according to actual conditions, the safety, efficiency and resource utilization rate of port operation are improved, the cost is reduced, and the overall competitiveness is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of water transportation port, and specifically relates to water transportation port operation process artificial intelligence control device. BACKGROUND

[0002] In the operation and management of water transportation port, various control devices play a crucial role, as they directly affect the efficiency, safety and automation level of port operations. However, existing water transportation port control devices have many shortcomings.

[0003] The existing control device lacks precise positioning reference when installed in the water transportation port. This makes it difficult to ensure accurate positioning during installation, and installation position deviation often occurs. The deviation of the installation position may cause poor connection between the device and other related equipment, thereby affecting the accuracy of control. At the same time, due to the need to repeatedly adjust the installation position to ensure connection and normal control, the efficiency and quality of device installation are greatly reduced.

[0004] The connection port of the current control device is prone to rust and damage in the humid and corrosive environment of the water transportation port. Once the connection port has a problem, it will cause unstable connection between the device and the related equipment of the port, thereby causing failure, and even causing equipment downtime. Frequent failures and downtime not only affect the continuity of port operations, but also increase maintenance costs and time costs.

[0005] The data processing capacity of the integrated circuit board of the existing control device is limited. Its data processing core often cannot quickly and effectively process and analyze a large amount of data collected from sensors, and it is difficult to generate accurate control instructions according to the preset algorithm and rules. This makes it impossible to achieve real-time and accurate control of the port operation process, resulting in low port operation efficiency and difficulty in improving automation level.

[0006] Many existing control devices do not have a dedicated data storage device, and cannot effectively store various related data of the water transportation port operation process. Due to the lack of historical operation records, equipment parameters, and control strategy data, subsequent data analysis, fault diagnosis, and operation optimization work is difficult to carry out, and the operation and management level of the port is difficult to improve effectively.

[0007] Traditional control devices mostly use wired data transmission methods, which limits the scope of management personnel's monitoring and control of port operations. Management personnel must be on site to obtain relevant data of port operations and control, and cannot achieve real-time remote monitoring and control. This not only increases labor costs and management difficulty, but also reduces the timeliness and convenience of management.

[0008] The existing control device has poor waterproof and sealing performance, and cannot effectively prevent moisture and dust from entering the inside of the device. In the humid environment of the water transportation port, the circuit and electronic components inside the device are easily eroded and damaged by water, thereby reducing the stability and reliability of the device and shortening the service life of the device. In addition, the entry of moisture may also cause signal interference and short circuit problems in the sensor connection port and data transmission interface, affecting the accuracy and reliability of data transmission, and further affecting the precise control of port operations.

[0009] Since the existing control device cannot monitor and accurately control the port operation process in real time, it cannot adjust the operation parameters and process in a timely manner according to the actual situation. It is also difficult to adjust the flood control measures of the port in a timely manner according to the data of the water level sensor, and to optimize the loading and unloading plan according to the data of the cargo weight sensor. This leads to the fact that the safety, efficiency and resource utilization of port operations cannot be effectively guaranteed, the operating cost is high, and the overall competitiveness of the port is affected. Therefore, we improve it and propose an artificial intelligence control device for water transportation port operation process. Content of the utility model

[0010] The utility model discloses a water transportation port operation process artificial intelligence control device, which comprises a control device sealing shell body and a control device mounting positioning frame arranged at the tail of the control device sealing shell body.

[0011] As a preferred technical scheme of the utility model, the control device sealing shell body is internally provided with a control device integrated circuit board.

[0012] As a preferred technical scheme of the utility model, the control device integrated circuit board is provided with a control APM processor at the right upper driving part circuit, and a data storage is electrically mounted at the left side of the control APM processor.

[0013] As a preferred technical scheme of the utility model, the control device integrated circuit board is provided with a circuit board plug-in port at the center segment plug-in hole, and a conductive copper wire is mounted in the circuit board plug-in port.

[0014] As a preferred technical scheme of the utility model, the control device integrated circuit board is provided with a control wireless communication module at the right lower part of the bottom, and a control device sensor connection port is electrically connected to the top end of the control device sealing shell body and connected to the control device integrated circuit board.

[0015] As the preferred technical scheme of the utility model, the control device sealing outer shell body top face both sides respectively install screw waterproof ring, the screw waterproof ring inside be provided with outer shell body sealing connecting screw, the outer shell body sealing connecting screw side plate downside fixed with port lock catch.

[0016] As the preferred technical scheme of the utility model, the control device sealing outer shell body top face both sides respectively install screw waterproof ring, the screw waterproof ring inside be provided with outer shell body sealing connecting screw, the outer shell body sealing connecting screw side plate downside fixed with port lock catch.

[0017] As the preferred technical scheme of the utility model, the control device sealing outer shell body one side is provided with connecting port waterproof rubber sleeve ring, the connecting port waterproof rubber sleeve ring bottom end covers a layer of port waterproof sealing bushing, and the connecting port waterproof rubber sleeve ring with Port lock catch is connected.

[0018] As the preferred technical scheme of the utility model, the connecting port waterproof rubber sleeve ring inside is provided with waterproof connecting port crimping sleeve, and the connecting port waterproof rubber sleeve ring with Waterproof connecting port crimping sleeve between the connecting place is provided with connecting port waterproof sealing ring.

[0019] Compared with the prior art, the utility model has the advantages of:

[0020] The utility model discloses the positioning hole of control device installation positioning frame center end can provide accurate positioning reference for the installation of device in water transport port. This helps to guarantee the accuracy of device installation position, avoids the problem of poor connection or inaccurate control caused by installation position deviation, improves the efficiency and quality of device installation.

[0021] The structure of the water transport port action control connection port and the nickel-plated jack of the waterproof connection port not only realizes the effective connection of the device and the related equipment of the port, but also enhances the waterproof and corrosion-resistant performance of the jack. In the humid and corrosive environment of the water transport port, the jack can be effectively prevented from rusting and damaging, ensuring the stability and reliability of the connection, reducing the failure and downtime caused by connection problems.

[0022] The control APM processor on the control device integrated circuit board serves as the data processing core and has powerful computing and analyzing capabilities. It can quickly process and analyze a large amount of data collected from the sensor, generate accurate control instructions according to the preset algorithm and rules, realize real-time and accurate control of the water transport port operation process, and improve the efficiency and automation level of port operation.

[0023] The data storage device of the utility model can be used for storing all kinds of relevant data of water transportation port operation process, including historical operation record, equipment parameter, control strategy. These data provide important basis for subsequent data analysis, fault diagnosis and operation optimization. Through the analysis of historical data, experience and lessons can be summarized, operation process can be improved, and the operation management level of the port can be improved.

[0024] The utility model discloses control wireless communication module realizes the wireless data transmission of device and other equipment or remote monitoring center. This makes the management personnel can obtain the relevant data of port operation in real time at remote place, grasps the operation situation in time, and according to need sends control instruction, realizes remote monitoring and control. Greatly improve the convenience and timeliness of management, reduce the labor cost and management difficulty.

[0025] The utility model discloses a series of waterproof and seal, such as port sealing plate, screw waterproof ring, connecting port waterproof rubber sleeve ring, port waterproof sealing bush and connecting port waterproof sealing ring. These structures form multiple waterproof barriers, can effectively prevent moisture and dust from entering the inside of the device, protect the internal circuit and electronic component from the erosion and damage of water. In the humid environment of water transportation port, the stability and reliability of the device are significantly improved, and the service life of the device is prolonged.

[0026] The good waterproof and sealing performance of the utility model not only protects the device itself, but also ensures the stability of the sensor connecting port and the water transportation port action control connecting port data transmission interface. Avoid the signal interference and short circuit problem caused by moisture, ensure the accuracy and reliability of data transmission, thereby providing strong guarantee for the accurate control of port operation.

[0027] Through the real-time monitoring and accurate control of port operation process, the device can adjust operation parameters and process in time according to actual conditions. According to the data of water level sensor, the flood control measures of the port are adjusted, and according to the data of cargo weight sensor, the loading and unloading plan is optimized. This helps to improve the safety, efficiency and resource utilization rate of port operation, reduce operation cost, and improve the overall competitiveness of water transportation port. ACCURACY

[0028] Figure 1 The utility model provides structural schematic drawing for the utility model;

[0029] Figure 2 The utility model provides control device integrated circuit board structure schematic drawing for the utility model;

[0030] Figure 3 The utility model provides port waterproof sealing bush structure schematic drawing for the utility model;

[0031] Figure 4A schematic diagram of the sensor connection port structure of the control device provided by this utility model;

[0032] Figure 5 A schematic diagram of the control connection port structure for water transport ports provided by this utility model.

[0033] The image shows:

[0034] 1. Control device sealed housing; 2. Control device mounting and positioning frame; 3. Positioning hole; 4. Control connection port for water transport and port functions; 5. Waterproof connection port nickel-plated socket; 6. Control device integrated circuit board; 7. Control APM processor; 8. Data storage; 9. Circuit board insertion port; 10. Control wireless communication module; 11. Control device sensor connection port; 12. Port sealing plate; 13. Screw waterproof ring; 14. Housing sealing connection screw; 15. Port latch; 16. Connection port waterproof rubber sleeve; 17. Port waterproof sealing bushing; 18. Waterproof connection port crimp sleeve; 19. Connection port waterproof sealing ring. Detailed Implementation

[0035] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model.

[0036] Therefore, the following detailed description of the embodiments of this utility model is not intended to limit the scope of the claimed utility model, but merely illustrates some embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model. It should be noted that, in the absence of conflict, the embodiments and features and technical solutions in the embodiments of this utility model can be combined with each other. It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

[0037] Example 1: Please refer to Figures 1-5 An artificial intelligence control device for waterway port operations includes a control device sealed housing 1 and a control device mounting and positioning frame 2 located at the tail of the control device sealed housing 1. The control device mounting and positioning frame 2 is characterized in that a positioning hole 3 is installed on the center end of the control device mounting and positioning frame 2, a waterway port operation control connection port 4 is installed below the control device mounting and positioning frame 2, and a waterproof connection port nickel-plated insertion hole 5 is fixed below the waterway port operation control connection port 4.

[0038] The control device integrated circuit board 6 is installed in the control device sealed shell 1. The control APM processor 7 is installed in the upper right driving circuit of the control device integrated circuit board 6, and the data storage 8 is electrically installed on the left side of the control APM processor 7. The circuit board plug-in port 9 is arranged at the center segment of the control device integrated circuit board 6, and the conductive copper wire is installed in the circuit board plug-in port 9.

[0039] The control wireless communication module 10 is electrically installed at the bottom right communication of the control device integrated circuit board 6, the control device sensor connection port 11 is electrically connected at the top end of the control device sealed shell 1, and is connected with the control device integrated circuit board 6. The port sealing plate 12 is connected above the control device sealed shell 1, and corresponds to the control device sensor connection port 11.

[0040] The screw waterproof ring 13 is installed on both sides of the top surface of the control device sealed shell 1, the shell sealing connection screw 14 is arranged in the screw waterproof ring 13, the port lock buckle 15 is fixed on the lower side of the side plate of the shell sealing connection screw 14. The connection port waterproof rubber sleeve 16 is arranged on one side of the control device sealed shell 1, the port waterproof sealing bushing 17 is covered on the bottom end of the connection port waterproof rubber sleeve 16, and the connection port waterproof rubber sleeve 16 is connected with the port lock buckle 15.

[0041] The waterproof connection port crimping sleeve is arranged in the connection port waterproof rubber sleeve 16, and the waterproof connection port sealing ring 19 is arranged at the connection between the connection port waterproof rubber sleeve 16 and the waterproof connection port crimping sleeve 18.

[0042] Working principle: the control device is installed through the control device installation positioning frame 2, the positioning hole 3 at the center end of the positioning frame can be used for accurate positioning installation position, and the accuracy of device installation is ensured. The waterproof connection port plated nickel jack 5 not only plays a connecting role, but also enhances the waterproof and corrosion resistance of the jack through nickel plating treatment, so as to ensure the stability and reliability of the connection.

[0043] The control device integrated circuit board 6 in the control device sealed shell 1 is the core component of the whole device. The control APM processor 7 is located in the upper right driving circuit of the integrated circuit board, which is the core of data processing and control, responsible for analyzing and processing various input data, and generating corresponding control instructions according to preset algorithm and rules.

[0044] Data storage: Data storage 8 is electrically installed on the left side of the control APM processor 7, used to store the relevant data of water port operation process, such as historical operation record, equipment parameter, control strategy. These data can be called by the processor at any time, in order to carry out data analysis and decision-making.

[0045] Circuit connection: the circuit board plug-in port 9 in the center segment of the control device integrated circuit board 6 is installed with conductive copper wire, through which the electrical connection between each electronic component on the integrated circuit board is realized, ensuring the normal transmission of signals.

[0046] The control wireless communication module 10 at the bottom right of the control device integrated circuit board 6 is used for wireless data transmission with other equipment. It can receive instructions from the remote monitoring center, and upload real-time data of port operation process to the monitoring center, realizing remote monitoring and control.

[0047] The control device sensor connection port 11 at the top of the control device sealed outer shell 1 is connected with the control device integrated circuit board 6, used to connect various sensors, such as water level sensor, cargo weight sensor, equipment running state sensor. The sensor transmits the collected port operation environment and equipment state data to the integrated circuit board through the port, for the control APM processor 7 to process.

[0048] The port sealing plate 12 corresponds to the control device sensor connection port 11, which plays a sealing protection role for the sensor connection port, preventing water and dust from entering the port and affecting the stability of data transmission.

[0049] The shell sealing connection screw 14 is arranged in the screw waterproof ring 13 on both sides of the top surface of the control device sealed outer shell 1. The screw waterproof ring can prevent water from entering the inside of the shell through the screw hole. The port lock buckle 15 is fixed below the side plate of the shell sealing connection screw 14, used to fix the connection port waterproof rubber sleeve ring 16.

[0050] The connection port waterproof rubber sleeve ring 16 is covered with a layer of port waterproof sealing bushing 17 at the bottom end, and is connected with the port lock buckle 15, further enhancing the waterproof performance of the connection port. The waterproof connection port crimping sleeve 18 is arranged in the connection port waterproof rubber sleeve ring 16, and the connection between the two is provided with a connection port waterproof sealing ring 19, forming multiple waterproof protection, ensuring that the connection port is not eroded by water in the humid water environment.

[0051] The water transportation port operation process artificial intelligence control device collects various data of port operation through the sensor connection port 11, transmits the data to the control APM processor 7 on the control device integrated circuit board 6 for processing. The processor generates control instructions according to the data and preset rules, and sends them to related equipment through the water transportation port action control connection port 4 to realize the control of the port operation process. At the same time, the control wireless communication module 10 can realize data interaction with the remote monitoring center, facilitating remote monitoring and management by management personnel. The entire device is guaranteed to work stably and reliably in the humid environment of the water transportation port through a series of waterproof and sealing structures.

[0052] Example 2: Water transportation port operation process artificial intelligence control device, working process of water transportation port operation process artificial intelligence control device: the worker installs the positioning hole 3 on the positioning frame 2 of the control device to accurately install the device to the designated position of the water transportation port, ensuring that the device is stable and the installation position meets the structural requirements. Through the water transportation port action control connection port 4 and the waterproof connection port nickel-plated jack 5, the device is reliably connected with the related equipment of the water transportation port, and an electrical connection channel is established for subsequent signal transmission.

[0053] The control device integrated circuit board 6 inside the control device sealed outer shell 1 starts the self-checking program after the device is powered on. The control APM processor 7 starts initialization, loads the system program and initial parameters stored in the data storage 8, and checks whether the communication with the data storage 8 is normal at the same time. The circuit board plug-in port 9 ensures that the electrical connection between each electronic component on the integrated circuit board is normal through the internal conductive copper wire, preparing for subsequent data transmission and processing.

[0054] The control wireless communication module 10 is initialized, searches for available wireless signal frequency bands, and tries to establish a communication connection with the remote monitoring center. If the connection is successful, a signal that the device is ready is sent to the monitoring center. The control device sensor connection port 11 checks whether the connection with various sensors such as water level sensors, cargo weight sensors, and equipment running state sensors is normal. If the connection is normal, the sensors start preheating and prepare to collect data. The various sensors connected to the control device sensor connection port 11 start real-time collection of related data during the water transportation port operation process. The water level sensor collects port water level information, the cargo weight sensor obtains cargo weight data, and the equipment running state sensor monitors the running parameters of the port mechanical equipment. The sensors convert the analog data collected into digital signals and transmit them to the control device integrated circuit board 6 through the control device sensor connection port 11.

[0055] The control APM processor 7 receives data from the sensors, performs preliminary filtering and amplification on the data to remove noise and improve accuracy. The processed data is stored in the data storage 8 for subsequent data analysis and historical data queries.

[0056] The control APM processor 7 analyzes the data stored in the data storage 8 in depth according to pre-set algorithms and rules. It analyzes water level data to determine whether a flood disaster is likely to occur, optimizes loading and unloading plans based on cargo weight data, and predicts equipment failures based on equipment operating state data. At the same time, the control APM processor 7 compares and analyzes historical data and real-time data to identify abnormal situations and potential problems in port operation processes.

[0057] Based on the results of data analysis, the control APM processor 7 makes corresponding control decisions. If it detects that the water level is too high, it may issue instructions to stop part of the port operation or activate flood prevention facilities; if the loading and unloading progress is slow, it may adjust the operating parameters of the loading and unloading equipment or optimize the operation process.

[0058] The control APM processor 7 generates specific control instructions based on the decision results, which are sent to the corresponding port equipment such as loading and unloading machinery, transport vehicles, and gates through the water transportation port action control connection port 4 and the nickel-plated jack 5 of the waterproof connection port. At the same time, the control wireless communication module 10 uploads the decision results and related data to the remote monitoring center, making it easy for management personnel to understand the port operation situation in real time and intervene remotely.

[0059] After receiving the control instructions, the port equipment performs the corresponding operations according to the instructions. The loading and unloading machinery adjusts the loading and unloading speed and intensity, the transport vehicles change the driving route, and the gates open or close according to the water level. In the process of equipment executing instructions, the sensors continuously collect the operating state data of the equipment and feed back to the control device, forming a closed-loop control to ensure that the operation process is carried out according to the predetermined scheme.

[0060] The control device continuously collects various data of port operation through the sensor connection port 11 to monitor the port operation process in real time. The control APM processor 7 continuously analyzes these data to timely discover new abnormal situations and potential problems. The control wireless communication module 10 maintains communication connection with the remote monitoring center and uploads the latest data and state information of port operation in real time.

[0061] Periodically check the state of the waterproof and sealing components on the port sealing plate 12, screw waterproof ring 13, connection port waterproof rubber sleeve 16, port waterproof sealing bush 17, and connection port waterproof sealing ring 19 on the control device sealed outer shell 1. If signs of damage or aging are found on the waterproof and sealing components, replace and repair them in time to ensure that the control device can work normally in the humid water transportation environment.

[0062] The above embodiments are only used to illustrate the technical solutions described in the present application and are not intended to limit the present application. Although the present application has been described in detail with reference to the above embodiments, the present application is not limited to the above specific embodiments. Therefore, any modification or substitution of the present application is allowed; and all technical solutions and improvements that do not deviate from the spirit and scope of the present application are included in the scope of the claims of the present application.

Claims

1. An artificial intelligence control device for waterway port operations, comprising a sealed housing (1) of the control device and a control device mounting and positioning frame (2) disposed at the tail of the sealed housing (1), characterized in that, The control device mounting and positioning frame (2) has a positioning hole (3) installed at the center end. The control device mounting and positioning frame (2) has a water transport port function control connection port (4) installed below it. The water transport port function control connection port (4) has a waterproof connection port nickel-plated plug hole (5) fixed below it.

2. The artificial intelligence control device for waterway port operation process according to claim 1, characterized in that, The control device's sealed outer casing (1) contains an integrated circuit board (6).

3. The artificial intelligence control device for waterway port operations according to claim 2, characterized in that, The control device integrated circuit board (6) has a drive circuit on the upper right side with a control APM processor (7), and a data storage device (8) is electrically installed on the left side of the control APM processor (7).

4. The artificial intelligence control device for waterway port operation process according to claim 3, characterized in that, The control device integrated circuit board (6) has a circuit board plug-in port (9) at the center of the plug-in hole, and a conductive copper wire is installed in the circuit board plug-in port (9).

5. The artificial intelligence control device for waterway port operations according to claim 4, characterized in that, A control wireless communication module (10) is electrically installed at the lower right communication position of the control device integrated circuit board (6), and a control device sensor connection port (11) is electrically connected to the top of the control device sealed housing (1) and is interconnected with the control device integrated circuit board (6).

6. The artificial intelligence control device for waterway port operation process according to claim 5, characterized in that, A port sealing plate (12) is connected above the sealed housing (1) of the control device, and the port sealing plate (12) corresponds to the sensor connection port (11) of the control device.

7. The artificial intelligence control device for waterway port operation process according to claim 6, characterized in that, The control device has a sealed housing (1) with screw waterproof rings (13) installed on both sides of the top surface. The screw waterproof rings (13) are provided with housing sealing connection screws (14). The housing sealing connection screws (14) are fixed with port latches (15) on the lower side of the side plate.

8. The artificial intelligence control device for waterway port operation process according to claim 7, characterized in that, The control device has a waterproof rubber sleeve (16) for connecting ports on one side of the sealed housing (1). The bottom of the waterproof rubber sleeve (16) for connecting ports is covered with a waterproof sealing bushing (17), and the waterproof rubber sleeve (16) for connecting ports is connected to the port latch (15).

9. The artificial intelligence control device for waterway port operation process according to claim 8, characterized in that, A waterproof connection port crimping sleeve is provided inside the waterproof rubber sleeve (16) of the connection port, and a waterproof sealing ring (19) of the connection port is provided at the connection between the waterproof rubber sleeve (16) of the connection port and the waterproof connection port crimping sleeve (18).