Split Swimming Pool Lamp Wireless Control Signal Stability
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Solution Overview
Problem
Existing swimming pool lamps are cumbersome to maintain, have unstable wireless signal transmission due to water interference, and lack long-distance control functionality.
Innovation Solution
A split-type swimming pool lamp design with a wireless control component installed outside the pool, allowing for remote operation and stable signal transmission, and featuring a magnetic connection for easy maintenance.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If the wireless control component is installed inside the swimming pool, then the lamp can be controlled, but the wireless signal transmission is unstable due to water interference
Solution Approach 1:
The swimming pool lamp is divided into two independent parts: the lamp body installed in the pool and the wireless control component installed outside the pool. This segmentation allows the control component to be positioned in a environment suitable for wireless signal transmission while the lamp body functions underwater, resolving the contradiction between signal stability and control functionality.
Solution Approach 2:
A wireless signal transmission module serves as an intermediary between the control component outside the pool and the lamp body inside the pool. This intermediary enables stable communication across the water barrier, allowing remote control without direct water interference with the wireless signals.
2Stability of the object's composition
If the lamp is fixed using bolts, then the lamp is securely installed, but maintenance becomes cumbersome requiring bolt removal
Solution Approach 1:
The lamp is segmented into a lamp body and a separate mounting base. The mounting base remains fixed to the pool structure while the lamp body can be easily detached for maintenance. This segmentation maintains secure installation during operation while enabling convenient maintenance by allowing simple removal of the lamp body without dealing with complex bolt removal.
Solution Approach 2:
The connection between the lamp body and mounting base is designed to be dynamically adjustable - securely fixed during operation but easily detachable for maintenance. This dynamic connection characteristic allows the system to transition between stable operation and convenient maintenance modes.
3Ease of operation
If an antenna is provided inside the lamp, then the lamp can receive control signals, but the antenna affects wireless signal transmission causing unstable control
Solution Approach 1:
The wireless control component including the antenna is extracted from the lamp body and positioned separately outside the pool. This extraction removes the source of signal interference from the underwater environment, allowing stable wireless signal transmission to the lamp body while maintaining full remote control capability.
Solution Approach 2:
The wireless signal transmission module acts as an intermediary that receives control signals from the external control component and transmits them to the lamp body. This intermediary system enables reliable communication without requiring the antenna to be positioned in the water, thus avoiding signal interference and instability.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The design enables stable and remote control of the lamp, simplifies maintenance by allowing easy disassembly, and prevents water interference with wireless signals.
Implementation Method 1
a first magnetic member is provided on the first mounting base, a second magnetic member is provided on the wireless control component, the first magnetic member and the second magnetic member are magnetically connected
Implementation Method 2
LED lamp beads, a signal receiving module and a control module are provided on a surface of the lamp panel
Data Source
AI summary
A swimming pool lamp is disclosed, including a lamp body provided in the swimming pool, and a wireless control component for sending and receiving remote control signals. Because the lamp body and the wireless control component are split setup, it can effectively avoid the wireless control component getting into water to affect the signal transmitting and receiving. The lamp body can be remotely controlled by a terminal provided, and the terminal can change luminous effects of LED lamp beads provided on the surface of the lamp panel. A mechanical button is provided on the surface of the lamp body, so that the luminous effects of the LED lamp beads on the lamp panel can be controlled by the mechanical button in conjunction with a control button without using the terminal for remote control, thus realizing a variety of control effects of the swimming pool lamp.


