Disassembly of Volkswagen Engine ECU and Lynk & Co 360-Degree Imaging System

Disassembly of Volkswagen Engine ECU and Lynk & Co 360-Degree Imaging System

Hello everyone, I am EE Xiaoxin. EEWorld user littleshrimp received an engine ECU from a scrap Volkswagen car. After his thorough disassembly, he discovered many common classic chips, as well as many unique design aspects. (The original post comes from the EEWorld forum, welcome to enter the link to communicate with the author of this … Read more

Exploring the Advantages of Lightweight UAV-SAR Systems

Exploring the Advantages of Lightweight UAV-SAR Systems

Small unmanned aerial vehicles (UAVs) have become very popular in aerial photography, while radar imaging can provide more supplementary information. Therefore, installing radar on UAVs can be applied in fields such as science, agriculture, and environmental monitoring. However, UAV SAR systems are often too heavy and require support from large UAVs. This article introduces a … Read more

Low-Cost NDVI Imaging System for Assessing Plant Health

Low-Cost NDVI Imaging System for Assessing Plant Health

In September 2023, British scholar John D. Stamford published a paper titled Development of an accurate low cost NDVI imaging system for assessing plant health in Plant Methods, proposing a dual-camera NDVI (Normalized Difference Vegetation Index) imaging system based on Raspberry Pi, named NDVIpi, which can be used to compare the health status of crops. … Read more

High-Throughput Imaging System for Plant Seedlings

High-Throughput Imaging System for Plant Seedlings

Technology is fundamental, and innovation is the soul. The “Super Base Team” will participate in the scientific fund project in 2024, aiming to build a low-cost high-throughput phenotyping research system based on Raspberry Pi computers and cameras. This automatic imaging analysis system for plant seedlings provides an efficient and economical solution for large-scale plant phenotypic … Read more

Advancing Non-Invasive Phenotyping of Roots in Dark Environments Using Infrared Imaging

Advancing Non-Invasive Phenotyping of Roots in Dark Environments Using Infrared Imaging

Root phenotype analysis is a challenging task that requires monitoring the growth of roots in darkness to simulate natural conditions while allowing the above-ground parts to grow under light. Most existing methods involve exposing the roots to light, which significantly alters their growth and function. In this paper, we propose an improved imaging system that … Read more