IBM releases artificial intelligence microscope to speed up the process of detecting marine water resources in China

Recently, IBM released an artificial intelligence microscope, which can observe the different behavioral responses of plankton in the sea under different environments, and timely analyze and predict the health status of ocean water.

At present, the sensor for detecting water quality used in the world can detect specific chemical substances in water, but cannot detect foreign or new chemical substances, and collect data and analyze them in time. The IBM research team said that through AI microscopy, researchers can identify different species and track their movement in three dimensions. With these findings, humans can better understand the behavior of plankton, such as how they react to environmental changes caused by various factors such as temperature, oil spills, and overflows.

According to Simone Bianco, who designed this AI microscope, plankton can be used as a sensor for environmental and chemical changes by quickly calculating a mathematical model of the shape change of plankton in a three-dimensional space. The new microscope has no lens and relies on an imaging chip to capture the shadows that plankton travels from the front of the chip, producing a healthy digital sample without focusing. After obtaining the digital samples, the local analysis and data interpretation are realized by high-performance, low-power AI technology, and any abnormalities are reported in real time, and corresponding countermeasures are proposed.

IBM officials claim that in the next five years, this small independent AI microscope will be deployed around the world to continuously monitor the water resources that are vital to human survival, thus helping humans to predict the threats to water supply.

The release of artificial intelligence microscopes will speed up the process of detecting marine water resources in China.

Electric Vehicle Wiring Harness

The electric vehicle wiring harness is the blood vessel of the electric bicycle. Through this blood vessel, the power of the battery is output to the motor, control system, lighting signal system, and auxiliary system to drive and control the vehicle. The carrier of this blood vessel is the electric vehicle wiring harness. Electric vehicle wiring harnesses are divided into main wiring harnesses and branch wiring harnesses, which should be classified according to the system configuration of electric vehicles. The main wiring harness is divided into battery power supply system wiring harness, power switch wiring harness, control system main supply wiring harness; branch wiring harness is divided into lighting signal wiring harness, control system signal wiring harness, combination switch wiring harness, etc. The wiring harness of the lighting signal system can be divided into headlights, front turn signals, rear lights, rear turn signals, brake lights, license plate light harnesses, etc. Plastic connectors are generally used between the wiring harness and the wiring harness and between the wiring harness and the electronic components. Generally, manufacturers use different numbers of holes in connectors to distinguish them. Most of the main circuit harnesses of the whole vehicle are centered on the controller and extend to the front and rear of the vehicle body respectively.

As the main carrier of power output on electric vehicles, FAKRA Wiring Harness is one of the key components for the performance and safety of the entire vehicle. The requirements of electric vehicle high-voltage wiring harnesses, voltage, current, temperature, and working life , Shielding effect, flexibility, bending resistance, identification, etc. All of them are indispensable. Its wires, terminals, connectors, and other raw materials must meet environmental standards for use in order to ensure the safety of electric vehicles.
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Kable-X Technology (Suzhou) Co., Ltd , https://www.kable-x-tech.com