This invention relates to a sports fatigue monitoring and
management system and a sports fatigue monitoring and management method. Firstly, it provides a sports fatigue monitoring and
management system, including an electronic fabric patch, a multimodal sensing module, and a
data transmission and interaction module. The electronic fabric patch can be attached to the
skin surface of a subject, and its
electrode structure forms a multimodal sensing module capable of detecting flowing sweat or directly monitoring the subject's body. The electronic fabric patch uses porous fabric and gradient micropillar structures to dynamically regulate the accumulation of
trace amounts of sweat and the drainage of excessive sweat, simultaneously collecting multidimensional physiological and biochemical indicators such as electromyographic signals, electrolytes, metabolites, and hormones. Additionally, an AI assessment module is deployed, based on a multi-
algorithm fusion model trained using
observation data during the rest-exercise-
recovery process, to identify six types of fatigue-related states and generate intervention plans. In some embodiments, this can reduce fatigue levels by 51.82%, accelerate
chronic fatigue recovery, and is suitable for athlete
training monitoring and
rehabilitation patient exercise management.