TY - JOUR AU - Yuan, Rongdi AB - The heat load of the car compartment is complex and difficult to express with mathematical models. Therefore, this paper establishes a compartment physical model of an electric car through Amesim and simulates the heating process of the heat pump air conditioning system. Because the load of the passenger compartment of the car is complex and changeable, and the heat pump air-conditioning is a large inertia, hysteretic system. This study designs fuzzy rules and uses fuzzy PID to control the temperature of the passenger compartment. Fuzzy PID control has 1.6% less overshoot than PID control and 39 seconds less setting time. At the same time, this paper establishes a thermal comfort model of cabin temperature and humidity. It uses PMV (predicted average vote) and PDD (dissatisfied percentage) thermal comfort index to evaluate the passenger cabin’s thermal comfort. The PMV index controlled by fuzzy PID is more stable than the PMV controlled by PID. TI - Research on vehicle cabin temperature and thermal comfort optimal control based on fuzzy PID JF - Journal of Physics: Conference Series DO - 10.1088/1742-6596/1865/3/032039 DA - 2021-04-12 UR - https://www.deepdyve.com/lp/iop-publishing/research-on-vehicle-cabin-temperature-and-thermal-comfort-optimal-mthYtNMJQJ SP - 032039 VL - 1865 IS - 3 DP - DeepDyve ER -