Method and device for controlling the temperature of the gas flow in medical devices
A method is provided for controlling the gas temperature in medical devices by means of a state observer, e.g., in the field of laparoscopy or respiration, and to devices for carrying-out said method.
1. A method for measuring and controlling the gas temperature in an insufflator for laparoscopy,
wherein a gas is supplied by a gas supply device by means of a supply line to a patient, wherein a gas volume flow is controllable, between 0 and 50 l/min,
wherein the gas is heated from room temperature to a desired temperature of 32-42° C. within the gas supply hose,
wherein when changing the gas volume flow, a time span until the desired temperature is reached is a maximum of 100s,
wherein heating occurs by a heating wire,
wherein a temperature measurement is made by measuring a resistance of the heating wire such that the heating wire used for heating and for performing the temperature measure are a single element,
wherein the heating power of the heating wire is electrically controlled, further comprising
the resistance of the heating wire is an input variable of a mathematical estimation system, which mathematically describes a state space, which estimates the actual temperature at the exit of the hose and controls the heating power of the heating wire by means of this estimated value, wherein the mathematical estimation system is configured as a Luenberger observer.
2. The method according to claim 1 , wherein the gas is CO 2 or an oxygen-containing gas mixture.
3. The method of claim 1 wherein the gas is heated from room temperature to the desired temperature of 37° C. within the gas supply hose.
4. The method of claim 1 , wherein control of the heating wire is performed by a pulse-wide-modulated voltage.
5. An insufflator for laparascopy for supplying gases to patients comprising a gas supply device, a gas supply hose, a heating wire in the supply hose, characterized by that the devices are provided for carrying-out a method according to claim 1 .
6. An insufflator for laparascopy according to claim 5 , wherein at least one microprocessor, at least one memory, and at least one software, which are provided for carrying-out a method according to claim 1 .