摘要:
The invention discloses an intelligent inhaler holster with a system and method to sense, track properties of inhaled air and medication, alert in hostile environments, map medication with personal dynamics, inhaled air and environment for better health, along with predictive and prognostic analytics. The system includes a sensor module to sense various environmental parameters of the personal environment envelope surrounding the individual. The system also includes an inhaler module configured to track the medication taken by the user. The system also has a processing module to collect data from multiple numbers of environmental sensors and further dynamically processes the information from the inhaler module including the time and location from where the user has taken medication. The processing module alerts for deviations, learns the preferred settings, advises based on trends, predictive and prognostic analytics.
摘要:
The invention discloses an intelligent inhaler holster with a system and method to sense, track properties of inhaled air and medication, alert in hostile environments, map medication with personal dynamics, inhaled air and environment for better health, along with predictive and prognostic analytics. The system includes a sensor module to sense various environmental parameters of the personal environment envelope surrounding the individual. The system also includes an inhaler module configured to track the medication taken by the user. The system also has a processing module to collect data from multiple numbers of environmental sensors and further dynamically processes the information from the inhaler module including the time and location from where the user has taken medication. The processing module alerts for deviations, learns the preferred settings, advises based on trends, predictive and prognostic analytics.
摘要:
The system has number of environmental sensors to sense various environmental parameters of the personal environment envelope surrounding the individual and multiple biological sensors to sense biological and physiological condition of the individual. The system includes a personal environment envelop setting module to define preferred settings based on input from the individual. The system has a processing module to process the environmental parameters sensed by the sensors and the preferred settings to generate alerts. The processing module, also receives information from other sources and is capable of dynamically compute recommendations, map these with the preferences of the individual for enabling the preferred conditions. The system also has a server module configured to receive, store, analyze and machine learn from data of the plurality of environmental parameters sensed by the plurality of sensors and the preferred settings along with ambient environmental data from plurality of persons for epidemiology study.
摘要:
The various embodiments of the present system disclose a system for an optimal cooling by a thermoelectric cooling module and an electric fan thereof. The system comprises a thermoelectric cooling module, an electric fan and a housing. The thermoelectric cooling module comprises a plurality of thermoelectric sub-modules, a hot side management module, a cold side management module and an integrated control module. The present invention provides an optimal cooling on the basis of an external weather condition. The present invention further provides an optimal cooling by implementing an efficient fluid circulation mechanism. The present invention also provides a dynamic management over the working of various modules of the said system.
摘要:
The system has number of environmental sensors to sense various environmental parameters of the personal environment envelope surrounding the individual and multiple biological sensors to sense biological and physiological condition of the individual. The system includes a personal environment envelop setting module to define preferred settings based on input from the individual. The system has a processing module to process the environmental parameters sensed by the sensors and the preferred settings to generate alerts. The processing module, also receives information from other sources and is capable of dynamically compute recommendations, map these with the preferences of the individual for enabling the preferred conditions. The system also has a server module configured to receive, store, analyze and machine learn from data of the plurality of environmental parameters sensed by the plurality of sensors and the preferred settings along with ambient environmental data from plurality of persons for epidemiology study.
摘要:
The various embodiments of the present system disclose a system for an optimal cooling by a thermoelectric cooling module and an electric fan thereof. The system comprises a thermoelectric cooling module, an electric fan and a housing. The thermoelectric cooling module comprises a plurality of thermoelectric sub-modules, a hot side management module, a cold side management module and an integrated control module. The present invention provides an optimal cooling on the basis of an external weather condition. The present invention further provides an optimal cooling by implementing an efficient fluid circulation mechanism. The present invention also provides a dynamic management over the working of various modules of the said system.
摘要:
Systems and methods for Indirect Evaporative Cooling and for Two Stage Evaporative Cooling for conditioning fluids such as air are disclosed. The Indirect Evaporative Cooling Systems comprise scalable indirect evaporative heat exchangers formed with polymer substrates that have been treated to render one surface substantially hydrophilic while the other is substantially hydrophobic, with channels for passage of primary (cooled) an secondary (cooling) air streams between them. The Two Stage Evaporative Cooling System comprise an indirect evaporation component where the fluid is pre-cooled indirectly with the abovementioned scalable heat exchangers, followed by a direct evaporation stage where the pre-cooled fluid is further cooled directly by adiabatic evaporative cooling. The device employing these systems is scalable, energy-efficient, uses aseptic materials, filters/clean incoming fluids (e.g. air), circulates disinfected evaporating liquid (e.g. disinfected water and has enhanced performance efficiency.