Health-related issues are a top priority for anyone in the world, and if there is any issue related to health, then solutions should be found as soon as possible. Medicine is one of the most important causes of recovery, so storing medicines of the highest possible quality is necessary. Storing medicines is very important for the hospital because they are used for hormones, viruses, and ointments, which are of great value to the hospital's sustainability and must always be preserved. This study designed and implemented a system to continuously control and monitor sensitive atmospheric information for drug storage, such as temperature, humidity, and light exposure. The system starts by reading the environment sensors around the drug store by the microcontroller. Then the microcontroller passes the data to the fuzzy logic. Mamdani-type fuzzy control is implemented to control and monitor devices that are used on fuzzy rules. The system has the ability to send an alarm when any of the temperature and humidity-related parameters are higher or lower than normal. The data collected using this system is sent via two methods: the first is the website platform, and the second is GSM notification. Drug storage is designed and implemented using a microcontroller and IoT sensors. During the system analysis phase, the SWOT method was utilized to obtain user perspectives and preferences, which were then incorporated into the system output specifications for the development phase. This approach helped to identify the necessary system requirements. During the implementation phase of the system and to measure the capabilities of the system, the technique of measuring the system usability scale was used, with the contribution of 22 users of the system, and the percentage recorded as general satisfaction with the system was 91%. The new system improves the overall quality of drug storage, reduces the risk of drug deterioration to patients' health, and reduces the incidence of adverse events associated with drug mismanagement.
The rapid development of internet of things (IoT) technology over the course of recent history has made it possible to connect a large number of smart things and sensors, as well as to establish an environment in which data can be seamlessly exchanged between them. This has led to an increase in the demand for data analysis and storage platforms such as cloud computing and fog computing. One of the application areas for the internet of things that has garnered a lot of interest from the business world, academic institutions, and the government is healthcare. The IoT and fuzzy logic are being used in the medical business to improve patient safety, the overall quality of care, and the overall efficiency of medical operations. The most important healthcare studies that are pertinent to pharmacies have been used as the basis for this research. The purpose of this research is to investigate recent advancements in medical modules, remotes, and detector patterns, as well as current innovations in IoT and fuzzy logic-based health care, and current policies from around the world, with the intention of determining how well they support the long-term growth of IoT and fuzzy logic in healthcare.
2023-03
Thesis
2023-06-22
Fuzzy Logic System for Drug Storage Based on the Internet of Things
Health-related issues are a top priority for anyone in the world, and if there
is any issue related to health, then solutions should be found as soon as possible.
Drug is one of the most important causes of recovery, so storing drug of the
highest possible quality is necessary. Storing drug is very important for the
hospital because they are used for hormones, viruses, and ointments, which are of
great value to the hospital's sustainability and must always be preserved.
In this thesis, a system was developed to continuously control and monitor
sensitive atmospheric information such as temperature, humidity, and light for
drug storage. A Mamdani-type fuzzy control is implemented to control and
monitor devices that are used on fuzzy rules. Drug storage is designed and
implemented using a microcontroller and IoT sensors. During the system analysis
phase, the SWOT method was utilized to obtain user perspectives and preferences,
which were then incorporated into the system output specifications for the
development phase. This evaluation helped to identify the necessary system
requirements.
The system has the ability to send an alarm when any of the temperature
and humidity-related parameters are higher or lower than normal. The data
collected using this system is sent via two methods: the first is the website
platform, and the second is GSM notification. During the implementation phase
of the system and to measure the capabilities of the system, the technique of
measuring the system usability scale was used, with the contribution of 22 users
of the system, and the percentage recorded as general satisfaction with the system
was 91%. The new system improves the overall quality of drug storage, reduces
the risk of drug deterioration to patients' health, and reduces the incidence of
adverse events associated with drug mismanagement.