2020-21

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    Smart Medical Assistant Using IoT
    (NHCE, 2020) ABY K MATHEW 1NH17EE702 KISHORE KUMAR S 1NH17EE719 SRI KUBER SINGH C 1NH17EE750
    Almost all our families have elderly parents and other members who suffer from some kind of ailments which can be cured or sustained by taking medications that are prescribed by a doctor. These medications must be taken at the right time for the body to react to the medication accordingly. Sometimes, elderly parents may forget or even find it difficult to take the right medication that is prescribed to be taken at a particular time. In such circumstances, caretakers or children guide/remind them to take the right medicine at the right time. But in some cases where a caretaker is unavailable or the children are at their workplace and or carrying out their own activities, it may not be possible for the elderly parents or sometimes even sick members to take their medication appropriately. Although there are pill organiser boxes available in the market where one must arrange and sort the medicines according to the time and day that the patient or elder must take, but even then, it is not completely reliable as the caretaker may sometimes mix the medicine and the patient may end up having the wrong medicine. These pill boxes do not play the function of reminding or assisting a patient or an elderly parent. Considering the above problems, we have come up with a solution to assist the user to take their medications without any hassle. This project aims on creating a medical assisting solution for those people who require attention/guidance when it comes to taking the right medication on time. This system is useful for those who have to take care of elderly parents or patients who have daily jobs and other activities to take care of and also for those who cannot afford a caretaker. With a simple design and approach, it can meet the requirement of assisting anyone suffering from ailments who require guidance to take their medicine on time.
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    Smart Irrigation System
    (NHCE, 2020) MANOJKUMAR S BIRADAR 1NH17EE723 PRIYANSHU RANJAN 1NH17EE735 SAHIL RAVI KUMAR 1NH17EE746 SANKET KUMAR SINGH 1NH17EE747
    IOT based Smart Grid is an evolution of the existing electricity grid. Advancement in high speed communication and low cost sensor coupled with the increased deployment of the advanced provide utilities with better information to manage the grid. It comprises of a communication where electricity and information are exchanged by the consumer and utility to maximize efficiency. The control center ensure the smart grid optimize circuit VAR flow and voltages, there by power theft can be monitored with help of the current sensor and smart system. Introducing microcontroller and IOT interface in the electrical grid makes the grid as smart grid. The important information are sent to cloud, collected by current sensors and voltage sensor by using microcontroller. So, the Data Analytics is performed by the cloud, which gives the information of the electrical grid.
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    IoT Based Power Monitoring System for Smart Grid Application
    (NHCE, 2020) NEERAJ .R 1NH17EE729 ABDUL SHUKOOR 1NH17EE700 MADHU .M 1NH17EE720 SUHAS K SIDDAMAL 1NH17EE752
    IOT based Smart Grid is an evolution of the existing electricity grid. Advancement in high speed communication and low cost sensor coupled with the increased deployment of the advanced provide utilities with better information to manage the grid. It comprises of a communication where electricity and information are exchanged by the consumer and utility to maximize efficiency. The control center ensure the smart grid optimize circuit VAR flow and voltages, there by power theft can be monitored with help of the current sensor and smart system. Introducing microcontroller and IOT interface in the electrical grid makes the grid as smart grid. The important information are sent to cloud, collected by current sensors and voltage sensor by using microcontroller. So, the Data Analytics is performed by the cloud, which gives the information of the electrical grid.
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    A Novel Fault Tolerant Solution for Underground Transmission System Monitored by GSM
    (NHCE, 2020) Vandita Manohar 1NH17EE755 Muhammad Maaz 1NH17EE725
    With the advancement of technology and beautification of the developing countries, India is now advancing towards adapting the underground system of cables or transmission lines to transfer power from the power station to the required places and equipments. With the advancing of technology comes new problems which need solutions. The underground cable system can be more efficient than the over head transmission lines. however, other than the external faults there can be faults that can arise in the cables due to certain issues which will be discussed further in the report. Tolerating fault that occurs above the ground is easy as it is visible to the naked eye but that is not the case when it comes to analysing the fault that occurs below the ground. They need to be dug through in places that seem to be faulty and that assumptions may not always be right. To solve this issue we have designed an underground fault detection system that will take signals from the sensors attached at a specific distance on the cables which is then connected to the relays. The relays will pick up the high surge in either voltage or current and then send the relay impulses to the Arduino which is already fed with a code that will assist in calculating the accurate distance of the fault from the base station and inmate the operators. This will save time and allow uninterrupted flow of power to the required places. This project is designed keeping in mind the concept of smart engineering where we are not going to be using a lot of expensive components rather we are working with minimal to provide the maximum result as it can be made available for a lesser cost and be accurate which will also help in sales. To the Arduino we will be attaching a GSM module in the next phase will allow us to get the SMS of the location of the fault which will be sent directly through the Arduino. The underground fault tolerant system will help in minimising the time taken for maintenance and also it will be easy to operate making it non dependable as anyone with basic knowledge can use it and fix the problem without any delay.
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    IOT Based Power Line Monitoring and Control System for AC Loads
    (NHCE, 2020) C. ARUN SAI 1NH17EE709 CH. GOWTHAM CHANDU 1NH17EE710 N. PRUTHVEESH 1NH17EE726 O. GOPI KRISHNA 1NH17EE731
    Because of the increasing advances in technology, smart power line systems are increasingly being used. These systems allow technicians, administrators, and managers to monitor the performance of AC power a safe system. The monitoring system is very important when working in the field of AC power line. In our project implementation, we are making a automatic system for monitoring the AC power line and in case of any fault detected the system will automatically switch off the load. The Internet of Things (IoT) has been considered as the third revolution in the digital technology after the computer and the Internet, and it brings significant advantages to smart grid. Disaster prediction and prevention of power-lines is one of the most difficult problems for electricity transmission companies. Advanced sensing and communication technologies of IoT can effectively avoid or reduce the damage of natural disasters to the power-lines, and hence improve the reliability and stability of power transmission. In this paper, a three-layer architecture model of the Internet of things for smart grid (SG-IoT) is proposed. An IoT based power-lines online monitoring system is presented
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    Intelligent Agriculture Field Monitoring System Based on IoT Technology
    (NHCE, 2020) VENKATESH M 1NH18EE420 MAHAN H S 1NH17EE721 ABDUL RAZAK 1NH18EE411
    Our nation's backbone is agriculture. Some 70% of India's income comes from agriculture. We propose a model in this project that prevents crop spoilage because of heavy and uneven rainfall. With the Embedded System architecture, this objective is achieved using IOT technology As we are moving into newer and newer technology in the world of automation and engineering almost everything is being automated. We live in a world where everything can be controlled and operated automatically, but there are still a few important sectors in our country where automation has not been adopted or not been put to a full-fledged use, perhaps because of several reasons one such reason is cost. One such field is agriculture which has been one of the primary occupations of man since early civilizations and even today, manual interventions in farming are inevitable. In many rural areas in India there is scarcity of power and water. Due to this problem farmer’s life gets affected as he is not able to provide sufficient water for his crops in the agriculture field. Due to the fluctuations in the power supply the costlier motors and other related equipment’s may get damaged due to the over voltage or under voltages or due to the phase change over .
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    Instant Disinfection and Sanitization Robot
    (NHCE, 2020) ANSHUMAN BISWAL 1NH17EE704 AMARTYA THAKUR 1NH17EE703 UTKARSH BHARDWAJ 1N1H7EE065 HIMAGANI MISHRA 1NH17EE715
    In today’s pandemic situation around the globe, as countries introduce measures to restrict movement as part of efforts to reduce the number of people infected with COVID-19, many of the people are trying to make huge changes into their respective daily routines. Covid -19 pandemic has led to the high loss of human life and certainly the percentage of Frontline workers mainly containing the group of persons who have been in the sanitization and disinfection field. As they are directly in contact with the infected place and thus having the highest chance amongst all of getting infected, and moreover this group is the major source of spreading the virus, despite of being supplied with all the protective gears. Thus, we came up with the idea of sanitizing and disinfecting a particular size of area without humans even coming in the area of infection which is Instant Disinfection and Sanitization Vehicle. This vehicle will be controlled by a person standing at a very safe distance, this vehicle on command purpose will spray the solution required for sanitization purpose and will disinfect the place and for complete disinfection UV rays will be used. Thus, Human Intervention to the maximum or near to null can be attained and thus making frontline workers safer from any kind of infection. This Vehicle doesn’t only serve the purpose regarding Covid-19 virus and pandemic but it also serves the purpose regarding every other transmissible disease which can be harmful to humans. Foreign. - Hospitalward for tuberculosis patient which is an air borne disease and can harm the health workers at most. Thus, making the ward safely sanitized and disinfected at the same time.
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    Initialise of Cockpit Voice Recoder
    (NHCE, 2020) SUPROVO BANERJEE 1NH16EE749 SUMIT BHAWAL 1NH17EE753 DILKASH IMAM 1NH16EE715
    Automobiles and technologies are creating a new level of the data services in vehicles. The Cockpit Voice Recorder box has functions which is similar to an airplane black box. It is used to analyse the cause of accidents. This project proposes a model of a Car black box system that can be installed into the cars. The aim of the project is to achieve accident analysis by objectively tracking what occurs in the vehicles. In addition to this, the Cockpit Voice Recorder system sends an alert message to the user mobile that is connected through Bluetooth module, in case of occurrence of an accident. The black box system also uses GPS sensor to collect location data. The car black box system mainly helps the insurance companies with their car crash investigations and also records the road status in order to prevent or decrease death rates. In this project we will be continuously monitoring the vehicle performance using sensors and the behaviour of the driver with the use of IoT technology
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    Implementation of Smart E-Vehicle Charging Station Powered By Renewable Energy
    (NHCE, 2020) VINITH G A 1NH17EE756 PRAGATHI PRAKASH 1NH17EE733 MEGHANA I L 1NH17EE724 DIVYA S V 1NH17EE713
    Electric vehicles are a moderately on-going innovation that is looking for its spot on the lookout. It has a few favourable circumstances, for example, the decreased nursery outflows, fuel reserve funds and its convenience. Lately, establishment of sustainable power offices is expanding quickly in light of the development to stifle the arrival of nursery gasses answerable for the warming of the earth and to save petroleum products, which are becoming progressively valuable. Besides, the expense of photovoltaic frameworks is diminishing step by step. Along these lines, it is accepted that cost of photovoltaic force will be falling later on. Nonetheless, in Japan, the enormous measure of surplus power from photovoltaic frameworks applies an awful impact on the force network. In this project, an EV charging station using sustainable power is proposed. The proposed EV charging station draws energy from photovoltaic frameworks and wind turbine at a low cost and uses that ability to charge a fixed battery. At that point the force is being utilized to charge electric vehicles; it also presents a few opportunities for electric force supply from sustainable wellsprings of electric vehicle charging stations. This project also introduces an energy management and control method for power supply of electric vehicles charging station. Solar photovoltaic arrays and wind turbine are integrated to replace energy from fossil fuel and decrease pollution from carbon emissions. An additional main supply is also added in order to maintain regular power supply to the system, here we are using proteus software to simulate the circuit.
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    Design Of Automatic Home Energy Management System Using Renewable Energy For Effective Energy Conservation
    (NHCE, 2020) Vikeshkumar 1NH18EE421 Ravi S.H 1NH18EE419 Altamash Pasha 1NH16EE062 Shreyas Y.N 1NH17EE749
    Now a day’s non pollution power production is popular because of less pollution and eco- friendly. This paper shows a replacement system configuration of the front-end rectifier stage for automatic energy management system of renewable energy source. In today’s technology driven world electricity is one of the foremost things for our day-to-day life activities. As we all are oblivious of the very fact that the renewable sources of energy are depleting at a lightning- fast rate. So, it’s time for us to shift the target from conventional to non-conventional sources of energy to supply electricity. The output of the electricity produced by non-conventional sources is smaller amount than their counterparts. Renewable sources don’t have any detrimental effect on the environment. Solar-wind and main automatic energy management system of renewable energy is basically an integration of solar plant and a wind energy plant. It will help in providing the uninterrupted power supply. As during bad inclemency conditions, the assembly are often shifted from one source to other with the help of a microcontroller. A microcontroller ensures the optimum utilization of resources and it also increases the efficiency of the combined system as compared to the individual mode of generation. It helps in decreasing the dependence on one single source and makes the system more reliable. The system can be used for both industrial and domestic applications. This configuration allows the two or more sources to supply the load depending on the availability of the energy sources and priority
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    Automation System in Agricultural Field For Effective Power Consumption
    (NHCE, 2020) RISHABH YADAV – 1NH17EE742 PRACHI ANIL PANDIT – 1NH17EE732 NEERAJ – 1NH17EE728 RAMYA MANUR – 1NH17EE740
    IOT also known as Internet of Things, basically is referred to two main things. They are Learning and Interaction. It includes interaction with a large number of things which include Services, sensors, actuators,etc. It actually defines a specific type of network of physical Objects connected together which can gather and collect information or data. It also includes other objects present in the Internet. In this way, with the help of IoT, we can collect and transfer or exchange the data between these physical devices and this process is being used in our Agricultural Automation project. As multiple technologies, machine learning, systems that are embedded, etc nowadays are converging, the things used in IoT have evolved. As there are various types of problems related to the privacy or security in this field, every now and then industries as well as government try to overcome this issue and international standards are getting more developed. In this project, we are focusing on how this interaction and learning of things present on internet can help us connect different types of devices on their respective Platforms. By doing so, it will help the humans in different varieties of fields such as home automation, networking, data monitoring, etc . The best part of this project is that it needs very less efforts made by man and gives comfort at a very high level. In this project, we have developed an extension box which will enable two way switching operation. An IoT Android app “Agro IoT” is made where user can add any number of buttons for the equipments without any limitations to control the loads in the field. We are also going to attach a camera and humidity sensor. In this way, any abnormal activity or intrusion in the field can be avoided by monitoring of the fields. The sensor will check the soil moisture and will automatically control the motor to water the crops. Applications in farming are numerous. Energy can be saved at large extent by using this project in real time.
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    Automatic Face Mask Detection
    (NHCE, 2020) RANDHIR KUMAR YADAV 1NH17EE741 MOHAMMED ARBAS 1NH17EE066 ROHAN ASHISH 1NH16EE743
    Today in this pandemic stricken world where we have to be at most careful until there is a cure there is a precaution and that brings us to follow the recipes that call Standard operating procedures that wearing a mask brings the maximum safety to an individual from contacting the novel coronavirus. and often people tend to be chaos in wearing a simple mask that can help them from be safe from disease and especially at large gathering of public places such as airports, bus stations and at the big public gathering the unlock unlock of every single public order now. .so this poses a great threat as well as challenge for the health bodies as well as events to a curb the spread of coronavirus project is the first phase o technologies in the wake of covid-19 among this project present machine learning based automatic face mask detection.
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    AI Based Smart Mirror Using Raspberry Pi
    (NHCE, 2020) BHARATH SURYA 1NH17EE706 KAVITA SAH 1NH17EE718 RAKSHA S 1NH17EE745 SHAUN PHILIPOSE JOHN 1NH17EE748
    Smart mirror is a wall mounted mirror which displays weather, time, news and other areas of interests. A smart mirror is basically a mirror with a screen behind it. That screen can be an Android tablet or a computer monitor. The objective of the Smart mirror is to give a passageway to a client to gather practical data that could influence the course of their everyday life. The idea of the smart mirror is presented with regards to the worldwide studies that guarantee men spend approx. The proposed framework is to plan an intuitive advanced brilliant mirror with man-made consciousness utilizing Raspberry Pi. In the proposed framework, the capacity of the framework to recognize the client and react as far as the main job, joining the hypothesis of man-made brainpower. Intelligent registering, with remotely associated inserted gadgets that are being utilized in different everyday exercises. In light of this innovation, numerous gadgets/items are currently arising and with this knowledge it is giving agreeable, secure and helpful individual administrations all over. The venture targets making a keen framework for clients where it perceives the client utilizing mediums like OpenCV. The mirror will perceive client's face and it will be prepared utilizing Raspberry Pi and show client's feeds. Client's test pictures will be put away in data set. This paper demonstrated a smart mirror device with a user-friendly architecture with many impressive features. Following a service-oriented approach, a stable and easy-to-use architecture was also introduced in this article. Since we are utilizing this mirror in a school climate, fundamental functionalities like a standardized tag scanner or unique finger impression sensor can be incorporated to satisfy essential assignments like school participation or program enlistments, and so on This could incorporate enrolling in programs by checking ID cards
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    Agricultural 3 Phase Motor Control System
    (NHCE, 2020) Vinod Choudhary S (1NH17EE757) Rahul Rajkumar(1NH18EE418)
    As we know that India is an agricultural based country and its most of resource depends on agricultural outputs. From rapid development in agriculture in India many automatic technology has been implemented in agricultural production. As the total rainfall in various area may be either ill-timed or insufficient. Does in order to get maximum yield, it is necessary to supply optimum quantity of water and also maintain correct timings of water input. It is possible only if systematic irrigation process is done by collecting water when excess rainfall and release it to crops when they required. The science of planning and designing of an efficient, low cost, economic systems are tailored to fit natural condition. From the construction of proper distributed system, the yield of crops may increased due to controlled water supply
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    2-wire Ac distribution for protection -using isolation transformer
    (NHCE, 2020) THOMAS ALLWIN ANTO – 1NH17EE754 ABHILASH MITHARE – 1NH17EE701
    There are many circumstances that can lead to electrical accidents. It is subsidiary to identify and document kenned hazardous conditions that will be engendered in electrical facilities and equipment. Conditions that can be reproduced in a laboratory, intended to duplicate genuine-life conditions, can be acclimated to enhance cognizance of the possible hazards and they can withal facilitate manufacturers to develop safer and more fire-resistant electrical systems. The desideratum for electrical energy is sizably voluminous due to advancements in technology, which are mainly electrically driven. This advancement has equipollently established high electrical accidents, due to unsafe working conditions and practices followed at work. Hence, the desideratum to truncate the accidents at workplaces becomes a desideratum in order to increment productivity and make the environment safe for household dwellers and workers. Isolated extension supply is a contrivance used to isolate a domestic AC distribution supply system from the ground connection. The objective of this contrivance is to increment electrical safety especially for the users of the pieces of equipment. An endeavor has been made in this thesis to propose a simple isolated extension supply which averts electrical accidents to the users and the types of equipment.
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    Implementation of G to V conversion system Using bidirectional topology for EVS
    (NHCE, 2020) DHARSHANGOWDAK 1NH17EE711 BHEEMANAGOUDA 1NH18EE412 HEMANTHKG 1NH18EE414 JAYAKUMARREDDY 1NH18EE416
    Inourdaytodaylives,securityisoneoftheprimeconcerns.Wewanttoensure safetytothefullest. Doorcontrolaccessisanimportantlinkageinthesecuritychain.Apasswordbased doorlock microcontrolleris a system thatpermits access to only authorizedusersintosecured/restrictedareas. Thissystem isentirelymanagedbythe8-bitmicrocontrollerAT89C2051,ithas 2KbytesofROM.TheusergivenpasswordisusuallystoredintheEPROM soit canbechangedasperourconvenience.Thesystem includesakeypadthat intakesthepassword.Onenteringthepassword,ifmatchedwiththeonestored inthememorythentherelayturnsonandopensthedoor.Theuserwouldhave toenterthepre-setpasswordbeforeenteringandleavingtheareatobeextra carefulandavoidintrusion. Thisisadigitallocksystem andthesesystemscaneasilybeoperatedthrough oursmartphonesaswellwhichconvenientlyavoidstheneedtocarrykeys aroundeverywhereandrisktoloseit. Makinguseofproperintelligenceandincorporatingitwithmoderntechnology canavoidmanyproblemsalthoughhavesomedisadvantage
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    Automated Agribot for Agriculture Automation
    (NHCE, 2020) NAME:Suhas G USN:1NH17EE751 NAME:Jyothi Patil USN:1NH17EE716 NAME:Jagadeesh USN:1NH18EE415 NAME:Chethan H E USN:1NH18EE413
    Agriculture is a most important field in life of human being .It is a backbone of our country economy system. In this project work we have focused on Agriculture processes and tried to solve the problem. In this Project we have used battery powered wheels, dc motor inbuilt in these wheels and Arduino UNO is used to control the system process. It also provides manual control when required and keep tabs on the humidity with the help of humidity sensors.
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    Automatic Power Factor Compensation for Industrial Power
    (NHCE, 2020) NITHIN C 1NH17EE414 HITLER SAHANI MANJHI 1NH16EE065 HARSHAVARDHAN S 1NH17EE021 VISHNU KUMAR KANTI 1NH15EE067
    Automatic power factor controller project is designed to improve power factor automatically whenever power factor falls below a certain level. As you know demand of electrical energy is increasing day by day. More and more inductive loads are being used in industry and domestic applications. Inductive loads are main reason for low power factor in power system. Therefore we need to develop a method to improve power factor automatically. Automatic power controller project provides solution to this problem. Low power factor includes unnecessary burden on power system and transmission lines. By improving power factor of power system automatically, power system efficiency can be improved. In this project, power factor correction prototype is developed using pic microcontroller, relays, transformer, current transformer and zero crossing circuit.
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    Automation Using Vision System
    (NHCE, 2020) ANKUR YADAV 1NH17EE006 POOJA KUMAR KAGE 1NH17EE038 SANGAM JAIN 1NH17EE050 SOHAN A JINGADE 1NH17EE054
    In this extremely developing society time and man power area unit crucial constrains for completion of task in massive scales. The automation is enjoying necessary role to save lots of human efforts in most of the regular and often carried works. one among the most important and most ordinarily performed works is selecting and putting of jobs from supply to destination. The choose and place mechanism could be a PLC based mostly mechatronic system that detects the item, picks that object from supply location and places at desired location. The main exploration during this project is regarding discovering the item and putting it within the desired fashion as well as an outline of the recently programmed behaviors. The reports include the outline of the movement of axis that is employed for selecting and putting of objects employing a vision system, along side an outline of the integrated system. It then continues with an outline of the aspects of the software system used for simulation as well as axis arm mechanisms, their motor and servo actuators.
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    Cobots To Assisst with Healthcare Workers
    (NHCE, 2020) SRIDARAN P 1NH17EE037 POOJA V 1NH17EE039 SRIRAM SP 1NH17EE048 SARIKA M 1NH17EE049
    During the pandemic, many industries have faced their challenges, the highly affected being the healthcare industry. Major challenge for healthcare workers is wearing the PPE (personal protective suits) while treating the patients in intensive care unit (ICU). The corona virus pandemic has also increased the need for PPE suits worldwide. To minimize the physical contact between patients and healthcare workers in the isolation ward and to collect infectious wastage inside the isolation ward, collaborative robots can be used to assist with healthcare workers in monitoring the patients and in reducing the exposure to severe acute respiratory syndrome corona virus. Collaborative robots or cobots can monitor patient statistic and alert nurses when there's a requirement for human presence, allowing a nurse to watch multiple patients simultaneously, allowing a nurse to monitor multiple patients simultaneously. Cobots may be seen moving through hospital corridors carrying supplies. Cobots have also started assisting surgeons, which permit the surgeons greater precision and a better success rate with their operations