교과목 해설
(1) 대학생활과 진로탐색 (College life and career exploration)
(2) 스마트 농산림학 개론 (Introduction to Smart Agroforestry)
The goal of this course is to provide a comprehensive understanding of the basic concepts of smart agriculture and smart forestry, key technologies (IoT, AI, Big Data, drones, etc.), domestic and international industry trends, and future prospects. Through this, students will establish a fundamental understanding of their major, form a new perspective that converges agriculture and forestry, and cultivate the basic knowledge to design a roadmap for their future studies.
(3) 기초 수리 과학 1 (General Maths & Sciences 1)
This course is a subject in which students select math and science-related matters, which are the basics of science and engineering, in consideration of the student’s future career and desired educational course. It is a subject in which students select high-quality math and science and perform them on their own initiative by utilizing our university’s related subjects as well as services that provide external educational content. However, the performance of all classes is the first stage of the open credit system in which the professor in charge checks the progress and provides credits in the form of grade or P/F.
(4) 파이썬프로그래밍기초및실습 (Fundamentals of Python Programming)
The goal of this course is to learn the basic syntax of the Python programming language, which is widely used in data analysis and artificial intelligence, and to cultivate programming skills through hands-on practice with actual agroforestry data. Students will acquire the ability to implement the basic processes of data analysis, such as data collection, preprocessing, and visualization, through programming.
(5) 재배학원론 (Principles of Crop Cultivation)
The goal of this course is to understand the interaction between crop growth and environmental factors (temperature, light, water, soil, etc.) and to learn the basic principles of cultivation techniques for improving crop productivity. Students will acquire scientific knowledge of the entire crop production process, including sowing, seedling cultivation, fertilization, irrigation, and harvesting, to lay the foundation for smart farm operation.
(6) 산림 자원학(Forest Resources)
This course covers comprehensive knowledge regarding the creation, nurturing, protection, and utilization of forests. Students will understand the public and economic value of forests and learn the basic principles and techniques of resource inventory, afforestation, silviculture, and timber harvesting for sustainable forest management, thereby building a foundation for precision forestry.
(7) 농업 데이터 이해와 활용(Understanding and Utilizing Agricultural Data)
This course aims to understand the types and characteristics of structured and unstructured agricultural data generated from various sources such as smart farms, drones, and sensors, and to learn how to collect, refine, analyze, and utilize this data for decision-making. Students will understand the concept of data-driven agriculture and cultivate data literacy through hands-on data analysis practice using statistical techniques.
(8) 기초 수리 과학 2 (General Maths & Sciences 2)
This course is a subject in which students select math and science-related matters, which are the basics of science and engineering, in consideration of the student’s future career and desired educational course. It is a subject in which students select high-quality math and science and perform them on their own initiative by utilizing our university’s related subjects as well as services that provide external educational content. However, the performance of all classes is the second stage of the open credit system in which the professor in charge checks the progress and provides credits in the form of grade or P/F.
(9) 식물 생리학(Plant Physiology)
This course provides an in-depth study of the physiological mechanisms involved in plant growth, development, and environmental responses(photosynthesis, respiration, transpiration, nutrient uptake, hormone action, etc.). By understanding the principles of plant life activities, students will establish the scientific basis for smart farm environmental control and crop growth modeling.
(10) 토양학(Soil Science)
This course aims to understand the physical, chemical, and biological properties of soil and to learn its effects on plant growth. Students will acquire knowledge necessary for the sustainable management of soil resources, including soil formation, classification, fertility management, soil pollution, and conservation, thereby laying the foundation for precision fertilization and soil management.
(11) 농산림 IoT 시스템(Agroforestry IoT Systems)
This course involves understanding the principles of IoT technology applied in agroforestry fields and conducting hands-on practice to design and build systems that collect data and control devices using sensors, actuators, communication modules, and microcontrollers (e.g., Arduino). Through this, students will cultivate the hardware and firmware control capabilities necessary for developing and operating smart equipment.
(12) 지역특화작물 재배환경 진단 및 관리 (Diagnosis and Management of Regional Specialty Crop Cultivation Environments)
In this course, students will collaborate with farms cultivating Goesan’s representative specialty crops (e.g., Daehak Chal Corn, Cheonggyeol Chili) to conduct a project that collects and analyzes growth environment data from actual farmlands using IoT sensors. By defining problems in teams, diagnosing the causes of poor growth based on data, and proposing improvement measures to the farmers, students will develop practical problem-solving skills throughout the entire process.
(13) 스마트팜 환경제어공학 (Smart Farm Environmental Control Engineering)
This course covers the engineering principles and systems for precisely controlling environmental factors (light, temperature, humidity, CO2, nutrient solution, etc.) inside smart farms (greenhouses, plant factories). Students will understand the structure of complex environmental control systems, design automatic control logic based on sensor data, and explore optimal environmental management strategies considering energy efficiency.
(14) 산림 생태학(Forest Ecology)
The goal of this course is to understand the interactions between biotic and abiotic components of forest ecosystems, material cycling, and energy flow. Students will analyze the impacts of climate change on forest ecosystems and learn scientific management strategies for biodiversity conservation and enhancement of ecosystem services.
(15) GIS와 원격탐사 1 (GIS and Remote Sensing 1)
This course covers the fundamental principles of Geographic Information Systems (GIS). Students will engage in hands-on practice using open-source software like QGIS to process and analyze spatial data in the agroforestry sector, such as farmland parcel management, forest resource distribution analysis, and crop yield prediction.
(16) 스마트 드론 산림모니터링 실습 (Smart Drone Forest Monitoring Practice)
In this course, students will conduct a project to detect early-stage forest disease damage, such as pine wilt disease, by capturing images of forest areas with multispectral or hyperspectral cameras mounted on drones and analyzing the acquired image data. By experiencing the entire process of precision monitoring—from flight planning, data processing, and AI-based image analysis to report writing—students will cultivate interdisciplinary technology application skills.
(17) 수경 재배학(Hydroponics)
This course provides an in-depth study of the principles and technologies of hydroponic systems, which cultivate crops using nutrient solutions without soil. Students will understand nutrient solution composition and management, the characteristics of different growing media, and various hydroponic methods (NFT, DFT, aeroponics, etc.). Through hands-on practice operating actual hydroponic systems and managing crop growth, they will develop competencies as plant factory operation specialists.
(18) GIS와 원격탐사 2 (GIS and Remote Sensing 2)
This course aims to provide an understanding of precision forestry concepts and mastery of Remote Sensing and LiDAR data acquisition, processing, and analysis techniques. Students will conduct hands-on practice using drone and terrestrial LiDAR to precisely measure key forest resource information in 3D, such as tree height,DBH, and stand volume. This will cultivate the data analysis skills necessary for decision-making in smart forest management, including resource inventory, disaster prediction, and optimal harvesting plans.
(19) 농산림 빅데이터 분석(Agroforestry Big Data Analytics)
This course covers methods for analyzing large-scale data from the agroforestry sector—such as growth, environmental, meteorological, and distribution data—using statistical and machine learning techniques. Through hands-on practice developing growth prediction models, pest and disease outbreak prediction models, and more using R and Python, students will strengthen their expertise as data scientists.
(20) 스마트 양묘장 설계 및 운영실무 1, 2 Smart Nursery Design and Operation Practice 1, 2
In this course, teams will design, build, and operate a smart nursery system for the stable production of high-quality seedlings. Students will create a system that automatically controls irrigation, light, and temperature using IoT technology, and develop an optimal seedling protocol by growing actual seedlings and analyzing their growth data.
(21) 스마트팜 시설설계 (Smart Farm Facility Design)
This course covers the essential knowledge required for designing smart farm facilities (glasshouses, plastic greenhouses, vertical farms) during new construction or renovation. Students will learn methodologies for optimally designing structures, covering materials, environmental control systems, and cultivation systems, considering crop type, regional climate, and budget, and will practice drafting plans using tools like CAD.
(22) 산림재해관리 (Forest Disaster Management)
This course aims to understand the causes and mechanisms of major forest disasters such as wildfires, landslides, and forest pests, and to learn prediction, prevention, response, and recovery techniques using advanced technologies like GIS, remote sensing, and AI. Students will develop the ability to analyze disaster risk and establish management plans using real data, such as from the Korea Forest Service’s digital integrated slope management information system.
(23) 농식품 유통과 마케팅 (Agri-food Distribution and Marketing)
This course focuses on understanding the distribution structure of agri-food from producer to consumer and studies cases of distribution innovation using smart technologies (e.g., cold chain, blockchain traceability). It also cultivates skills in developing marketing strategies to enhance the added value of agri-food products, including consumer trend analysis, branding, and online marketing.
(24) 스마트농산림 캡스톤디자인 1, 2 (Smart Agroforestry Capstone Design 1, 2)
This is a year-long comprehensive design course where students work in teams to solve real-world problems presented by industry or the local community. By mobilizing their major-specific knowledge, students experience the entire process of planning, designing, implementing, analyzing results, and presenting, allowing for a comprehensive evaluation of their engineering problem-solving and collaboration skills
(25) 스마트농산림 현장실습 (Smart Agro-Forestry Field Practice)
Students gain practical work experience by working full-time for one semester at major-related industries, such as smart farm solution companies, precision forestry consulting firms, or national/public research institutes. They apply the theories and skills learned in school to the field, experience the latest industry trends, and enhance their competitiveness for employment
(26) 스마트농산림 취업포트폴리오설계 (Smart Agro-Forestry Employment Portfolio Design)
Students systematically organize their internship experiences and academic achievements from their four years of study (e.g., PBL, capstone design outcomes) to create a career portfolio that highlights their unique strengths. They will learn practical job preparation skills such as resume and cover letter writing, and interview techniques, and hone their real-world skills through mock interviews.
(27) 스마트농산림 비즈니스모델 (Smart Agro-Forestry Business Model)
This course teaches how to discover promising startup items in the smart agroforestry sector and establish concrete business models through market analysis, customer definition, value proposition, and revenue model design. Students will validate the feasibility of their business ideas using startup planning tools such as the Business Model Canvas and the Lean Startup methodology.
(28) 농식품 창업 법규·인허가 실무 (Agri-Food Startup Regulations and Licensing Practice)
This course covers essential legal and institutional knowledge for starting and managing a business in the agri-food sector, including the establishment of agricultural corporations, farmland laws, food sanitation acts, and intellectual property rights. Students will understand and explore strategies to effectively utilize various government and local authority startup support policies and R&D funding programs.
(29) 농식품 스타트업 기술창업 및 투자 이해 (Understanding Technology Startups and Investment in Agri-Food)
(Based on the developed business models, students will engage in practical training to write business plans and deliver presentations (IR pitching) to persuade investors. The course aims to provide an understanding of the investment ecosystem in the agri-food sector, including venture capital and angel investment, and to teach strategies and negotiation skills for securing actual funding.)
