This study was conducted to provide a basis for raising farm income by increasing the yield and extending the cultivation period by creating an environment where crops can be cultivated normally during high temperatures in summer. The maximum cooling load of the multi-span greenhouse with a floor area of 504 m2 was found to be 462,609 W, and keeping the greenhouse under 32°C without shading the greenhouse at a high temperature, it was necessary to fog spray 471.6 L of water per hour. The automatic fog cooling control device was developed to effectively control the fog device, the flow fan, and the light blocking device constituting the fog cooling system. The fog cooling system showed that the temperature of the greenhouse could be lowered by 6°C than the outside temperature. The relative humidity of the fog-cooled greenhouse was 40-80% during the day, about 20% higher than that of the control greenhouse, and this increase in relative humidity contributed to the growth of cucumbers. The relative humidity of the fog cooling greenhouse during the day was 40-80%, which was about 20% higher than that of the control greenhouse, and this increase in relative humidity contributed to the growth of cucumbers. The yield of cucumbers in the fog-cooled greenhouse was 1.8 times higher in the single-span greenhouse and two times higher in the multi-span greenhouse compared to the control greenhouse.
본 논문에서는 선박의 안전운항을 위하여 안개 발생 시 엔진을 자동으로 제어하여 피해를 최소화하거나 회피할 수 있도록 자동 제어 시스템을 설계 및 제작 하였다. 제작된 동력 자동제어시스템은 ATmega128과 RPM감지회로를 사용하여 안개발생부에서 인위적으로 안개를 발생시켜 RPM의 변화량을 측정하였다. 이를 위하여 전체구성도를 작성하였으며 홀센서가 있는 모터를 사용하여 PWM 제어를 하 도록 ATmega128에 Source code를 적용시켰다. 추후, 제작된 동력 자동제어장치를 통하여 실제 선박에서의 실험 및 안전성평가를 마련할 계 획이다.