Acknowledgement
본 논문은 정부(과학기술정보통신부)의 재원으로 한국연구재단의 지원을 받아 수행된 연구임(No. 2019R1A2C1005598).
References
- Cho, Y. K., Kim, K., Ma, S., & Ueda, J. (2018). A robotic wearable exoskeleton for construction worker's safety and health. In C. Wang, C. Harper, Y. Lee, R. Harris, & C. Berryman (Eds.), Construction Research Congress 2018: Safety and Disaster Management (pp. 19-28). Red Reston, VA: American Society of Civil Engineers.
- Choi, S.-A., Kim, T.-g., Park, Y.-M., Shin, J.-Y., & Park, S. (2016). Functional underwear development for elderly woman from 3D body model applying PCM treatment. Fashion & Textile Research Journal, 18(4), 457-467. doi:10.5805/SFTI.2016.18.4.457
- Chun, H. W. (2013). Defence.IT convergence: Focus on military robots. Electronics and Telecommunications Trends, 28(4), 107-117.
- Eom, R.-i., & Lee, Y. (2020a). Mapping of human contact areas for application field of wearable robots. International Journal of Costume and Fashion, 20(2), 11-22. doi:10.7233/ijcf.2020.20.2.011
- Eom, R.-i., & Lee, Y. (2020b). Investigation of development direction for wearable robot based on soldier's work status. Journal of the Korean Society of Clothing and Textiles, 44(6), 1178-1188. doi:10.5850/JKSCT.2020.44.6.1178
- Hong, M. B., Kim, G. T., & Yoon, Y. H. (2019). ACE-Knee, a novel modularized knee exoskeleton: Concept design and analysis of design requirements by knee motion analysis. Journal of the Korean Society for Precision Engineering, 36(4), 373-381. doi:10.7736/KSPE.2019.36.4.373
- Kim, E.-H., Kim, S.-S., Kwon, M.-S., Baek, S.-C., Wi, U.-R., Kim, J.-T., & Kim, T.-W. (2011). Analysis of the influence of combat used backpacks have on the human gait. The Korean Journal of Physical Education, 50(6), 409-418.
- Kim, H., & Kim, J.-Y. (2017). Development of an intelligent legged walking rehabilitation robot. Transactions of the Korean Society of Mechanical Engineers A, 41(9), 825-837. doi:10.3795/KSME-A.2017.41.9.825
- Kim, H. S., Koo, D. S., Nam, Y. J., Cho, K.-J., & Kim, S. (2019). Research on technology status and development direction of wearable robot. Fashion & Textile Research Journal, 21(5), 640-655. doi:10.5805/SFTI.2019.21.5.640
- Kim, K., Mun, J., & Kim, G. (2009). A preliminary study of military physical fitness factors. Korean Journal of Military Art and Science, 65(2), 61-81. doi:10.31066/kjmas.2009.65.2.003
- Kim, K., Kim, Y., Kim, H., Ahn, T., Lee, S., Choi, K., ... Hwang, S. (1990). A study on the functional design process and performance evaluation of army's training wear. Journal of the Korean Society of Clothing and Textiles, 14(2), 104-116.
- Kim, M., Kim, D.-E., & Choi, H. S. (2016). A study on the wearing conditions of weight training compression wear for men in their 20s. Journal of the Korean Society of Clothing and Textiles, 40(5), 775-787. doi:10.5850/JKSCT.2016.40.5.775
- Kim, M.-J., Kang, B.-H., Kim, O.-S., Seo, K.-W., & Kim, J.-Y. (2017). Design and control of a wearable robot for stair-climbing assistance. Journal of the Korean Society of Manufacturing Technology Engineers, 26(1), 89-99. doi:10.7735/ksmte.2017.26.1.89
- Kim, S.-H., & Lee, J.-H. (2020). Designing smart sportswear to support the prevention of sports injuries in badminton club activities. Science of Emotion and Sensibility, 23(3), 37-46. doi:10.14695/KJSOS.2020.23.3.37
- Kim, S.-Y. (2001). A study on the safety of manual ammunition handling (Unpublished master's thesis). Kyonggi University, Suwon.
- Kim, W. G., Lee, J. R., & Rho, K. S. (1963). Determination of energy metabolic rate in various military activities. The Seoul Journal of Medicine, 4(3), 57-61.
- Koo, Y.-S. (2011). The effect of compression wear for the sport performance and muscle function. Textile Coloration and Finishing, 23(1), 60-68. doi:10.5764/TCF.2011.23.1.060
- Kwon, S.-y., Lim, C.-g., Shin, D.-w., & Jung, H.-m. (2011). A study on the actual wearing conditions of Korean military tank driver's clothing. Journal of the Korean Society for Clothing Industry, 13(4), 582-589. doi:10.5805/KSCI.2011.13.4.582
- Lee, D. W., Jung, J. Y., Kim, B. S., Son, Y. K., & Shin, H. C. (2017). Trends in wearable assistive robotics technology. Electronics and Telecommunications Trends, 32(4), 21-30. doi:10.22648/ETRI.2017.J.320403
- Lee, J. H., Jun, J. I., & Choi, K. (2014). An analysis of compression wear designs and structural elements. Fashion & Textile Research Journal, 16(3), 421-433. doi:10.5805/SFTI.2014.16.3.421
- Lee, T., Lee, D., Song, B., & Baek, Y. S. (2020). Design and control of a polycentric knee exoskeleton using an electrohydraulic actuator. Sensors, 20(1):211. doi:10.3390/s20010211
- Lee, Y.-G., & Shin, S.-H. (2020). Effect of the pressure intensity of compression wear on kinematic variables in running. The Korea Journal of Sports Science, 29(3), 919-927. doi:10.35159/kjss.2020.06.29.3.919
- Lee, Y. H. (2020). R&D trends and technology development plan on portable fuel cell for future soldier system. Journal of the Korea Academia-Industrial cooperation Society, 21(6), 618-624. doi:10.5762/KAIS.2020.21.6.618
- Moon, B. D. (2016, January 26). 외골격 로봇이 미래 전쟁 바꾼다 [Exoskeleton robots will change the war of the future]. Sedaily. Retrieved from https://www.sedaily.com/NewsVIew/1KRCZ4UXEW
- Seid, K., & Das, A. K. (2017). Design and evaluation of wearable exoskeleton to augment load carrying capacity for ground force soldiers. International Journal of Engineering Science and Computing, 7(8), 14537-14544.
- Seo, C. S. (2016, September 28). 야노시호-추성훈, 감탄 나오는 우월한 '명품 바디라인' [Shiho Yano-Seonghun Chu, a superior 'luxury body line' with admiration]. FashionN. Retrieved from https://www.fashionn.com/board/read_new.php?table=1006&number=17679
- Song, Y.-E., & Chu, M.-S. (2009). The effects of the jean patterns on muscle activity of the lower limbs during walking. Journal of the Korean Society for Clothing Industry, 11(6), 911-917.
- Sung, B.-J., Lee, D.-T., & Kim, B.-J. (2017). Effects of schedules of 400 kilometer military march training on lower body function and mental toughness in Korean special force soldiers. Journal of The Korean Society of Living Environmental System, 24(3), 425-432. doi:10.21086/ksles.2017.06.24.3.425
- Svecova, J., Lopourova, R., & Halatova, S. (2020). Evaluation of feeling of comfort of military sportswear users during physical activity. Fibres and Textiles, 27(3), 119-126.
- Yi, J. M., & Kim, G. S. (2016). Factors influencing musculoskeletal symptoms in military personnel during basic combat training. Journal of Korean Academy of Nursing, 46(4), 523-533. doi:10.4040/jkan.2016.46.4.523
- Yoo, D. (2019). Effects of firefighting equipment and muscular fatigue on movement of the lower extremity joints while walking. Journal of the Korean Society of Hazard Mitigation, 19(5), 137-142. doi:10.9798/KOSHAM.2019.19.5.137
- Yoon, Y. H. (2018). Back support exoskeleton robot for soldiers: Military applicability analysis. Journal of the Korean Society for Precision Engineering, 35(10), 925-931. doi:10.7736/KSPE.2018.35.10.925
- Zheng, W., Ren, B., Dong, H., Liu, M., & Sun, S. (2018). Dynamic analysis and research of lower extremity exoskeleton robot. International Journal of Science, 5(1), 161-166.