Innovative Design of Smart Kitchen Home Products Based on New Media Interaction

ZHANG Jun

Packaging Engineering ›› 2026, Vol. 47 ›› Issue (14) : 395-405.

PDF(1534 KB)
PDF(1534 KB)
Packaging Engineering ›› 2026, Vol. 47 ›› Issue (14) : 395-405. DOI: 10.19554/j.cnki.1001-3563.2026.14.033
Design Discussion

Innovative Design of Smart Kitchen Home Products Based on New Media Interaction

  • ZHANG Jun*
Author information +
History +

Abstract

The work aims to design an integrated smart home product to meet the modern family's demands for efficiency, safety and convenience, and enhance the user's home living experience. Firstly, the KJ method (affinity diagram method) was adopted to conduct user demand research and classification, ensuring comprehensive collection of users' functional and usage demands for smart kitchen home products. Then, the FAHP (fuzzy analytic hierarchy process) was utilized to quantitatively analyze and rank the collected demands, clarifying the importance of each demand. Finally, the product's appearance design was carried out through Kansei Engineering to ensure a balance between functionality and aesthetics, meeting the aesthetic requirements of modern home environments. Through the comprehensive application of the KJ method, FAHP and Kansei Engineering, a smart kitchen home product that meets the demands of modern families is successfully designed, enhancing the convenience and safety of home life. It is highly integrated with the aesthetic standards of modern home environments and has broad market application prospects and innovative value.

Key words

new media interaction / smart kitchen / home products / safety protection / KJ/FAHP/Kansei Engineering

Cite this article

Download Citations
ZHANG Jun. Innovative Design of Smart Kitchen Home Products Based on New Media Interaction[J]. Packaging Engineering. 2026, 47(14): 395-405 https://doi.org/10.19554/j.cnki.1001-3563.2026.14.033

References

[1] 宋阿媛. 基于“人工智能+”赋能下的智能家具设计发展趋势研究[J]. 家具与室内装饰, 2024, 31(9): 54-58.
SONG A Y.Research on the Development Trend of Smart Furniture Design Empowered by "Artificial Intelligence+"[J]. Furniture & Interior Decoration, 2024, 31(9): 54-58.
[2] 吴志军, 彭浩. 智能厨房适老化设计策略研究[J]. 家具与室内装饰, 2024, 31(4): 85-91.
WU Z J, PENG H.Research on Aging-friendly Design Strategies for Smart Kitchens[J]. Furniture & Interior Decoration, 2024, 31(4): 85-91.
[3] 田心如, 谢云峰, 赵项. 基于用户需求的智能家具产品设计路径研究[J]. 家具与室内装饰, 2023, 30(11): 15-21.
TIAN X R, XIE Y F, ZHAO X.Research on the Design Path of Smart Furniture Products Based on User Demands[J]. Furniture and Interior Decoration, 2023, 30(11): 15-21.
[4] 金奕, 徐娟芳, 刘征. 基于CHC-AHP的智慧厨房产品适老化设计原则研究[J]. 家具与室内装饰, 2022, 29(7): 42-48.
JIN Y, XU J F, LIU Z.Research on Aging-friendly Design Principles of Smart Kitchen Products Based on CHC-AHP[J]. Furniture & Interior Decoration, 2022, 29(7): 42-48.
[5] NOZICA D, BLAZEVIC D, KESER T.Industrial-Grade Edge Computing Device for Smart Furniture Products[J]. Applied Sciences, 2025, 15(8): 4355-4355.
[6] 祁忆青, 徐然, 俞大飞. 家具产业数字化转型与智能制造[J]. 家具与室内装饰, 2021, (8): 68-71.
QI Y Q, XU R, YU D F.Digital Transformation and Intelligent Manufacturing of Furniture Industry[J]. Furniture and Interior Decoration, 2021, (8): 68-71.
[7] 李冰. 数字时代下的互动装置艺术应用研究[J]. 家具与室内装饰, 2021, (2): 15-17.
LI B.Research on the Application of Interactive Installation Art in the Digital Age[J]. Furniture and Interior Decoration, 2021, (2): 15-17.
[8] 彭凌, 程钰凌. 新媒体语境下《食品包装学》互动教学模式研究[J]. 包装工程, 2020, 41(增刊1): 78-81.
PENG L, CHENG Y L.Research on Interactive Teaching Mode of "Food Packaging" in the Context of New Media[J]. Packaging Engineering, 2020, 41(S1): 78-81.
[9] 史明熙, 李贺, 郭绮涵, 张鹏, 李京勇. 基于KJ法和A-Kano模型的健康管理系统界面情感设计研究[J]. 包装工程, 2025, 46(8): 403-413.
SHI M X, LI H, GUO Q H, et al.Research on Emotional Design of Health Management System Interface Based on KJ Method and A-Kano Model[J]. Packaging Engineering, 2025, 46(8): 403-413.
[10] 谢文婷, 徐聪. 基于KJ-AHP-VIKOR集成法的老年智能厨电产品设计研究[J]. 包装工程, 2024, 45(22): 411-419.
XIE W T, XU C.Research on the Design of Elderly Intelligent Kitchen Appliances Based on the KJ-AHP- VIKOR Integration Method[J]. Packaging Engineering, 2024, 45(22): 411-419.
[11] 冯雪, 刘长蒂. 面向独居青年的智能烹饪器具设计研究[J]. 包装工程, 2024, 45(8): 478-487.
FENG X, LIU C D.Research on the Design of Smart Cooking Appliances for Young People Living Alone[J]. Packaging Engineering, 2024, 45(8): 478-487.
[12] 刘文良, 马雪寒. 基于KJ-KANO模型的亲子家居文创产品设计研究[J]. 家具与室内装饰, 2024, 31(3): 72-77.
LIU W L, MA X C.Research on the Design of Parent-Child Home Cultural and Creative Products Based on the KJ-KANO Model[J]. Furniture and Interior Decoration, 2024, 31(3): 72-77.
[13] GUO H.Research on Ecological Design of Intelligent Manhole Covers Based on Fuzzy Analytic Hierarchy Process[J]. Sustainability, 2024, 16(13): 5310-5310.
[14] 樊佳爽. F-AHP/QFD/TRIZ集成在儿童滑板车创新设计中的应用[J]. 包装工程, 2024, 45(14): 186-193.
FAN J H.The Application of F-AHP/QFD/TRIZ Integration in the Innovative Design of Children's Scooters[J] Packaging Engineering, 2024, 45(14): 186-193.
[15] 梁佳, 宋绪丁, 朱武威. 模糊层次分析法在高校智能办公椅设计评价中的应用[J]. 包装工程, 2023, 44(6): 144-150.
LIANG J, SONG X D, ZHU W W.Application of Fuzzy Analytic Hierarchy Process in the Design Evaluation of Intelligent Office Chairs in Colleges and Universities[J]. Packaging Engineering, 2023, 44(6): 144-150.
[16] 万青蓝, 武月琴. 基于感性工学和模糊层次分析法的汽车皮革座椅肌理设计研究[J]. 皮革科学与工程, 2025, 35(1): 98-106.
WAN Q L, WU Y Q.Research on the Texture Design of Automobile Leather Seats Based on Sensory Engineering and Fuzzy Analytic Hierarchy Process[J] Leather Science and Engineering, 2025, 35(1): 98-106.
[17] 刘宗明, 陈旭辉. 基于感性工学和层次分析法的模块化家具设计[J]. 包装工程, 2024, 45(8): 141-149.
LIU Z M, CHEN X H.Modular Furniture Design Based on Sensory Engineering and Analytic Hierarchy Process[J]. Packaging Engineering, 2024, 45(8): 141-149.
[18] 符思捷, 宛瑞莹, 熊先青. 基于感性工学的侘寂风客厅家具创新设计与评价[J]. 家具与室内装饰, 2023, 30(11): 34-39.
FU S J, WAN R Y, XIONG X Q.Innovative Design and Evaluation of Wabi-sabi Style Living Room Furniture Based on Sensory Engineering[J]. Furniture and Interior Decoration, 2023, 30(11): 34-39.
[19] 陈璐璐, 裴学胜. 基于感性工学的学生厨具设计研究[J]. 设计, 2023, 36(19): 104-107.
CHEN L L, PEI X S.Research on Student Kitchenware Design Based on Sensory Engineering[J]. Design, 2023, 36(19): 104-107.
[20] 邱保金, 李学坤, 帅敏. 基于TRIZ理论与KJ法的办公区域储物柜创新设计[J]. 包装工程, 2022, 43(24): 385-391.
QIU B J, LI X K, SHUAI M.Innovative Design of Office Area Lockers Based on TRIZ Theory and KJ Method[J]. Packaging Engineering, 2022, 43(24): 385-391.
[21] 付自由, 兰建义, 王放. 改进模糊层次分析法在绿色包装评价中的应用[J]. 包装工程, 2021, 42(1): 230-236.
FU Z Y, LAN J Y, WANG F.Application of Improved Fuzzy Analytic Hierarchy Process in Green Packaging Evaluation[J]. Packaging Engineering, 2021, 42(1): 230-236.
[22] WANG Q M, DAI J H, XU Z H.A new three-way multi- criteria decision-making method with fuzzy complementary preference relations based on additive consistency[J]. Information Sciences, 2022(592): 277-305.
[23] 王雅辉, 钱宇华, 刘郭庆. 基于模糊优势互补互信息的有序决策树算法[J]. 计算机应用, 2021, 41(10): 2785-2792.
WANG Y H, QIAN Y H, LIU G Q.Ordered Decision Tree Algorithm Based on Fuzzy Complementary Advantage Mutual Information[J]. Journal of Computer Applications, 2021, 41(10): 2785-2792.
[24] 彭守平, 孙秉珍, 葸娟霞. 基于区间值的改进模糊BWM多标准决策方法及其应用[J]. 模糊系统与数学, 2020, 34(5): 77-89.
PENG S P, SUN B Z, Xi Juanxia.Improved Fuzzy BWM Multi-criteria Decision Method Based on Interval Values and Its Application[J]. Fuzzy Systems and Mathematics, 2020, 34(5): 77-89.
[25] 刘鑫. 基于KANO-QFD-TRIZ集成理论的儿童家具设计研究[J]. 包装工程, 2025, 46(12): 162-172.
LIU X.Research on Children's Furniture Design Based on KANO-QFD-TRIZ Integrated Theory[J]. Packaging Engineering, 2025, 46(12): 162-172.
[26] 成雨田, 石林. 基于FKANO-EWM-TRIZ的多感官体验儿童家具创新设计研究[J]. 包装工程, 2025, 46(8): 283-293.
CHENG Y T, SHI L.Research on Innovative Design of Multi-Sensory Experience Children's Furniture Based on FKANO-EWM-TRIZ[J] Packaging Engineering, 2025, 46(8): 283-293.
[27] 周雨石, 张婧, 范亦萌, 李文嘉. 神经设计学在家具设计中的应用研究: 进展、热点与未来趋势[J]. 林产工业, 1-14.
ZHOU Y S, ZHANG J, FAN Y M, et al.Research on the Application of Neural Design in Furniture Design: Progress, Hotspots and Future Trends[J] Forest Products Industry, 1-14.
[28] 郭梦迪. AIGC视域下水印版画语言在新中式家具设计中的创新应用[J]. 包装工程, 2025, 46(6): 396-404.
GUO M D.Innovative Application of Waterprint Print Language in the Design of New Chinese-Style Furniture from the Perspective of AIGC[J] Packaging Engineering, 2025, 46(6): 396-404.
[29] 杨钦, 汤繁稀. 基于KE/Kano模型的瑶绣文化元素家具设计研究[J]. 家具与室内装饰, 2024, 31(8): 48-55.
YANG Q, TANG F X.Research on Furniture Design Based on KE/Kano Model of Yao Embroidery Cultural Elements[J]. Furniture and Interior Decoration, 2024, 31(8): 48-55.
[30] 张婉玉, 杨国庆. 基于NCS色彩体系的老年家具色彩设计方法[J]. 林产工业, 2024, 61(2): 61-67.
ZHANG W Y, YANG G Q.Color Design Method for Elderly Furniture Based on NCS Color System[J]. Forest Products Industry, 2024, 61(2): 61-67.
PDF(1534 KB)

Accesses

Citation

Detail

Sections
Recommended

/