腕戴設(shè)備中振動(dòng)反饋感知評(píng)價(jià)研究
發(fā)布時(shí)間:2018-06-03 22:23
本文選題:人機(jī)交互 + 腕戴設(shè)備; 參考:《昆明理工大學(xué)》2017年碩士論文
【摘要】:隨著移動(dòng)計(jì)算與人機(jī)交互技術(shù)的快速發(fā)展,可穿戴設(shè)備成為了繼智能手機(jī)、平板電腦之后,科技界的另一個(gè)熱點(diǎn)。微型化、便攜化等特性使得可穿戴設(shè)備成為真正的UGC(用戶生成內(nèi)容),可以無(wú)時(shí)無(wú)刻地收集用戶創(chuàng)造的內(nèi)容。與此同時(shí),此類設(shè)備的信息輸出方式卻極為有限,缺乏良好的用戶體驗(yàn)。直接高效的觸覺(jué)反饋可以免受外界環(huán)境的干擾,是移動(dòng)交互環(huán)境中傳遞信息的理想反饋方式。振動(dòng)反饋是如今可穿戴設(shè)備中最為常見的反饋之一,但現(xiàn)有的大多數(shù)腕帶設(shè)備振動(dòng)模式單一,所能傳遞的信息只有"振動(dòng)"與"未振動(dòng)"兩種。為了研究腕帶設(shè)備對(duì)于復(fù)雜信息的傳遞,我們?cè)O(shè)計(jì)了一款腕帶原型系統(tǒng)。通過(guò)將四個(gè)振動(dòng)馬達(dá)嵌入在腕帶的不同位置,可產(chǎn)生多種振動(dòng)模式,如單個(gè)馬達(dá)振動(dòng)形成的"點(diǎn)振動(dòng)"模式及多個(gè)馬達(dá)按順序依次振動(dòng)所形成的"環(huán)形振動(dòng)"模式等等;诖送髱г偷闹饕ぷ鞒晒缦:第一,通過(guò)先導(dǎo)實(shí)驗(yàn)驗(yàn)證其他振動(dòng)參數(shù)(如振動(dòng)強(qiáng)度)對(duì)振動(dòng)模式識(shí)別的影響,得出無(wú)明顯區(qū)別的振動(dòng)強(qiáng)度僅影響模式識(shí)別時(shí)間,對(duì)識(shí)別正確率無(wú)顯著影響。第二,通過(guò)實(shí)驗(yàn)對(duì)多種振動(dòng)模式(九種)的感知度進(jìn)行差異性評(píng)估,得出易被用戶區(qū)分的振動(dòng)類型順序?yàn)?"點(diǎn)振動(dòng)"類型、"全振動(dòng)"類型、"對(duì)角振動(dòng)"類型、"環(huán)形振動(dòng)"類型。第三,通過(guò)之前的工作,保留并改進(jìn)了五種振動(dòng)模式,評(píng)估五種模式在靜止?fàn)顟B(tài)下和運(yùn)動(dòng)狀態(tài)下的感知差異,得出靜止?fàn)顟B(tài)下對(duì)振動(dòng)的感知程度要明顯優(yōu)于運(yùn)動(dòng)狀態(tài)。本研究是腕帶設(shè)備中振動(dòng)反饋交互的基礎(chǔ)研究,對(duì)此類設(shè)備傳遞復(fù)雜信息的設(shè)計(jì)具有一定指導(dǎo)意義。
[Abstract]:With the rapid development of mobile computing and human-computer interaction technology, wearable devices have become another hot spot in science and technology after smartphones and tablets. Miniaturization and portability make wearable devices a true UGC (user-generated content) that collects user-generated content all the time. At the same time, the information output of such devices is very limited, lack of good user experience. Direct and efficient tactile feedback is an ideal way to transmit information in mobile interactive environment. Vibration feedback is one of the most common feedback in wearable devices nowadays, but the vibration mode of most wrist band devices is single and the information can only be transmitted by "vibration" and "non-vibration". In order to study the transmission of complex information in wristband equipment, we designed a prototype system of wristband. By embedding the four vibration motors in different positions of the wristband, a variety of vibration modes can be produced, such as the "point vibration" mode formed by the vibration of a single motor and the "ring vibration" mode formed by the sequential vibration of several motors. The main results based on the prototype are as follows: first, the effects of other vibration parameters (such as vibration intensity) on vibration pattern recognition are verified by pilot experiments, and the results show that no obvious difference in vibration intensity only affects the pattern recognition time. It has no significant effect on the recognition accuracy. Secondly, by evaluating the perception of many kinds of vibration modes (nine) through experiments, it is concluded that the order of vibration types that are easy to be distinguished by users is: "point vibration" type, "full vibration" type, "diagonal vibration" type, "ring vibration" type. Thirdly, through the previous work, five vibration modes are retained and improved, and the difference of perception between the five modes in the static state and the moving state is evaluated. It is concluded that the perception of vibration in the static state is obviously superior to that in the moving state. This research is the basic research of vibration feedback interaction in wrist band equipment, and has certain guiding significance for the design of transmitting complex information of this kind of equipment.
【學(xué)位授予單位】:昆明理工大學(xué)
【學(xué)位級(jí)別】:碩士
【學(xué)位授予年份】:2017
【分類號(hào)】:TP368.33
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