TY - GEN
T1 - Exploring QoE for power efficiency
T2 - 23rd ACM International Conference on Multimedia, MM 2015
AU - Yan, Zhisheng
AU - Liu, Qian
AU - Zhang, Tong
AU - Chen, Chang Wen
N1 - Publisher Copyright:
© 2015 ACM.
PY - 2015/10/13
Y1 - 2015/10/13
N2 - Display power consumption has become a major concern for both mobile users and design engineers, especially considering the prevalence of today's video-rich mobile services. The power consumption of liquid crystal display (LCD), a dominant mobile display technology, can be reduced by dynamic backlight scaling (DBS). However, such dynamic changes of screen brightness may degrade users' quality of experience (QoE) in viewing videos. How would QoE be impacted by different DBS strategies has not yet been understood clearly and thus obscures the way to achieve systematic power saving. In this paper, we take a first step to explore the QoE of DBS on smartphones and aim at maximally enhancing the display power performance without negatively impacting users' QoE. In particular, we conduct three motivational studies to uncover the inherent relationship between QoE and backlight scaling frequency, magnitude, and temporal consistency, respectively. Motivated by the findings of these studies, we design a suite of techniques to implement a comprehensive DBS strategy. We demonstrate an example application of the proposed DBS designs in a mobile video streaming system. Measurements and user evaluations show that more than 40% system power reduction, or equivalently, 20% more power savings than the non-QoE approaches, can be achieved without QoE impairment.
AB - Display power consumption has become a major concern for both mobile users and design engineers, especially considering the prevalence of today's video-rich mobile services. The power consumption of liquid crystal display (LCD), a dominant mobile display technology, can be reduced by dynamic backlight scaling (DBS). However, such dynamic changes of screen brightness may degrade users' quality of experience (QoE) in viewing videos. How would QoE be impacted by different DBS strategies has not yet been understood clearly and thus obscures the way to achieve systematic power saving. In this paper, we take a first step to explore the QoE of DBS on smartphones and aim at maximally enhancing the display power performance without negatively impacting users' QoE. In particular, we conduct three motivational studies to uncover the inherent relationship between QoE and backlight scaling frequency, magnitude, and temporal consistency, respectively. Motivated by the findings of these studies, we design a suite of techniques to implement a comprehensive DBS strategy. We demonstrate an example application of the proposed DBS designs in a mobile video streaming system. Measurements and user evaluations show that more than 40% system power reduction, or equivalently, 20% more power savings than the non-QoE approaches, can be achieved without QoE impairment.
KW - LCD
KW - Mobile Video Streaming
KW - Power Consumption
KW - QoE
UR - https://www.scopus.com/pages/publications/84962909912
U2 - 10.1145/2733373.2806269
DO - 10.1145/2733373.2806269
M3 - Conference contribution
AN - SCOPUS:84962909912
T3 - MM 2015 - Proceedings of the 2015 ACM Multimedia Conference
SP - 431
EP - 440
BT - MM 2015 - Proceedings of the 2015 ACM Multimedia Conference
PB - Association for Computing Machinery, Inc
Y2 - 26 October 2015 through 30 October 2015
ER -