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Energy-Aware Video Encoding for Image Quality Improvement in Battery-Operated Surveillance Camera

机译:能量监控型视频编码,可提高电池供电监控摄像机的图像质量

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Growing needs for surveillance in locations without power lines necessitates the development of a surveillance camera with extremely low-power consumption and an assured stable operation until the time of expected run-out of available energy. This paper proposes an algorithm for scheduling of video encoding configurations in a battery-operated surveillance system to reduce the image distortion while assuring the sustained operation until the battery recharge/exchange. The optimal video encoding configuration is determined based on the amount of estimated remaining event duration (considering the uncertainty of events) and remaining battery charge (considering the rate-capacity and recovery effect). The proposed algorithm consists of two steps: design-time step and run-time step. In the design-time step, prediction of remaining event duration, called duration prediction, is performed considering the uncertainty of events and tradeoff between encoding power and image quality. During run-time, video encoding configuration is switched between intra-frame encoding and inter-frame encoding based on the duration prediction obtained in design-time step and the remaining battery charge measured in run-time step. Compared to the conventional method based on the most conservative duration prediction , experimental results show that the proposed method provides 2.24~3.78 dB improvement in the image quality (in terms of peak signal-to-noise ratio in the H.264 encoding of four video sequences while satisfying the battery constraint.
机译:在没有电源线的地方对监视的需求不断增长,因此需要开发一种具有极低功耗并确保稳定运行的监视摄像机,直到预计可用能量耗尽为止。本文提出了一种用于在电池供电的监视系统中调度视频编码配置的算法,以减少图像失真,同时确保持续操作直到电池充电/更换。基于估计的剩余事件持续时间(考虑事件的不确定性)和剩余电池电量(考虑速率容量和恢复效果)的数量,确定最佳视频编码配置。所提出的算法包括两个步骤:设计时步骤和运行时步骤。在设计时步骤中,考虑事件的不确定性以及编码能力和图像质量之间的折衷,执行剩余事件持续时间的预测(称为持续时间预测)。在运行时,基于在设计时步骤中获得的持续时间预测以及在运行时步骤中测量的剩余电池电量,在帧内编码和帧间编码之间切换视频编码配置。与基于最保守的持续时间预测的常规方法相比,实验结果表明,该方法在4个视频的H.264编码中的峰值信噪比方面,提供了2.24〜3.78 dB的图像质量改进。顺序,同时满足电池约束。

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