Title :
Provisioning quality-of-service to energy harvesting wireless communications
Author :
Xiaojing Chen ; Wei Ni ; Xin Wang ; Yichuang Sun
Author_Institution :
EMW Lab., Fudan Univ., Shanghai, China
Abstract :
Energy harvesting (EH) is an innovative way to build long-term and self-sustainable wireless networks. However, an inconstant EH rate may have an adverse effect on the quality-of-service (QoS) of wireless traffic, such as packet delay and error. In this article we discuss techniques that provide QoS to EH powered wireless communications. A new "dynamic string tautening" method is presented to produce the most energy efficient schedule with substantially lower complexity, compared to convex optimization techniques. The method adapts to the bursty arrivals of wireless traffic and harvested energy, and ensures that delay-sensitive data will be delivered by deadline. Comprehensive designs of EH powered transmitters are also discussed, where the EH rate, battery capacity, and deadline requirement can be jointly adjusted to leverage QoS and the cost.
Keywords :
energy conservation; quality of service; radio networks; radio transmitters; telecommunication scheduling; telecommunication traffic; EH powered transmitters; EH rate; QoS; battery capacity; bursty arrivals; convex optimization techniques; deadline requirement; delay-sensitive data; dynamic string tautening method; energy efficient schedule; energy harvesting wireless communications; long-term and self-sustainable wireless networks; packet delay; packet error; quality of service provisioning; substantially lower complexity; wireless traffic; Batteries; Energy efficiency; Energy harvesting; Quality of service; Transmitters; Wireless communication; Wireless sensor networks;
Journal_Title :
Communications Magazine, IEEE
DOI :
10.1109/MCOM.2015.7081082