Kezhi Xing
Tianjin Agricultural University
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Featured researches published by Kezhi Xing.
Archive | 2015
Qingkui Wang; Yang Zhang; Dongqing Bai; Chengxun Chen; Yongjun Guo; Kezhi Xing
To evaluate the dietary copper (Cu) requirement of Cynoglossus semilaevis, inorganic Cu (0, 2, 6, 17, and 50 mg kg−1) was added to the basal diet, providing actual dietary Cu (5.91, 8.23, 11.78, 24.16, and 56.34 mg kg−1). Each diet was fed to C. semilaevis Gunther (initial body weight, 68 g) in triplicate groups for 8 weeks in a flow-through system. The results showed that weight gain rate (WGR), specific growth rate (SGR), feed conversion rate (FCR), and protein efficiency ratio (PER) in fish supplemented with 11.78 mg kg−1 were significantly higher than those in fish fed with the basal diet (P 0.05). The activities of protease, amylase, lipase, copper–zinc superoxide dismutase (Cu–Zn SOD), and lysozyme first increased and then decreased with the increasing dietary Cu concentrations, and 11.78 mg kg−1 diet provided maximum activities. The optimum requirement of C. semilaevis for dietary Cu was estimated to be about 11–12 mg kg−1 diet using broken-line regression analysis, based on the growth and enzyme activities.
international conference on computer and computing technologies in agriculture | 2012
Xufeng Hua; Chengxun Chen; Yunchen Tian; Yongjun Guo; Kezhi Xing
Aquaculture WSN is composed of a large number of nodes with different monitoring function. In this paper, we present a cluster formation algorithm in Sensor MAC for event-driven Aquaculture WSN. The technique proposed is based on cross-layer design which is adopted to reduce the energy waste and guarantee the data transmissions. The event-driven Aquaculture WSN is simulated by OPNET and MATLAB. Simulation results show that the proposed protocol saves node energy, shortens average packet latency, and improves event detection reliability.
international conference on intelligent computing | 2011
Xufeng Hua; Chengxun Chen; Dawei Xu; Kezhi Xing
In this paper, we introduce a W-band gyro-traveling wave (gyro-TWT) tube to suppress spurious oscillations, which is used in facilities for Aquaculture. The spurious oscillations block achieving high gain and high power in high-power broadband millimeter amplifier. In order to suppress spurious oscillations, we study the interaction circuit including input coupler and output section, design the gyro-traveling wave tube with distributed-loss based on MIG. The results of simulation show that high power and broad-band capabilities.
Archive | 2009
Kezhi Xing; Yongjun Guo; Chengxun Chen; Qingkui Wang; Dongqing Bai; Wenwen Yu; Rui Zhang; Zunpeng Zhao; Jinhai Li; Xin Zhou; Liang Chen
Archive | 2012
Dongqing Bai; Xuan Wu; Guoxia Zhu; Yongjun Guo; Guang Yang; Bo Ning; Kezhi Xing
Archive | 2008
Kezhi Xing; Chengxun Chen; Dongqing Bai; Yongjun Guo
Archive | 2009
Kezhi Xing; Chengxun Chen; Qingkui Wang; Yongjun Guo; Dongqing Bai; Dawei Xu; Wenwen Yu; Yunxia Xu; Xueliang Sun; Xiaoguang Niu; Shuyuan Yang; Tao Song
Archive | 2012
Xiangdong Bi; Kezhi Xing; Wenli Zhou; Xuexi Tang
Archive | 2012
Wenli Zhou; Chengxun Chen; Jinhui Sun; Haitao Mao; Qingkui Wang; Xiangdong Bi; Xiuting Qiao; Kezhi Xing; Jiarui He; Yusong Han
Archive | 2012
Huiyong Shan; Kezhi Xing; Wenqing Wang; Yunchen Tian; Xufeng Hua; Qiudong Yu; Yongjun Guo; Chengxun Chen