Xingtang County is located in the southwest of China’s Hebei Province,240 kilometers from Beijing.Covering an area of 1,025 square kilometers,Xingtang is divided into 4 towns,11 townships and 1 provincial level econo...Xingtang County is located in the southwest of China’s Hebei Province,240 kilometers from Beijing.Covering an area of 1,025 square kilometers,Xingtang is divided into 4 towns,11 townships and 1 provincial level economic development zone.There are altogether展开更多
Introduction 2013 saw the sixth anniversary of the formulation of Regulations of the People's Republic of China on Disclosure of Government Information (hereinafter referred to as the Regulations) and the fifth ann...Introduction 2013 saw the sixth anniversary of the formulation of Regulations of the People's Republic of China on Disclosure of Government Information (hereinafter referred to as the Regulations) and the fifth anniversary of their being put into effect. As the Regulations were stipulated and put into force,展开更多
To assist the researches of toxic and harmful algae and provide government workers with judgment basis for decision-making related events,we established a biological information management system for toxic and harmful...To assist the researches of toxic and harmful algae and provide government workers with judgment basis for decision-making related events,we established a biological information management system for toxic and harmful algae in China’s of fshore to assist relevant research.In this study,Karenia mikimotoi was studied as a typical toxic and harmful algae species,and the basic biological information and biogeographic distribution information of K.mikimotoi were systematically studied and collected.In the part of basic biological information,the name,toxin,and molecular characteristic sequence of K.mikimotoi were sorted out by literature searching and website browsing.Through experimental means,the relevant information of morphological identifi cation,pigment composition,and lipid composition were obtained.In the part of biogeographic distribution information,this study sorted out the information of K.mikimotoi,analyzed the characteristics of its occurrence,and completed the standardized construction of biogeographic distribution information.Through the collation of basic biological information and biogeographic distribution information of K.mikimotoi,the standardization of related information was completed,which provided template and method reference for information collection of other toxic and harmful algae species,which was benefi cial to the database analysis and design.展开更多
Deployment of nodes based on K-barrier coverage in an underground wireless sensor network is described. The network has automatic routing recovery by using a basic information table (BIT) for each node. An RSSI positi...Deployment of nodes based on K-barrier coverage in an underground wireless sensor network is described. The network has automatic routing recovery by using a basic information table (BIT) for each node. An RSSI positioning algorithm based on a path loss model in the coal mine is used to calculate the path loss in real time within the actual lane way environment. Simulation results show that the packet loss can be controlled to less than 15% by the routing recovery algorithm under special recovery circum- stances. The location precision is within 5 m, which greatly enhances performance compared to tradi- tional frequency location systems. This approach can meet the needs for accurate location underground.展开更多
文摘Xingtang County is located in the southwest of China’s Hebei Province,240 kilometers from Beijing.Covering an area of 1,025 square kilometers,Xingtang is divided into 4 towns,11 townships and 1 provincial level economic development zone.There are altogether
文摘Introduction 2013 saw the sixth anniversary of the formulation of Regulations of the People's Republic of China on Disclosure of Government Information (hereinafter referred to as the Regulations) and the fifth anniversary of their being put into effect. As the Regulations were stipulated and put into force,
基金Supported by the Special Foundation for National Science and Technology Basic Research Program of China(No.2018FY100207)the National Natural Science Foundation of China(No.U20A20104)the Strategic Priority Research Program of the Chinese Academy of Sciences(No.XDA23050302)。
文摘To assist the researches of toxic and harmful algae and provide government workers with judgment basis for decision-making related events,we established a biological information management system for toxic and harmful algae in China’s of fshore to assist relevant research.In this study,Karenia mikimotoi was studied as a typical toxic and harmful algae species,and the basic biological information and biogeographic distribution information of K.mikimotoi were systematically studied and collected.In the part of basic biological information,the name,toxin,and molecular characteristic sequence of K.mikimotoi were sorted out by literature searching and website browsing.Through experimental means,the relevant information of morphological identifi cation,pigment composition,and lipid composition were obtained.In the part of biogeographic distribution information,this study sorted out the information of K.mikimotoi,analyzed the characteristics of its occurrence,and completed the standardized construction of biogeographic distribution information.Through the collation of basic biological information and biogeographic distribution information of K.mikimotoi,the standardization of related information was completed,which provided template and method reference for information collection of other toxic and harmful algae species,which was benefi cial to the database analysis and design.
基金supported by the National Key Technology R&D Program of China (No. 2008BAH37B05095)
文摘Deployment of nodes based on K-barrier coverage in an underground wireless sensor network is described. The network has automatic routing recovery by using a basic information table (BIT) for each node. An RSSI positioning algorithm based on a path loss model in the coal mine is used to calculate the path loss in real time within the actual lane way environment. Simulation results show that the packet loss can be controlled to less than 15% by the routing recovery algorithm under special recovery circum- stances. The location precision is within 5 m, which greatly enhances performance compared to tradi- tional frequency location systems. This approach can meet the needs for accurate location underground.