INTRODUCTION: In the digital age, citizens' online political engagement is crucial for the development and stability of OBJECTIVES: To gain insights into and address the challenges facing political engagement toda...
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INTRODUCTION: In the digital age, citizens' online political engagement is crucial for the development and stability of OBJECTIVES: To gain insights into and address the challenges facing political engagement today, where effectively assessing and promoting citizen participation in the context of the information explosion and the popularization of social media has become a pressing issue. METHODS: Using the binomial searchtreealgorithm, which was introduced to analyze and predict citizens' political behaviors in the online environment, able to dig deeper into citizens' concerns, opinions, and interaction patterns on political topics by collecting large-scale online data and applying it to the binomial searchtreealgorithm. RESULTS: The binary search tree algorithm is able to efficiently and accurately reveal the complex features of citizens' online political engagement. CONCLUSION: The binomial searchtreealgorithm is more advantageous than traditional methods, providing deeper insights for government policymakers and social scientists, and this study is essential for advancing the understanding and enhancement of citizens' online political engagement.
In RFID(Radio Frequency IDentification)system,when multiple tags are in the operating range of one reader and send their information to the reader simultaneously,the signals of these tags are superimposed in the air,w...
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In RFID(Radio Frequency IDentification)system,when multiple tags are in the operating range of one reader and send their information to the reader simultaneously,the signals of these tags are superimposed in the air,which results in a collision and leads to the degrading of tags identifying *** improve the multiple tags’identifying efficiency due to collision,a physical layer network coding based binary search tree algorithm(PNBA)is proposed in this *** pushes the conflicting signal information of multiple tags into a stack,which is discarded by the traditional anti-collision *** addition,physical layer network coding is exploited by PNBA to obtain unread tag information through the decoding operation of physical layer network coding using the conflicting information in the ***,PNBA reduces the number of interactions between reader and tags,and improves the tags identification *** analysis and simulation results using MATLAB demonstrate that PNBA reduces the number of readings,and improve RFID identification ***,when the number of tags to be identified is 100,the average needed reading number of PNBA is 83%lower than the basic binary search tree algorithm,43%lower than reverse binary search tree algorithm,and its reading efficiency reaches 0.93.
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