A novel Joint Source and Channel Decoding (JSCD) scheme for Variable Length Codes (VLCs) concatenated with turbo codes utilizing a new super-trellis decoding algorithm is presented in this letter. The basic idea of our decoding algorithm is that source a priori information with the form of bit transition probabilities corresponding to the VLC tree can be derived directly from sub-state transitions in new composite-state represented super-trellis. A Maximum Likelihood (ML) decoding algorithm for VLC sequence estimations based on the proposed super-trellis is also described. Simu-lation results show that the new iterative decoding scheme can obtain obvious encoding gain especially for Reversible Variable Length Codes (RVLCs),when compared with the classical separated turbo decoding and the previous joint decoding not considering source statistical characteristics.
空间通信链路由于其固有的特点(长传播延迟、可变延迟和高误码率),对空间通信的服务质量QoS(Quality of Services)提出了新的要求和挑战.提出了空间通信系统模拟的体系结构,实现了基于卫星工具包STK(Satellite Toolkit)的空间通信系统的模拟,并开发了空间通信系统的QoS性能测量软件;同时对QoS性能进行了分析.
移动无线自组网络,通过多跳接入Internet,卫星网和第三代移动系统,构成了下一代无线Ad-hoc互联网,实现了异构网络的融合和资源共享.在下一代移动无线网络环境下,带宽和功率受限,存在着各种传输误差.根据这些特性,本文采用基于方向的小波分形的插值算法,提出了一种适用于移动无线Ad-hoc网络的视频传输的服务质量(Quality of Service,简称QoS)控制方法,模拟结果表明,该算法与现存算法(双线性内插)相比,具有更优的性能(信噪比),并能适应网络带宽的动态变化.
The next generation space internet (NGSI) is based on all-IP-based mobile network that merges land-based network, sea-based network, sky-based network, spacebased network, deep space-based network together using existing assess network technologies. There are high signal propagation delays, high error rate, bandwidth variation and time-variety in NGSh In order to adapt to various space communication environment constraints and bandwidth variation, we propose a reduced dimension scalable video coding scheme based on CCSDS IDCS algorithm and quality of service (QoS) control method by cross layer design (CLD). The experimental result shows that this new method has better performance than that of existing algorithms, and can be adaptive to the bandwidth variation dynamically.