ID 原文 译文
52257 结合现有无线自组网时分多址接入 (TDMA) 协议和UANET特点,提出一种高效低时延的UANET多跳TDMA协议。 Based on the existing multi-hop TDMA protocol of wireless Ad Hoc networks and the characteristics of UANET, an efficient and low delay multi-hop TDMA protocol of UANET is proposed.
52258 采用基于拓扑信息的时隙分配信息高效广播机制降低网络控制开销, Our proposed method can reduce the network control overhead by efficient broadcasting using time slot allocation information based on topology information.
52259 同时采用一跳节点二次分配数据时隙以及多维度调度节点时隙分配顺序机制,降低网络平均时延,提高数据传输成功率。 It can also reduce the average network latency and improve success rate by the one hop node secondary allocation of data time slot and the multi-dimensional scheduling node time slot allocation sequence.
52260 仿真结果表明,该协议在无人机节点移动速度较快、拓扑变化频繁时,在消息平均时延、成功率和控制开销等方面的性能优于现有无人机MAC协议。 The simulation results show that the proposed protocol outperforms the existing UAV MAC protocols when UAV nodes move faster and the topology changes frequently in terms of message average delay, success rate, control overhead and.
52261 针对移动自组网 (MANET) 依靠滑动窗口机制解决传输效率和流量控制问题,文章提出了一种可变长度的滑动窗口网络编码 (VLSWNC) 算法。 In order to solve the problem of transmission efficiency and flow control by sliding window mechanism in Mobile Ad Hoc Network (MANET) , a Variable Length Sliding Window Network Coding (VLSWNC) algorithm is proposed in this paper.
52262 利用网络仿真软件NS2对VLSWNC算法中的数据吞吐量、分组传输率和解码延迟等方面的性能特征进行了仿真实验分析。 The performance of this VLSWNC is studied using NS2 and evaluated in terms of the data throughput, packet transmission rate, and decoding delay when packet is transmitted.
52263 实验结果表明,VLSWNC算法可以显著提高MANET的性能和可靠性。 Simulations results show that the VLSWNC algorithm can significantly improve the network performance and reliability.
52264 针对改进迭代硬可靠度 (IHRB) 大数逻辑译码复杂度高等问题,提出了一种改进迭代硬性可靠性的低复杂度非二进制低密度奇偶校验 (NB-LDPC) 码的大数逻辑译码算法。 This paper presents a novel method to improve the Iterative Hard-Reliability (IHRB) based majority-logic decoding algorithm for Non-Binary Low-Density Parity-Check (NB-LDPC) codes.
52265 在迭代处理时,使用可靠性大的符号来计算解码算法中其他符号的硬可靠性,同时使用校验方程校验出最可靠的符号,最可靠的符号无需更新,以此降低译码复杂度。 The method uses the most reliable symbols to calculate hard-reliability of other symbols in the decoding algorithm, which will not calculate the hard-reliability of poor reliable symbols and most reliable symbols.
52266 仿真结果表明,与NB-LDPC大数逻辑译码算法相比,所提算法在纠错性能和译码迭代复杂度之间提供了有效的折中。对于维度为64的伽罗华域上的NB-LDPC码,与IHRB译码算法相比,其迭代复杂度降低了约51%。 For an NB-LDPC code over Galois field of 64 elements, the iterative complexity is reduced by about 51% compared with that of the conventional decoding algorithm.