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论长三角港口群从吞吐量竞争到产业链增值的联动 被引量:3
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作者 甘爱平 茅峰 《中国市场》 2021年第7期24-26,81,共4页
长期以来,长三角港口群内部竞争激烈,由吞吐量竞争衍生的重复建设、价格竞争、服务竞争等,造成产能过剩与资源浪费、效益低下与经济损失,为港口群日后的有序发展埋下隐患。文章针对如何从产业价值链的角度增强长三角港口群的国际竞争力... 长期以来,长三角港口群内部竞争激烈,由吞吐量竞争衍生的重复建设、价格竞争、服务竞争等,造成产能过剩与资源浪费、效益低下与经济损失,为港口群日后的有序发展埋下隐患。文章针对如何从产业价值链的角度增强长三角港口群的国际竞争力,提出了体制机制方面的建议。 展开更多
关键词 长三角港口群 吞吐量竞争 产业链增值
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A slotted floor acquisition multiple access based MAC protocol for underwater acoustic networks with RTS competition 被引量:2
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作者 Liang-fang QIAN Sen-lin ZHANG Mei-qin LIU 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2015年第3期217-226,共10页
Long propagation delay, limited bandwidth, and high bit error rate pose great challenges in media access control (MAC) protocol design for underwater acoustic networks. A MAC protocol called slotted floor acquisitio... Long propagation delay, limited bandwidth, and high bit error rate pose great challenges in media access control (MAC) protocol design for underwater acoustic networks. A MAC protocol called slotted floor acquisition multiple access (slotted-FAMA) suitable for underwater acoustic networks is proposed and analyzed. This FAMA based protocol adds a time slot mechanism to avoid DATA packet collisions. However, slotted-FAMA is not suitable for dense networks since the multiple request-to-send (RTS) attempts problem in dense networks is serious and greatly limits the network throughput. To overcome this drawback, this paper proposes a slotted-FAMA based MAC protocol for underwater acoustic networks, called RC-SFAMA. RC-SFAMA introduces an RTS competition mechanism to keep the network from high frequency of backoff caused by the multiple RTS attempts problem. Via the RTS competition mechanism, useful data transmission can be completed successfully when the situation of multiple RTS attempts occurs. Simulation results show that RC-SFAMA increases the network throughput efficiency as compared with slotted-FAMA, and minimizes the energy consumption. 展开更多
关键词 Underwater acoustic networks Medium access control (MAC) Request-to-send (RTS) competition Throughput Energy consumption
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