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Wireless Image Compression and Transmission for Underwater Robotic Applications?

机译:水下机器人应用的无线图像压缩和传输?

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Nowadays, there is an increasing demand for underwater robotic intervention systems around the world in several application domains. Examples of applications include search and recovery (i.e. aviation or naval accidents), archaeology, offshore industry, environment protection and monitoring, etc. The commercially available systems are expensive and far from what it is demanded in many aspects, justifying the need of more autonomous, cheap and easy-to- use solutions for underwater intervention missions. Most of them consist of remote operated vehicles, relying on an umbilical cable for its remote operation. This umbilical provides high bandwidth and reliable communications between the vehicle and the operator, but also presents some drawbacks: high cost, movement and depth constraints, lack of autonomy, etc. The current trend is to advance towards less expensive and more autonomous systems, where the umbilical is not present, and the transmission of wireless information is necessary. This work analyses the use of an underwater RF link to provide affordable communications. Moreover, different data compression techniques that can be used to optimize underwater wireless communications are analysed. Image transmission performance results in pool conditions are presented and discussed.
机译:如今,全球在多个应用领域中对水下机器人干预系统的需求都在增长。应用示例包括搜索和恢复(即航空或海事事故),考古,海上工业,环境保护和监视等。商业上可用的系统价格昂贵,并且在许多方面都远未达到要求,这证明了需要更多自主性的理由便宜,易于使用的水下干预任务解决方案。它们中的大多数由远程操作的车辆组成,它们依靠脐带缆进行远程操作。这种脐带缆在车辆和驾驶员之间提供了高带宽和可靠的通信,但同时也存在一些缺点:成本高,运动和深度受限,缺乏自治等。当前的趋势是朝着成本更低,更自治的系统发展。脐带不存在,因此必须传输无线信息。这项工作分析了水下RF链路的使用,以提供可负担的通信。此外,分析了可用于优化水下无线通信的不同数据压缩技术。提出并讨论了池条件下的图像传输性能结果。

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