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The Route Guidance System using Android-Based Navigation to Determine the Shortest Potatoes Distribution Route

机译:使用基于Android的导航确定最短土豆分发路线的路线导航系统

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At present, post-harvest loss is an increasingly interesting issue. When farmers have used quality seeds, improved on-farm handling and advanced harvesting technology, the researchers began to focus on post-harvest problems. In Indonesia, the potatoes post-harvest loss is high at 32.8 kg/ton. Transportation and distribution problems have an effect of 20.43%. The contribution of this research is an Android-based advanced navigation system based on navigation radius for the route guidance system (RGS). We used the Dijkstra algorithm which we combined with latitude and longitude-based dynamic maps using Google APIs server for determining the shortest potatoes distribution route. To optimize the distance of the navigation radius, we used the radians approach on dynamic coordinates. The route that we calculated was all the nodes that were in the navigation radius. We can display distribution centers (DC) at a certain radius with the Google Maps fragment activity that embedded into the application and navigate to that place. So this method made it easy for decision makers to distribute their potatoes via the shortest route. The RGS using an android-based navigation that we proposed was implemented on a mobile application, and a comparison with the classical Dijkstra algorithm was performed. The results showed that this navigation system was better, more reliable with an accuracy rate of 99.83%. This proved that the android-based navigation system that we developed can be used. For future research, spatial analysis needs to be considered.
机译:目前,收获后的损失是一个越来越有趣的问题。当农民使用优质种子,改善农场操作和先进的收割技术后,研究人员开始关注收获后的问题。在印度尼西亚,马铃薯收获后的损失高达32.8公斤/吨。运输和分配问题的影响为20.43%。这项研究的贡献是基于Android的高级导航系统,该系统基于导航半径作为路线导航系统(RGS)。我们使用Dijkstra算法,结合使用Google API服务器的基于纬度和经度的动态地图来确定最短的马铃薯分配路线。为了优化导航半径的距离,我们在动态坐标上使用了弧度方法。我们计算的路线是导航半径内的所有节点。我们可以使用嵌入到应用程序中的Google Maps片段活动来显示特定半径范围内的配送中心(DC),并导航到该位置。因此,这种方法使决策者可以轻松地通过最短的路线分配土豆。我们在移动应用程序上实现了我们提出的使用基于Android的导航的RGS,并与经典Dijkstra算法进行了比较。结果表明,该导航系统更好,更可靠,准确率达99.83%。这证明可以使用我们开发的基于Android的导航系统。对于将来的研究,需要考虑空间分析。

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