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Transmitter location for maximum coverage and constructive-destructive interference management

机译:发射机位置可实现最大覆盖范围并进行建设性和破坏性干扰管理

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Covering location models consider a demand "covered" if there is at least one facility sited within a preset threshold distance. If more than one facility satisfies this criterion, it is implicitly assumed that one of these facilities - usually the closest - will serve the customer, while the remaining ones will have no relation to the demand. However, there are cases in which this multiple coverage has either synergetic or undesired effects. In digital television broadcast networks using Single Frequency Network transmissions, if a customer receives transmissions from more than one transmitter, the strongest transmitter is the main signal source, while the second and following transmitters can either contribute to a good reception or act as sources of interference, depending on the technology and their relative locations. In this case, facilities should be located so as to avoid overlapping coverage if there is interference, or enhancing overlapping coverage if signals are combined constructively. We propose models that are solved using a commercial software, that address this problem. One of these models is used to compare different alternatives of network design for a region in Chile, and to find the best coverage situations.
机译:如果在预设的阈值距离内至少有一个设施,则覆盖位置模型认为需求“已覆盖”。如果不止一个设施满足此标准,则隐式假定这些设施中的一个(通常是最接近的)将为客户服务,而其余设施与需求无关。但是,在某些情况下,这种多重覆盖可能具有协同作用或不良作用。在使用单频网络传输的数字电视广播网络中,如果客户从一个以上的发射器接收到发射信号,则最强的发射器是主要信号源,而第二个和后面的发射器可能有助于良好的接收或成为干扰源。 ,具体取决于技术及其相对位置。在这种情况下,应放置设施,以免在存在干扰时避免覆盖范围重叠,或者在将信号进行建设性组合时增强覆盖范围。我们提出了使用商业软件解决的模型,以解决此问题。这些模型之一用于比较智利某个地区的网络设计的不同选择,并找到最佳的覆盖情况。

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