Transnational Ltd. is an incorporated company that offers banking services to customers. The bank issues depository services, lending services, foreign exchange services, and has a branch dealing with investments. The bank has been experiencing growth due to favorable economic conditions. As a result, the bank has numerous activities and transactions each day. The average number of transactions is estimated to be 800,000 across fifteen branches located in Atlanta. This has caused challenges for the bank as all transactions must be recorded for future reference. The bank has severally expanded its in-house storage systems to accommodate the increasing transactions. Further, access and retrieval of information have become cumbersome, and the whole process is too expensive. At times, data is stored in more than one location: the branch and the headquarters.
As a result, the organization is considering an alternative solution, which is the virtualization of storage. A virtual storage facility will allow the company to store all its information as an alternative to in-house storage. Consequently, the bank will not have to stress about expanding its servers’ storage capacity. The bank can outsource the services from cloud storage providers such as Amazon or Microsoft Azure. This virtual cloud will integrate all branches storing functions to form one overall storage (Wu et al. 2010). Consequently, stored data can be accessed and retrieved from any branch or location without difficulties. Additionally, the organization will not have to store data in multiple locations.
Transnational Bank has all the requirements that would be necessary for supporting virtualization. The bank has fast speed CPUs with 3 GHz and four cores. Notably, these CPUs have large internal caches to support the massive intensity of the workload. Additionally, the bank has DDR3 memory to support the numerous workloads run in the system. Lastly, the bank has adequate bandwidth to support all its network requirements.
Microsoft Licenses will allow Transnational bank to create and store instances. The bank will only be required to allocate the license when running the software. The number of licenses that will be required will depend on the user requirements and license model. Notably, all separate physical hardware systems and servers must be licensed separately. Nonetheless, Microsoft offers flexibility for moving across workloads, where different servers are involved. Further, Microsoft offers mobility rights for moving servers where customers might be required to change from one server to another.
Microsft offers customers the option of licensing Windows Server Datacenter or Windows Server Standard. For either, the Microsoft requires the customer to license all its cores subject to a minimum number of 16 per server. The license will allow customers to run up to two instances standard one each licensed server. If the bank might require more than two virtual machines, Microsoft will offer it the option of relicensing.
Microsoft offers a range of licenses that clients can choose from subject to their organization’s needs. The Windows server license with Hyper-V will allow the bank to consolidate multiple server roles into one physical host machine that can be partitioned where there is a need. This license allows the bank to maximize availability as well as increase disaster recovery limits. Another license is Microsoft Desktop Virtualization, while it allows the sharing of desktop across many users. Another benefit is that the IT department can simplify compliance as it can control all desktops as one. Lastly, this facility ensures personalized experience for all members within the same network.
Configuration for shared storage
There are two types of configurations available for the bank to enable shared storage. In the first type of storage, the content is pulled to a server from a primary storage device when needed. Here, old content has to be removed from the device in order to make room for new content. This type of configuration is helpful where large clusters are involved. In the other type of configuration, data is stored in both the primary device and the external server. This configuration is suitable for data that is in small clusters. That is large amounts of data that are not scattered and can be randomly accessed.
Eight simple steps can be taken to configure shared storage in the bank. The first activity is to configure the shared volume on the eternal device. In this light, the account for which activities are running should have read and write authorizations. The second step is to the shared volume from the existing servers. Nonetheless, this is for those that are updating from a traditional storage server to a shared volume. The other action is to copy folders from the existing servers to the new shared volume.
Virtual machines can provide services for Transnational bank similar to physical machines. There are different types of virtual machines, depending on their functionality. Microsoft system virtual machines can provide services similar to an operating system. Such facilities have a hypervisor that employs native execution to allow the sharing of hardware in multiple environments that are far from each other. Additionally, it is possible to control all hardware using the hypervisor. Further, process virtual machines can help execute computer programs even though they are located in a virtual environment.
With Microsoft Azure, it is possible to build and rewrite apps on the virtual server. Other benefits include intelligent insights, machine learning, and analytics. Azure allows consistency across all workstations since all information technology operation is performed centrally (Calder B. 2011). Lastly, Azure will ensure that the organization has built-in security for the whole organization. Additionally, Azure can be referred to as an infrastructure as a service (IAAS) due to its abilities. This is because Azure offers virtual servers, bandwidth, storage space, and machines. With Azure, an organization can store all its data in external storage space and retrieve the data where the need arises.
In light of this discussion, it is recommendable for the organization to sort for cloud computing services. The bank will get rid of its storage concerns, which at now are the primary IT challenge. Microsoft Azure is a platform that will help the bank not only to sort this problem but also to streamline other information technology services.
Microsoft Azure will provide virtual machine services to the bank. As such, the bank burden of having numerous physical machines to meet operation needs will be heaved. On this note, the organization needs not to have multiple machines such as computers as Azure can provide virtual computers. Consequently, some operations, such as processing can be done from the platform. Additionally, Microsoft Azure also offers virtual servers, thus removing the need for physical servers.
All these services will streamline many operations for Transnational Bank. The bank will be able to save on costs associated with procuring multiple devices and systems such as servers and computers. Also, the organization will benefit efficiency as a result of reduced redundancy. In this case, the organization need not maintain multiple resources across its branches. With a cloud server, data can be transmitted from one bank branch to the platform, where permitted members from other branches and the headquarters can access. The organization doe not need servers in all its branches either. Another benefit is that virtual infrastructure allows centered control. The IT department can manage all functions across the organization from one of the headquarters.
Calder, B., Wang, J., Ogus, A., Nilakantan, N., Skjolsvold, A., McKelvie, S., … & Haridas, J. (2011, October). Windows Azure Storage: a highly available cloud storage service with strong consistency. In Proceedings of the Twenty-Third ACM Symposium on Operating Systems Principles (pp. 143-157).
Wu, J., Ping, L., Ge, X., Wang, Y., & Fu, J. (2010, June). Cloud storage as the infrastructure of cloud computing. In 2010 International Conference on Intelligent Computing and Cognitive Informatics (pp. 380-383). IEEE.
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