One of the UK's most experienced and respected diplomats reveals the inside story behind his resignation—and his perspective on the challenges of Brexit and the Trump White House. "@realDonaldTrump: The wacky ambassador that the UK foisted on the United States is not someone we are thrilled with, a very stupid guy . . . We will no longer deal with him." Kim Darroch is one of the UK's most experienced and respected diplomats, and this unvarnished, behind-the-scenes account will reveal the inside story behind his resignation; describe the challenges of dealing with the Trump White House; and offer a diplomat's perspective on Brexit, and how it looked to Britain's closest ally. Darroch was the British Ambassador to the US as the age of Trump dawned and Brexit unfolded. He explains why the British embassy expected a Trump victory from as early as February 2016, what part every key figure—from Steve Bannon to Sarah Sanders—has played in Trump's administration, and what balanced policy makers on both sides of the Atlantic should consider during this era of seismic change and populist politics. A riveting account from the best-informed insider, Collateral Damage charts the strangest and most convulsive period in the recent history of Britain and the US—and shows how thirty months threatened to overturn three centuries of history.
Most queuing analyses performed in the literature are based on characterization of queueing phenomena in continuous-time items. Recently in the telecommunication industries, BISDN (broadband integrated services digital network) has received considerable attention since it can provide a common interface for future communication needs including video, data, and speech. Since information in BISDN is transported by means of dicsrete units of 53-octet ATM (asynchronous transfer mode) cells, interests in discrete-time systems have increased. Discrete-Time Models for Communication Systems Including ATM provides a general framework for queueing analyses of dicrete-time systems. After a brief look at past studies of discrete-time systems, a detailed description and analysis are presented for a generic discrete-time model with a single server, arbitrary service times and independent arrivals. The book then follows a less stringent approach and focuses more on the average statistics and on different queueing disciplines. Conventional first-in-out and last-in-first-out disciplines are discussed in terms of the average statistics. Systems with multiple classes of messages without class-dependent priorities are considered to establish a discrete-time conservation law. Multiple classes with priorities are also considered to derive performance measures of priority scheduling disciplines. Finally, a multi-queue system with cyclic service is analyzed in the context of round-robin service ordering. This is followed by analyses of discrete-time queueing systems with `more complicate' input and output processes. Specifically, single-server systems are investigated whereby either the arrivals or the server is subject to random interruptions. Results are mainly obtained in terms of generating functions and mean values of the principal performance measures. The influence of the nature of the arrival correlation and the server interruptions on the queueing behavior is discussed. Finally, the book explores queueing models directly associated with ATM switches and multiplexers. This book is a valuable reference and may be used as a text for and advanced course on the subject.
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